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The Big Dental Lie (1st Ed.) by Dr IR Visser

Reference list 1 - 500


1 ATSDR/EPA Priority List for 1999: Top 20 Hazardous Substances, Agency for Toxic Substances and

Disease Registry, U.S. Department of Health and Human Services, http://www.atsdr.cdc.gov/cercla/99list.html

(2008) ; & U.S. Environmental Protection Agency, Hazardous Air Pollutant Hazard Summary Fact Sheets,

EPA: In Risk Information System, 1995.
2 Agency for Toxic Substances and Disease Registry, U.S. Public Health Service. Toxicological Profile

for Mercury. 1999 & Apr 19,1999 Media Advisory, New MRLs for toxic substances, MRL: elemental Hg

vapour/inhalation/chronic & MRL: methyl mercury/oral/acute &

http://www.atsdr.cdc.gov/mrls/index.html (2008).
3 Phillips RW, et al. Report of committee on scientific investigation of the American Academy of Restorative

Dentistry. J Prosthet Dent, 1986;55:B101736-772.
4 Paterson N. The longevity of restorations. Br Dent J, 1984;157:23-5.
5 Amin-Zaki L, et al. Intra-uterine methyl mercury poisoning. Pediatrics, 1974:54:587–95.
6 Bakir F, et al. Methyl mercury poisoning in Iraq. Science,1973;181:230–41.
7 Harada M, et al. Congenital Minamata disease: Intrauterine methyl mercury poisoning. Teratology, 1978:18: 285–8.
8 Marsh DO, et al. Fetal methyl mercury poisoning: Relationship between concentration in a single strand of maternal

hair and child effects. Arch Neurol, 1987:1017–1022.
9 Clarkson TW, et al.Mechanisms of mercury disposition in the body. Am J Ind Medi, 2007;50:757–64.
10 http://www.psanalytical.com/information/mercury.html accessed 23 May 2009.
11 http://www.atsdr.cdc.gov/mercmetal5.html accessed 06 June 2008.
12 The Harvard Medical School, Harvard Health Letter (September, 1990).
13 Riley DM, et al. Assessing elemental mercury vapour exposure from cultural and religious practices.

Environ Health Perspect, 2001;109(8): 779–84.
14 Alison Newby C, et al. Mercury use and exposure among Santeria practitioners: religious versus folk practice in

Northern New Jersey, USA Ethn Health, 2006 Aug;11(3):287-306.
15 Mahdihassan S. The tradition of alchemy in India. Am J Chin Med, 1981 Spring;9(1):23-33.
16 Sabbatani S. Syphilis in sixteenth-century in Bologna. Health care and social assistance (Part one).

Infez Med, 2006 Mar;14(1):45-56.
17 Warkany J. Acrodynia - post-mortem of a disease. Am J Dis Child, 1966 Aug;112(2):147-56.
18 Dally A. The rise and fall of pink disease. Soc Hist Med, 1997;10(2):291–304.
19 James WD, et al. Andrews' diseases of the skin: clinical dermatology (10th ed.). Saunders 2006:134.
20 Palmer RB, et al. Transdermal kinetics of a mercurous chloride beauty cream: an in vitro human skin analysis.

J Toxicol Clin Toxicol, 2000;38(7):701-7 .
21 http://www.atsdr.cdc.gov/cabs/mercury/index.html#risk accessed 06 June 2008.
22 http://www.atsdr.cdc.gov/cabs/mercury/index.html#risk accessed 06 June 2008.
23 Jensen S, Jernelov A. Biological methylation of mercury in aquatic organisms. Nature, 1969;223:753-4.
24 Wood, J. R., Kennedy, S. F. and Rosen, C. E. Synthesis of methyl mercury compounds by extracts of a

methanogenic bacterium. Nature 220: 173-174 (1968).
25 http://who.int/vaccine_safety/topics/thiomersal/questions/en/
26 Pichichero ME, et al. Mercury levels in premature and low birth weight newborn infants after receipt of

thimerosal-containing vaccines. J Pediatr, 2009 Oct;155(4):495-9.
27 Magos L, et al. The comparative toxicology of ethyl- and methyl mercury. Arch Toxicol. 1985 Sep;57(4):260-7.
28 Sutton DJ, Tchounwou PB, et al. Hg-induced externalization of phosphatidylserine and caspase 3 activation

in human liver carcinoma (HepG2) cells. Int J Environ Res Public Health, 2006 Mar:3(1):38-42.
29 Sutton DJ, et al. Mercury induces the externalization of phosphatidyl-serine in human renal proximal tubule

(HK-2) cells. Int J Environ Res Public Health, 2007 June;4(2):138-44.
30 Nath KA, Croatt AJ, Likely S, Behrens TW, Warden D, et al. Renal oxidant injury and oxidant response

induced by mercury. Kidney Int, 1996 Sep;50(3):1032-43.
31 Havarinasab S, Björn E, Nielsen JB, Hultman P, et al. Hg species in lymphoid and non-lymphoid tissues

after exposure to methyl Hg: correlation with autoimmune parameters during and after treatment in

susceptible mice. Toxicol Appl Pharmacol, 2007 May 15:221(1):21-8.
32 Flora SJ, et al. Heavy metal induced oxidative stress & its possible reversal by chelation therapy.

Indian J Med Res, 2008 Oct;128(4):501-23.
33 Lund BO, Miller DM, Woods JS, et al. Studies on Hg(II)-induced H2O2 formation and oxidative stress

in vivo and in vitro in rat kidney mitochondria. Biochem Pharmacol, 1993 May 25:45(10):2017-24.
34 Nath KA, Croatt AJ, Likely S, Behrens TW, Warden D. Renal oxidant injury and oxidant response

induced by mercury. Kidney Int, 1996 Sep;50(3):1032-43.
35 WHO environmental health criteria 1: Mercury, Geneva, World health organization, 1976:131 pp.
36 Hursh JB, et al. In vitro oxidation of mercury by the blood. Pharmacol. Toxicol., 1988:63:266-273.
37 WHO Environmental health criteria 1: Mercury, Geneva, World Health Organization, 1976:131.
38 Dunn JD, et al. Ethanol increased exhalation of mercury in mice. Br J Ind Med, 1978;35:241-4.
39 Dunn JD, et al. Ethanol reveals novel mercury detoxification step in tissues. Science, 1981;213:1123-5.
40 Dunn JD, et al. Interaction of ethanol and inorganic mercury: Generation of mercury vapour in vivo.

J Pharmacol Exp Ther, 1981;216(1):19-23.
41 Ogata M, et al. Reduction of mercuric ion and exhalation of mercury in acatalasemic and normal mice.

Arch Environ Health, 1987;42(1):26-30.
42 Dunn JD, et al. Ethanol reveals novel mercury detoxification step in tissues. Science, 1981;213:1123-5.
43 Dunn JD, et al. Interaction of ethanol and inorganic mercury: Generation of mercury vapour in vivo.

J Pharmacol Exp Ther, 1981:216(1):19-23.
44 ATSDR/Division of toxicology and environmental medicine (DTEM). Mercury Tox FAQs:

CABS http://www.atsdr.cdc.gov/cabs/mercury/index.html#risk. Accessed 2008:June 06.
45 Houston MC, et al. The role of mercury and cadmium heavy metals in vascular disease, hypertension,

coronary heart disease, and myocardial infarction. Altern Ther Health Med, 2007 Mar-Apr;13(2):S128-33.
46 Ayensu WK, et al. Microarray analysis of Hg-induced changes in gene expression in human liver carcinoma

(HepG2) cells: importance in immune responses. Int J Environ Res Public Health, 2006 Jun;3(2):141-73.
47 Sutton DJ, et al. Mercury induces the externalization of phosphatidyl-serine in human renal proximal tubule

(HK-2) cells. Int J Environ Res Public Health, 2007 June;4(2):138-44.
48 Houston MC.The role of mercury and cadmium heavy metals in vascular disease, hypertension, coronary

heart disease, and myocardial infarction. Altern Ther Health Med, 2007 Mar-Apr;13(2):S128-33.
49 Albrecht J, Matyja E. Glutamate: a potential mediator of inorganic mercury neurotoxicity.

Metab Brain Dis. 1996 Jun;11(2):175-84.
50 Houston MC.The role of mercury and cadmium heavy metals in vascular disease, hypertension,

coronary heart disease, and myocardial infarction. Altern Ther Health Med, 2007 Mar-Apr;13(2):S128-33.
51 Flora SJ, et al. Heavy metal induced oxidative stress & its possible reversal by chelation therapy.

Indian J Med Res, 2008 Oct;128(4):501-23.
52 Piotrowski J, et al. Paper presented at the 4th. Rochester conference on toxicity at the University of

Rochester, Rochester, NY, USA, in 1971 as reported by Clarkson TW, in Proceedings of the

Biochemical Society, 1971.
53 Mutter J, et al. Amalgam studies: Disregarding basic principles of mercury toxicity. Int J Hyg Environ Health,

2004;207:391 - 7.
54 Bjorkman L, et al. Physical and mental health related to dental amalgam fillings in Swedish twins.

Community Dent Oral Epidemiol, 1996;24:260-7.
55 Ahlqwist M, et al. Number of amalgam tooth fillings in relation to subjectively experienced symptoms

in a study of Swedish women. Community Dent Oral Epidemiol, 1988;16:227-31.
56 Ahlqwist M, et al. Number of amalgam fillings in relation to cardiovascular disease, diabetes, cancer

and early death in Swedish women. Community Dent Oral Epidemiol, 1993;21:40-4.
57 Ahlqwist M, et al. Serum mercury concentration in relation to survival, symptoms, and diseases:

results from the prospective population study of women in Gothenburg, Sweden. Acta Odontol Scand, 1999;57: 168-74.
58 Dodes JE, et al. The amalgam controversy. An evidence-based analysis. JADA, 2001;132:348-56.
59 Saxe SR, et al. Dental amalgam and cognitive function in older women: findings from the Nun Study.

JADA, 1995;126:1495-501.
60 Saxe SR, et al. Alzheimer's disease, dental amalgam and mercury. JADA, 1999;130:191-9.
61 http://www.waternet.co.za/samercury/facts.html.
62 http://www.themercury.co.za/?fSectionId=3535&fArticleId=nw20100120203538542C133806.
63 Eto K, et al. An autopsy case of Minamata disease (methyl mercury poisoning)--pathological viewpoints of

peripheral nerves. Toxicol Pathol, 2002;30(6):714-22.
64 Nierenberg DW, et al. Delayed cerebellar disease and death after accidental exposure to dimethyl

mercury. N Engl J Med, 1998 Jun 4;338(23):1672-6.
65 Electric Power Research Institute, EPRI Technical Brief: "Mercury in the Environment", 1993.
66 www.epri.com.
67 Pleva J. Mercury from dental amalgams: exposure and effects. Int J Risk & Safety in Med, 1992;3:1-22; & Pleva J.

Mercury- A Public Health Hazard. Reviews on Environmental Health, 1994;10:1-27; & Pleva J. Mercury poisoning from

dental amalgam. J Orthomol Medicine, 1989; 4(3):141- 8.
68 Gradl M, et al. Akute und chronische Toxizitat von Spurenelemente, Wissenschaftliche Verlagsgesellschaft nbH,

Stuttgart, 1993:65-71.
69 Mayer JR, et al. Zur Ermittlung de Quecksilberfreisetzung aus Amalgamfullungen. Die Quintessenz, 1994;45:1143-52.
70 Birkmayer JGD, et al. Quecksilberdepots im Organismus korrelieren mit der Anzahl der Amalgamfullungen. Biol

Zahnmedizin, 1990;6(2):57-61.
71 Daunderer M, et al. Quecksilber, Methylquecksilber, ... in Korpermaterial von Amalgamtrager. Klin Lab, 1992;38:391-403.
72 Gebhardt A. Ermittlung der Quecksilberbelastung aus Amalgamfullurngen. Labormedizin, 1992;16:384-6.
73 Mass C, Bruck W. Study on the significance of mercury accumulation in the brain from dental amalgam fillings through direct mouth-nose-brain transport. Zentralbl Hyg Umweltmed, 1996;198(3): 275-91.


74 Kistner A. Quecksilbervergiftung durch Amalgam: Diagnose und Therapie. ZWR, 1995;104(5):412- 7.
75 Schaeffer M, et al. Risikofaktor Amalgam-Ein Problemstoff. Schriftenreihe mweltmedizin, Forum Medizin

Verlagsgesellschaft, 1996; & Nixon DE, et al. Inorganic, organic, and total mercury in blood and urine. J Anal Toxicol,

1996;10(1): 17-22.
76 Gowdy JM, et al. Whole blood mercury in mental hospital patients. Am J Psychiatry, 1978; 135(1):115-7.
77 Pihl RO, et al. Hair element content in learning disabled children. Science, 1977;198:204-6
78 Moon C, et al. Main and interactive effect of metallic pollutants on cognitive functioning. J Learning Disabilities, April 1985.
79 Ogura H, et al. A comparison of chromosome aberrations and micronucleus techniques for the assessment of the

genotoxicity of mercury compounds in human blood lymphocytes. Mutat Res, 1996 Jun;340(2-3):175-82.
80 Lee IP. Effects of Mercury on Spermatogenisis. J Pharmacol Exp Thera, 1975;194(1);171- 81.
81 Marlowe M, et al. Main and interative effects of metallic toxins on classroom behavior. J Abnormal Child Psychol, .

1985;13(2):185-98; &

Schulein TM, et al. Survey of Des Moines area dental offices for mercury vapour. Iowa Dent J, 1984;70(1):35-36; &

Jones DW, et al. Survey of mercury vapour in dental offices in Atlantic Canada. Can Dent Assoc J, 1983; 4906:378-395; &

Miller RW, et al. Report on independant survey taken of Austin dental offices for mercury contamination. Texas Dent J,

1983;100(1): 6-9, 1983; &

Skuba, A. Survey for Mercury vapour in Manitoba dental offices. J Can Dent Assoc, 1984;50(7):517-22; &

Roydhouse RH, et al. Mercury in dental offices. J Can Dent Assoc, 1985;51(2):156-8; &

McNerney RT, et al. Mercury Contamination in the Dental Office: a review. NYS Dent J, Nov 1979:457-8.
82 Mareck, Hockman. Simulated crevice corosion experiment for ph and solution chemistry determinations.

Corrosion, 1974:23:1000.
83 Facemire CF, et al. Reproductive impairment in the Florida Panther. Health Perspect,

1995;103(4):79-86; & Yang JM, et al. The distribution of HgCl2 in rat body and its effect on fetus.

Environ Sci, 1996;9(4):437-42; &

Maretta M, et al. Effect of mercury on the epitheliumof the fowl testis. Vet Hung, 1995;43(1):153-6.
85 McGehee W. Operative Dentistry. MDP Blackiston’s & Co. Philadelphia,1935.
86 Skinner EW, et al. The Science of dental materials, 6th ed, W. B. Saunders Co., Philadelphia, 1967
87 Petition to the Attorney General of Maine and to the Federal Trade Commission, Boston Regional Office 12 April 2005.

http://www.toxicteeth.org/natcamp_stategovt_ME_042005.cfm.
88 ES Talbot. The chemistry and physiological action of mercury as used in amalgam fillings.

Ohio State J Dent Sc, 1882;2(1):1-12; &

www.stanford.edu/~bcalhoun/AStock.htm accessed 15 March 2008.
89 http://www.stanford.edu/~bcalhoun/AStock.htm accessed 15 March 2008.
90 Arizona Instruments. www.azic.com.
91 Frykholm KO, et al. Mercury from dental amalgam. Its toxic and allergic effects and some comments on

occupational hygiene. Acta Odont Scand, 1957;22:1-108.
92 Abraham JE, et al. The effect of dental amalgam restorations on blood mercury levels. J Dent Res, 1984;63:71-3.
93 Svare CW, et al. The effect of dental amalgams on mercury levels in expired air. J Dent Res, 1981;60:1668-71.
94 Patterson JE, et al. Mercury in human breath from dental amalgams. Bull Environ Contamin Toxicol,

1985; 34:459-68.
95 Aronsson AM, Lind B, Nylander M, NordbergM. Dental amalgam and mercury, Biol Metals 1989; 2:25-30.
96 Bjorkman L, Lind B. Factors influencing mercury evapouration rate from dental amalgam fillings,

Scand J Dent Res 1992;100:354-60.
97 Berglund A, et al. Determination of the rate of release of intra-oral mercury vapour from amalgam. J Dent

Res, 1988; 67:1235-42.
98 http://www.ada.org/public/topics/fillings.asp#amalgam (06 June 2008 and 21 May 2009).
99 Stortebacker P. Direct transport of mercury from the oro-nasal cavity to the cranial cavity as a cause of

dental amalgam poisoning. Swed J Biol Medicine, March, 1980:19.
100 Fritz U, Zellmann M. Mercury release from amalgam specimens. Dtsch Zahnarztl Z, 1991 Aug; 46(8):553-4.
101 www.ada.org unknown date
102 Malt UF, et al. Physical and mental problems attributed to dental amalgam fillings: a descriptive study of

99 self-referred patients compared with 272 controls. Psychosom Med, 1997 Jan-Feb;59(1):32-41.
103 www.ada.org accessed 21 May 2009.
104 Brune D, Evje DM. Initial corrosion of amalgams in vitro. Scand J Dent Res, 1984;92(2):165-71.
105 Patterson JE, et al. Mercury in human breath from dental amalgam. Bull Environ Contam Toxicol, 1985;34(4):459-68.
106 Svare CW, et al. The effect of dental amalgams of mercury levels in expired air. J Dent Res, 1981;60(9):1668-71.
107 Herö H, et al. Surface degradation of amalgams in vitro during static and cyclic loading.

Scand J Dent Res. 1983;91(6):488-95.
108 Vimy MJ, Lorscheider FL. Serial measurements of intra-oral air mercury: rstimation of daily dose from

dental amalgam. J Dent Res, 1985; 64:1072-5.
109 Vimy MJ, et al. Estimation of mercury body burden from dental amalgam: computer simulation of a

metabolic compartmental model. J Dent Res, 1986;65(12):1415-9.
110 Sallsten G, et al. Long-term use of nicotine chewing gum and mercury exposure from dental

amalgam fillings. J Dent Res, 1996;75(1):594–8.
111 Gross MJ, Harrison JA. Save electrochemical features of the in vivo corrosion of dental analysis.

J Appl Electrochem, 1989;19:301-10.
112 Richardson GM, et al. Assessment of mercury exposure and risks from dental amalgam:

Final Report, Medical Devices Bureau, Health Canada, Ottowa, 1995.
113 Richardson GM, et al. Assessment of mercury exposure and risks from dental amalgam:

Final Report, Medical Devices Bureau, Health Canada, Ottowa, 1995.
114 Richardson GM, Allan M. A Monte Carlo assessment of mercury exposure and risks from dental amalgam.

Human and Ecol Risk Assess, 1996;2:709-61; & Richardson GM. Assessment of mercury exposure and

risks from dental amalgam: Final Report, Medical Devices Bureau, Helath Canada, Ottowa. 1995.
115 http://www.cda-adc.ca/_files/position_statements/amalgam.pdf
116 Health Canada, 27 February 1996.
117 http://www.imva.info/med_dia_mercury_poisoning.shtml.
118 Lorscheider FL, et al. Mercury exposure from silver tooth fillings: emerging evidence

questions a paradigm. FASEB J, 1995;9:504-8.
119 WHO International programme on chemical safety (1990): Environmental Health Criteria 101 (Methyl Mercury).
120 WHO International programme on chemical safety (1991): Environmental Health Criteria Vol 118

(Inorganic Mercury), WHO Geneva Switzerland.
121 Hanson M. Amalgam hazards in your teeth. J Orthomol Psych, 1983;2(3):194-201; & Lorscheider FL,

et al. Evaluation of the safety issue of mercury release from amalgam fillings. FASEB J, 1993;7:1432-3.
122 Skare I. Mass balance and systemic uptake of mercury released from dental fillings. Water, Air, and Soil

Pollution, 1995;80(1-4):59-67.
123 Skare I, et al. Human exposure to Hg and Ag released from dental amalgam restorations. Arch Environ

Health, 1994;49(5):384-94.
124 Weiner JA, et al. The relationship between mercury concentration in human organs and predictor 5.

variables. Sci Tot Environ, 1993:138(1-3):101-1
125 Weiner JA, et al. An estimation of the uptake of mercury from amalgam fillings in Swedish subjects. Sci

Tot Environ, 1995;168(3):255-65.
126 Engqvist A, et al. Speciation of mercury excreted in feces from individuals with amalgam fillings. Arch

Environ Health, 1998:53(3):205-13.
127 WHO International programme on chemical safety (1991): Environmental Health Criteria Vol 118

(Inorganic Mercury), WHO Geneva Switzerland.
128 Forzi M, et al. Psychological measures in workers occupationally exposed to mercury vapours. A

validation study. In: Adverse effects of environmental chemicals and psychotoxic drugs, Amsterdam,

Oxford, New York, Elsevier Science Publishers, 1976; 2:165-72.
129 WHO International programme on chemical safety: Environmental Health Criteria Vol 118 (Inorganic

Mercury), WHO Geneva Switzerland 1991. Published under the joint sponsorship of the United Nations

Environment Programme, the International Labor Organization, and the World Health Organization
130 Fawer RF et al. Measurement of hand tremor induced by industrial exposure to metallic mercury.

Br J Ind Med, 1983 May; 40(2): 204–8.
131 WHO International programme on chemical safety (1991): Environmental Health Criteria Vol 118

(Inorganic Mercury), WHO Geneva Switzerland.
132 Gross MJ, Harrison JA. Save electrochemical features of the in vivo corrosion of dental analysis. J Appl

Electrochem, 1989;19:301-10.
133 Dietrich K, Cecil K. Sept. 17, 2009, Archives of Disease in Childhood, online.
134 Vimy MJ, Lorscheider FL. Serial measurements of intra-oral air mercury: Estimation of daily dose from

dental amalgam. J Dent Res, 1985;64:1072-5.
135 Radics J, et al. Die kristallinem dompuneten der silberamalgam utersuehungen mit der electronisehen

rontgen mikrosonde. Zahnirztl Welt, 1970;79:1031.
136 WHO International programme on chemical safety (1991): Environmental Health Criteria Vol 118 .

(Inorganic Mercury), WHO Geneva Switzerland
137 Siblerud, RL. The relationship between mercury from dental amalgam and the cardiovascular system.

Sci Tot Environ, 1990;99:25.
138 Siblerud, RL. The relationship between mercury from dental amalgam and the cardiovascular system.

Sci Tot Environ, 1990;99:25; & Dencker L. Organ and cellular distribution of inhaled metallic mercury in the

rat and Marmoset monkey (Callithrix jacchus): influence of ethyl alcohol pretreatment. Acta Pharmacol

Toxicol (Copenh), 1984;55(2):145-52.
139 Barregård L, et al. Mercury, cadmium, and lead in kidney cortex of the general Swedish population: a

study of biopsies from living kidney donors. Environ Health Perspect, 1999:107(11):867-71.
140 Nylander M, et al. Mercury concentrations in the human brain and kidneys and exposure from amalgam

fillings. Swed Dent J, 1987;11:179-87.
141 Lutz E, et al. Concentrations of mercury, cadmium and lead in brain and kidney of second trimester

foetuses and infants. J Trace Elem Med Biol, 1996:10(2):61-7.
142 Eggleston DW, et at. Correlation of dental amalgam with mercury in brain tissue. J Prosthet Dent,

1987:58(6):704-7.
143 Nylander M, et al. Mercury concentrations in the human brain and kidneys and exposure from amalgam

fillings. Swed Dent J, 1987;11:179-87.
144 Barregård L, et al. Mercury, cadmium, and lead in kidney cortex of the general Swedish population: a

study of biopsies from living kidney donors. Environ Health Perspect, 1999:107(11):867-71.
145 Becker K, et al. German environmental survey, 1998:(GerES III): environmental pollutants in blood of the

German population. Int J Hyg Environ Health, 2002;205:297-308.
146 Becker K, et al. German environmental survey, 1998:(GerES III): Environmental pollutants in the urine of

the German population. Int J Hyg Environ Health, 2003;206(1):15-24.
147 Drasch G, et al. Mercury burden of human fetal and infant tissues. Eur J Pediatr, 1994;153:607 - 10.
148 Drasch G, et al. Are blood, urine, hair, and muscle valid bio-monitoring parameters for the internal burden

of men with the heavy metals mercury, lead and cadmium? Trace Elem Electrolytes, 1997;14:116 - 23.
149 Eggleston DW, et al. Correlation of dental amalgam with mercury in brain tissue. J Prosthet Dent,

1987;58(6):704-7.
150 Guzzi G, et al. Mercury and dental patients: toxicology, immunology and genetic connection. Toxicol Lett,

2005;158S:S239.
151 Guzzi G, et al. Methyl mercury, amalgams, and children’s health. Environ Health Perspect, Mar 2

2006:114(3).B12
152 Lorscheider FL, et al. Mercury exposure from silver tooth fillings: emerging evidence questions a

paradigm. FASEB J, 1995;9:504-8.
153 Mortada WI, et al. Reference intervals of cadmium, lead, and mercury in blood, urine, hair and nails

among residents in Mansoura city, Nile Delta, Egypt. Environ Res, 2002;90(2):104-10.
154 Pizzichini M, et al. Influence of amalgam fillings on Hg levels and total antioxidant activity in plasma of

healthy donors. Sci Total Environ, 2003;301(1-3):43-50.
155 Vimy MJ, Lorscheider FL. Serial measurements of intra-oral air mercury: Estimation of daily dose from

dental amalgam. J Dent Res, 1985;64:1072-5.
156 Aposhian HV, et al. Urinary mercury after administration of 2, 3-dimercaptopropane-1-sulfonic acid: c

orrelation with dental amalgam score. FASEB J, 1992;6:2472-476.
157 Koppel C, et al. Methoxyethyl mercury chloride poisoning: clinical findings and in vitro experiments. J

Toxicol Clin Toxicol, 1982 Jun;19(4):391-400.
158 Lund ME, et al. Treatment of acute methyl mercury ingestion by hemodialysis with N-acetylcysteine

(Mucomyst) infusion and 2,3-dimercaptopropane sulfonate. J Toxicol Clin Toxicol, 1984 Jul;22(1):31-49.
159 Dargan PI, et al. Case report: severe mercuric sulphate poisoning treated with 2,3-dimercaptopropane-1-

sulphonate and haemodiafiltration. Crit Care, 2003 Jun;7(3):R1-6.
160 Toet AE, et al.Mercury kinetics in a case of severe mercuric chloride poisoning treated with dimercapto-1-

propane sulphonate (DMPS). Hum Exp Toxicol, 1994 Jan;13(1):11-6.
161 Garza-Ocañas L, et al. A urinary mercury in twelve cases of cutaneous mercurous chloride (calomel)

exposure: effect of sodium 2,3-dimercaptopropane-1-sulfonate (DMPS) therapy. J Toxicol Clin Toxicol,

1997;35(6):653-5.
162 Weiner JA, et al. The relationship between mercury concentration in human organs and predictor

variables. Sci Total Environ, 1993;138(1-3):101-15.
163 Begerow J, et al. Long-term mercury excretion in urine after removal of amalgam fillings. Int Arch Occup

Health, 1994;66:209?12.
164 Barregård L, et al. People with high mercury uptake from their own dental amalgam fillings. Occup Envir

Med, 1995;52:124?8.
165 Bjorkman L, et al. Mercury in saliva and feces after removal of amalgam fillings. Toxicol Appl Pharmacol,

1997;144(1):156?62.
166 Sandborgh-Englund G, et al. Mercury in biological fluids after amalgam removal. J Dent Res, April

1998;77(4):615-24.
167 Kingman A, et al. Mercury concentrations in urine and whole blood associated with amalgam exposure in

a US military population. J Dent Res, 1998;77(3):461-71.
168 Leistevuo J, et al. Dental amalgam fillings and the amount of organic mercury in human saliva. Caries Res,

2001;35(3):163-6.
169 Levy M, et al. Childhood urine mercury excretion: dental amalgam and fish consumption as exposure

factors. Environ Res, 2004:94(3):283-90.
170 Doctors Data Inc: Fecal Elements Test; P.O.Box 111, West Chicago, Illinois, 60186-0111.

www.doctorsdata.com/repository.asp?id=43.
171 Biospectron Lab, LMI, Lennart Mansson International AB, This e-mail address is being protected from spambots. You need JavaScript enabled to view it .

www.home.swipnet.se/misac/research11.html#biospectrons.
172 Mackert JR Jr, Berglund A. Mercury from dental amalgam fillings: absorbed dose and the potential for

adverse health effects. Crit Rev Oral Biol Med, 1997;8:410-36.
173 Mackert JR Jr, Berglund A. Mercury from dental amalgam fillings: absorbed dose and the potential for

adverse health effects. Crit Rev Oral Biol Med, 1997;8:410-36.
174 Isacsson G, et al. Impact of nocturnal bruxism on mercury uptake from dental amalgams. Eur J Oral Sci,

1997;105(3):251–7.
175 Bjorkman L, et al. Factors influencing mercury evapouration rate from dental amalgam fillings. Scand J

Dent Res, 1992;100(6):354–60.
176 Helgø H, et al. Kraftig slitasje av amalgamfyllinger og høyt kvikksølvinnhold i urin. Nor Tannlegeforen Tid,

2001:111:930–1. (Abstract)
177 Barregard L, et al. People with high mercury uptake from their own dental amalgam fillings. Occu Environ

Medicine, 1995;52(2):124–8.
178 Sallsten G, et al. Long-term use of nicotine chewing gum and mercury exposure from dental amalgam

fillings. J Dent Res, 1996;75(1):594–8.
179 Nogi N. Electric current around dental metals as a factor producing allergic metal ions in the oral cavity.

Nippon Hifuka Gakkai Zasshi, 1989;99(12):1243-54.
180 Rose MD, et al. The tarnished history of a posterior restoration. Br Dent J, 1998;185(9):436; &

Bergdahl J, et al. Oral Electricity. Gen Dent, 1996;44(4):324-6.
181 Ogletree RH, et al. Effect of mercury on corrosion of beta-Cu-Sn phase in dental amalgams.

Dent Mater, 1995;11(5):332-6.
182 Meyer RD, et al. Intraoral galvanic corrosion. J Prosthet Dent, 1993;69(2):141-3.
183 Owens BM, et al. Localized galvanic shock after insertion of an amalgam restoration. Compendium,

1993;14(10):1302,1304,1306-7.
184 Motorkina AV, et al. Patterns of mercury release from amalgam fillings into the oral cavity. Stomatologiia

(Mosk), 1997;76(4):9-11.
185 Rotstein I, et al. Effect of sodium hypochlorite and EDTA on mercury released from amalgam. Oral Surg

Oral Med Oral Pathol Oral Radiol Endod, 2001 Nov;92(5):556-60.
186 Bilhan H, et al. The effect of mucine, IgA, urea and lysozyme on the corrosion behavior of various

non-precious dental alloys and pure titanium in artificial saliva. J Biomater Appl, 2007 Nov;22(3):197-221.
187 Okabe T, et al. Mercury release from dental amalgams into continuously replenished liquids. J Dent Mater,

2003 Jan;19(1):38-45.
188 Al-Salehi SK. Effects of bleaching on mercury ion release from dental amalgam. J Dent Res, 2009

Mar;88(3):239-43.
189 Steinberg D, et al. Influence of dental biofilm on release of mercury from amalgam exposed to carbamide

peroxide. J Biomed Mater Res B Appl Biomater, 2003 Oct 15;67(1):627-31.
190 Al-Salehi SK, et al. The effect of carbamide peroxide treatment on metal ion release from dental amalgam.

Dent Mater, 2006;22(10):948-53.
191 Rotstein I, et al. Factors affecting mercury release from dental amalgam exposed to carbamide peroxide

bleaching agent. Am J Dent, 2004 Oct;17(5):347-50.
192 Ahn HJ, et al. Surface change of dental amalgam after treatment with 10% carbamide peroxide. Dent Mater,

2006 Jun;25(2):303-8.
193 Al-Salehi SK, et al. The effect of hydrogen peroxide concentration on metal ion release from dental

amalgam. J Dent Res, 2007 Feb;35(2):172-6.
194 Lin TH, et al. Metal release from high-copper amalgams containing palladium. Zhonghua Yi Xue Za Zhi

(Taipei), 1994 Mar;53(3):146-53.
195 Powell LV, et al. Mercury vapour release during insertion and removal of dental amalgam. Oper Dent, 1994

Mar-Apr;19(2):70-4.
196 Powell LV, et al. Mercury vapour release during insertion and removal of dental amalgam. Oper Dent, 1994

Mar-Apr;19(2):70-4.
197 Okabe T, et al. Reduced mercury vapour release from dental amalgams prepared with binary Hg in liquid

alloys. J Dent Res, 1994 Nov;73(11):1711-6.
198 Nakajima H, et al. Initial mercury evapouration from amalgams made with in-containing commercial alloys.

Dent Mater, 1996 Dec;15(2):168-74.
199 Lyttle HA, Bowden GH. The level of mercury in human dental plaque and interaction in vitro between

biofilms of Streptococcus mutans and dental amalgam. J Dent Res, 1993 Sep;72(9):1320-4.
200 WHO International programme on chemical safety: Environmental Health Criteria Vol 118 (Inorganic

Mercury), WHO Geneva Switzerland 1991. Published under the joint sponsorship of the United Nations

Environment Programme, the International Labor Organization, and the World Health Organization
201 Vimy MJ, et al. Intra oral mercury released from dental amalgams and estimation of daily dose. J Dent

Res, 1985:64(8):1069-75.
202 Abraham J, et al. The effects of dental amalgam restorations on blood mercury levels. J Dent Res,

1984;63(1):71-3.
203 Hanson M. Amalgam hazards in your teeth. J Orthomol Psych, 1983;2(3):194-201.
204 Lorscheider FL et al. Evaluation of the safety issue of mercury release from amalgam fillings. FASEB J,

1993;7:1432-33.
205 Svare CW, et.al. The effects of dental amalgam on mercury levels in expired air. J Dent Res,

1981;60(9):1668-71.
206 Zamm AF. Removal of dental mercury: often an effective treatment for very sensitive patients. J

Orthomolecular Med, 1990;5(53):138-42.
207 Langan DC, et al. The use of mercury in dentistry: a critical review of the literature. JADA, 1987;115:867.
208 Queen S. Chronic Mercury Toxicity - New Hope Against an Endemic Disease. http://www.bioprobe.com.
209 Lorscheider FL, et al. Mercury exposure from silver tooth fillings: emerging evidence questions a paradigm.

FASEB J, 1995; 9:504-8.
210 Drasch G, et al. Silver concentrations in human tissues: the dependence on dental amalgam. J Trace

Elements in Medicine and Biology,1995;9(2):82-7,1995; & Calsakis LJ, et al. Allergy to Silver Amalgams.

Oral Surg, 1978;46:371-5.
211 Skare I, et al. Human exposure to Hg and Ag released from dental amalgam restorations. Swedish National

Board of Occupational Safety and Health, Arch Environ Health, 1994;49(5):384-94.
212 Pleva J. Mercury from dental amalgams: exposure and effects. Int J Risk Safety Med, 1992;3:1-22.
213 Pleva J. Mercury - a public health hazard. Rev Environ Health, 1994;10:1-27.
214 Pleva J. Mercury poisoning from dental amalgam. J Orthomol Medicine, 1989;4(3):141- 8.
215 Berglund A. A study of the release of mercury vapour from different types of amalgam alloys.

J Dent Res, 1993;72:939-46.
216 Lichtenberg H. Mercury vapour in the oral cavity in relation to the number of amalgam fillings and chronic

mercury poisoning. J Orthomolec Medicine, 1996;11(2):87-94.
217 Aposhian HV, et al. Mobilization of mercury in humans by DMPS. Envir Health Perspectives,

1998;106(Supp. 4).
218 Aposhian HV, et al. Urinary mercury after administration DMPS. FASEB J, 1992;6: 2472-76.
219 Trepka MJ, et al. Factors afftecting internal mercury burdens among German children. Arch Environ

Health, 1997;52(2):134-8.
220 Engqvist A, et al. Speciation of mercury excreted in feces from individuals with amalgam fillings. Arch

Environ Health, 1998;53(3):205-13.
221 Halbach S. Estimation of mercury dose by a novel quantitation of elemental and inorganic species

released from amalgam. Int Arch Occup Environ Health, 1995;67(5): 295-300.
222 Boyer DB. Mercury vapourization from corroded dental amalgam. J Dent Mater, 1988;4:89-93.
223 Psarras V, et al. Effect of selenium on mercury vapour released from dental amalgams. Swed Dent J,

1994;18:15-23.
224 Moberg LE. Long term corrosion studies of amalgams and casting alloys in contact. Acta Odontal

Scand, 1985;43:163-177; &

Moberg LE. Corrosion products from dental alloys. Published Dissertation, Stockholm, 1985.
225 Weiner JA, et al. Does mercury from amalgam restorations constitute a health hazard? Sci Total

Environ, 1990 Dec 1;99(1-2):1-22.
226 Stortebecker P, et al. Mercury poisoning from dental amalgam-a hazard to human brain. Pp. 32-43,

1985. Cited in: Ziff S, Ziff MF. Dentistry Without Mercury. Bio-Probe, Inc. P.O. Box 608010, Orlando, FL

32860-8010.
227 Störtebecker P. Mercury poisoning from dental amalgam through a direct nose-brain transport. Lancet,

1989:1(8648):1207.
228 Henriksson J, Tjalve H. Uptake of inorganic mercury in the olfactory bulbs via olfactory pathways in rats.

J Environ Res, 1998;77:130–40.
229 Pleva J. Mercury poisoning from dental amalgam. J Orthomol Psych, 1983;12:184-93.
230 Gali? N, et al. Dental amalgam mercury exposure in rats. Biometals, 1999 Sep;12(3):227-31.
231 Stortebecker P. Mercury poisoning from dental amalgam. Stortebecker Foundation for Research. Bioprobe,

1985: 138, 149, 151-154.
232 WHO, 1991: US public health service, 1993.
233 Clarkson, TW. The biological properties and distribution of mercury. In: Proceedings of the Biochemical

Society, 1971:61-3.
234 Rothstein A, Hayes AD. The turnover of mercury in rats exposed repeatedly to inhalation of vapour.

Health Phys, 1964 Dec;10:1099-113.
235 Hursh JB, et al. Clearance of mercury (Hg-197, Hg-203) vapour inhaled by human subjects. Arch

Environ Health, 1976;31:302-9.
236 Clarkson TW. The pharmacology of mercury compounds. Ann Rev Pharmacol, 1972;12:375-406.
237 Hughes W L. A physicochemical rationale for the biological activity of mercury and its compounds. Ann

NY Acad Sci, 1957;65(5):454-60.
238 Halbach S, et al. Enzymatic oxidation of mercury vapours by erythrocytes. Biochem Biophys Acta,

1978;523(2):522-31.
239 Magos L, et al. Role of catalase in the oxidation of mercury vapour. Biochem Pharmacol, 1978;27:1373-7.
240 Clarkson TW. The pharmacology of mercury compounds. Ann Rev Pharmacol, 1972;12:375-406.
241 Kostial K, et al. Influence of age on metal metabolism and toxicity. Environ Health Perspect,

1978;25:81-6.
242 Kostial K, et al. Age and intestinal retention of mercury and cadmium in rats. J Environ Res, 1983,

31:111-5.
243 Gali? N, et al. Dental amalgam mercury exposure in rats. Biometals, 1999 Sep;12(3):227-31.
244 Seki Y, et al. Pulpal response to a newly developed MMA based resin cement for bonding tooth-colored

indirect restorations. Am J Dent, 2006 Oct;19(5):297-302.
245 Cabrera S, et al. Effects of growth factors on dental pulp cell sensitivity to amalgam toxicity.

J Dent Mater, 2007 Oct;23(10):1205-10.
246 Harris HH, et al. Migration of mercury from dental amalgam through human teeth. J Synchrotron Radiat,

2008 Mar;15(Pt 2):123-8.
247 Frisk P, et al Decrease of trace elements in erythrocytes and plasma after removal of dental amalgam and

other metal alloys. Biol Trace Elem Res, 2006 Dec;113(3):247-59.
248 Snapp KR, et al. The contribution of dental amalgam to Hg in blood. J Dent Res, 1989 May;68(5):780-5.
249 Reichl FX, et al. Cell death effects of resin-based dental material compounds and mercurials in human

gingival fibroblasts. Arch Toxicol, 2006 Jun;80(6):370-7.
250 Nylander M, et al. Mercury concentrations in the human brain and kidneys in relation to exposure from

dental amalgam fillings. Swed Dent J, 1987;11(5):179-87.
251 Lindh U, et al. Metal exposure from amalgam alters the distribution of trace elements in blood cells and

plasma. Clin Chem Lab Med, 2001 Feb;39(2):134-42.
252 Arvidson B. Inorganic mercury is transported from muscular nerve terminals to spinal and brainstem

motoneurons. Muscle Nerve, 1992;15:1089–94.
253 Tran HT, et al. Amalgam tattoo. Dermatol Online J, 2008 May 15;14(5):19.
254 McGinnis JP Jr, et al. Amalgam tattoo: report of an unusual clinical presentation and the use of energy

dispersive X-ray analysis as an aid to diagnosis. JADA, 1985 Jan;110(1):52-4.
255 Eley BM.Tissue reactions to implanted dental amalgam, including assessment by energy dispersive x-ray

micro-analysis. J Pathol, 1982 Nov;138(3):251-72.
256 Harrison JD, et al.Amalgam tattoos: light and electron microscopy and electron-probe micro-analysis.

J Pathol, 1977 Feb;121(2):83-92.
257 Weaver T, et al. An amalgam tattoo causing local and systemic disease? Oral Surg Oral Med Oral

Pathol, 1987 Jan; 63(1):137–40.
258 Kaufmann T, et al. Chronic inflammation and pain inside the mandibular jaw and a 10-year forgotten

amalgam filling in an alveolar cavity of an extracted molar tooth. Ultrastruct Pathol, 2005 Sep-

Oct;29(5):405-13.
259 Buchner A. Amalgam tattoo (amalgam pigmentation) of the oral mucosa: clinical manifestations, diagnosis

and treatment. Refuat Hapeh Vehashinayim, 2004 Apr;21(2):19-22, 96.
260 Ask K, et al. Inorganic mercury and methyl mercury in placentas of Swedish women. Environ Health

Perspect, 2002;110:523-26.
261 Mortada WI, et al. Mercury in dental restoration: Is there a risk of nephrotoxicity? J Nephrol, 2002;15:171-76.
262 Drasch G, et al. Mercury burden of human fetal and infant tissues. Eur J Pediatr, 1994:153(8):607-10.
263 Holmes AS, et al. Reduced levels of mercury in first baby haircuts of autistic children. Int J Toxicol,

2003:22(4):277-85.
264 Palkovicova L, et al. Maternal amalgam dental fillings as the source of mercury exposure in developing

foetus and newborn. J Expo Sci Environ Epidemiol, 2008 May;18(3):326-31.
265 Drasch G, et al. Mercury burden of human fetal and infant tissues. Eur J Pediatr, 1994:153(8):607-10.
266 Ursinyova M, Masanova V. Cadmium, lead and mercury in human milk from Slovakia. Food Addit

Contam, 2005 Jun;22(6):579-89.
267 Dorea JG, Donangelo CM. Early (in uterus and infant) exposure to mercury and lead. Clin Nutr, 2006

Jun;25(3):369-76.
268 Luglie PF, et al. Dessole S. Effect of amalgam fillings on the mercury concentration in human amniotic

fluid. Arch Gynecol Obstet, 2005:271(2):138-42.
269 Oskarsson A, et al. Total and inorganic mercury in breast milk in relation to fish consumption and

amalgam in lactating women. Arch Environ Health, 1996;51(3):234-41.
270 da Costa SL, et al. Breast-milk mercury concentrations and amalgam surface in mothers from Brasília,

Brazil. Biol Trace Elem Res, 2005 Aug;106(2):145-51.
271 Vimy MJ, et al. Mercury from maternal "silver" tooth fillings in sheep and human breast milk. A source of

neonatal exposure. Biol Trace Elem Res, 1997;56(2):143-52.
272 Vimy MJ, et al. Mercury from maternal "silver" tooth fillings in sheep and human breast milk. A source of

neonatal exposure. Biol Trace Elem Res, 1997;56(2):143-52.
273 Drasch G, et al. Mercury in human colostrum and early breast milk. Its dependence on dental amalgam

and other factors. J Trace Elem Med Biol, Mar 1998;12(1):23-7.
274 Takahashi Y, et al. Release of mercury from dental amalgam fillings in pregnant rats and distribution of

mercury in maternal and fetal tissues. Toxicology, 2001 Jun 21;163(2-3):115-26.
275 Hursh JB, et al. Clearance of mercury (Hg-197, Hg-203) vapour inhaled by human subjects. Arch

Environ Health, 1976;31:302-9.
276 Friberg L, Vostal J. Mercury in the environment. CRC Press, Cleveland, Ohio, 1972.
277 Hahn LJ, et al. Dental "silver " tooth fillings: a source of mercury exposure revealed by whole body scan

and tissue analysis. FASEB J, 1989;3:2641-6.
278 Halbach S, et al. Enzymatic oxidation of mercury vapour by erythrocytes. Biochimica et Biophysica

Acta, 1978;523:522-31.
279 Taskinen H, et al. A possible case of mercury-related toxicity resulting from the grinding of old amalgam

restorations. Scand J Work Environ Health, 1989;15:302-4.
280 Berdouses E, et al. Mercury release from dental amalgams: An in vitro study under controlled chewing

and brushing in an artificial mouth. J Dent Res, 1995:74(5):1185-93.
281 Sandborgh-Englund G, et al. The absorption, blood levels and excretion of mercury after a single dose of

mercury vapour in humans. Toxicology and Applied Pharmacology, 1998;150:146-53.
282 Skare I, Engqvist A. Human exposure to mercury and silver released from dental amalgam restorations.

Arch Environ Health, September/October 1994;49(5):384-94.
283 Gebel T, et al. Influence of chewing gum consumption and dental contact of amalgam fillings to different

metal restorations on urine mercury content. Zentralbl Hyg Umweltmed, 1996;199(1):69-75.
284 http://www.flcv.com/rbtestbw.html.
285 Rooney JP. The role of thiols, dithiols, nutritional factors and interacting ligands in the toxicology of

mercury. Toxicology, 2007 May 20;234(3):145-56.
286 Bridges CC, Zalups RK. Molecular and ionic mimicry and the transport of toxic metals. Toxicol Appl

Pharmacol, 2005;204:274-308.
287 Dunn JD, et al. Ethanol increased exhalation of mercury in mice. Br J Ind Med, 1978;35:241-4.
288 WHO environmental health criteria 1: Mercury, Geneva, World health organization, 1976.
289 Stopford W, et al. Microenvironmental exposure to mercury vapour. Am Ind Hyg Assoc J, 1978;39:379-84.
290 Yoshida M, Yamamura Y. Elemental mercury in urine from workers exposed to mercury vapour. Int Arch

Occup Environ Health, 1982;51(2):99-104.
291 Suzuki T, et al. Mercury in human amniotic fluid. Scand J Work Environ Health, 1977;9:32-5.
292 Ballatori N, Clarkson TW. Biliary secretion of glutathione and of glutathione-metal complexes. Fundam

Appl Toxicol, 1985;5:816-31.
293 Clarkson TW. The three modern faces of mercury. Environ Health Perspect, 2002;110(1):11–23.
294 Ballatori N, et al. Accelerated methyl mercury elimination in gamma-glutamyl transpeptidase-deficient

mice. Am J Pathol, 1998;152(4):1049-55.
295 Aposhian HV, et al. Vitamin C, glutathione, or lipoic acid did not decrease brain or kidney mercury in rats

exposed to mercury vapour. J Toxicol Clin Toxicol, 2003;41:339-47.
296 WHO environmental health criteria 1: Mercury. Geneva, World Health Organization, 1976.
297 Bridges CC, Zalups RK. Molecular and ionic mimicry and the transport of toxic metals. Toxicol Appl .

Pharmacol, 2005;204:274-308
298 Richardson RJ, Murphy SD. Effect of glutathione depletion on tissue deposition of methyl mercury in rats.

Toxicol Appl Pharmacol, 1975;31:505-19.
299 Custodio HM, et al. Polymorphisms in glutathione-related genes affect methyl mercury retention. Arch

Environ Health, 2004;59(11):588-95.
300 Rowland IR, et al. Effects of diet on mercury metabolism and excretion in mice given methyl mercury: role

of gut flora. Arch Environ Health, 1984;39(6):401-8.
301 Seko Y, et al. Methyl mercury decomposition in mice treated with antibiotics. Acta Pharmacol Toxicol

(Copenh), 1981;49(4):259-65.
302 Rowland IR, et al. Tissue content of mercury in rats given methyl mercuric chloride orally: influence of

intestinal flora. Arch Environ Health, 1980;35(3):155-60.
303 Echeverria D, et al. The association between a genetic polyorphism of coproporphyrinogen oxidase,

dental mercury exposure and neurobehaviousal response in humans. Neurotoxicol Teratol,

2006;28(1):39-48.
304 Halbach, S. Combined estimation of mercury species released from amalgam. J Dent Res,

1995;74(4):1103-09.
305 Engqvist A, et al. Speciation of mercury excreted in feces from individuals with amalgam fillings. Arch

Environ Health, 1998;53(3):205-13.
306 http://www.atsdr.cdc.gov/csem/pediatric/appendixa.html accessed 06 June 2008.
307 Matsuo N, et al. Mercury concentration in organs of contemporary Japanese. Arch Environ Health,

1989;44(5):298-303.
308 Hahn LJ, et al. Whole-body imaging of the distribution of mercury released from dental fillings into

monkey tissues. FASEB J, 1990;4:3256-609.
309 Danscher G, et al. Traces of mercury in organs from primates with amalgam fillings. Experim Molec

Pathol, 1990;52:291-9.
310 Drasch G, et al. Mercury burden of human fetal and infant tissues. Europ J Pediatrics, 1994;153(8):607-10.
311 Ayensu WK, et al. Microarray analysis of mercury-induced changes in gene expression in human liver

carcinoma (HepG2) cells: importance in immune responses. Int J Environ Res Public Health,

2006;3(2):141-73.
312 Laks DR. Assessment of chronic mercury exposure within the U.S. population, National Health and

Nutrition Examination Survey, 1999-2006. Biometals, 2009 Aug 21.
313 Lindh U, et al. Dental amalgam removal improves health. Neuroendocrin Lett, 2002; 23:459-82.
314 Frisk P, et al. Changed clinical chemistry pattern in blood after removal of dental amalgam and other metal

alloys supported by antioxidant therapy. Biol Trace Elem Res, 2007;120:163-70.
315 Gjerdet NR. Utskiftning av amalgam – erfaringer og vurderinger. Statens helsetilsyns utredningsserie IK-

2652, 1998:8–98.
316 Blom C. Toksikologi og tannrestaureringsmaterialer. Statens helsetilsyns utredningsserie IK-2652,

1998:88–96.
317 Eijkman MA, de Jongh A. Amalgam removed and patient cured. Ned Tijdschr Tandheelkd, 1994

Feb;101(2):50-3.
318 Ahlquist M, et al. Number of amalgam tooth fillings in relation to subjectively experienced symptoms in a

study of Swedish women. Community Dent Oral Epidemiol, 1988;16:227-31.
319 Lavstedt S, Sundberg H. Medical diagnoses and symptoms related to amalgam fillings. Tandlakartid,

1989;81:81-8.
320 Siblerud RL. The relationship between mercury from dental amalgam and mental health. Am J

Psychother, 1989;43:575-87.
321 Molin M. Mercury release from dental amalgam in man. Swed Dent J, 1990;71 (Suppl):l-73.
322 Vamnes JS, et al. Diagnostic value of a chelating agent in patients with symptoms allegedly caused by

amalgam fillings. J Dent Res, 2000 Mar;79(3):868-74.
323 Schiele R, Kroncke A. Mercury mobility through DMPS (Dimaval) in persons with and without amalgam

fillings. Zahndrztl Mitt, 1989 Sep 1;79(17):1866-8.
324 DAMS Technical contact person: Bernie Windham, This e-mail address is being protected from spambots. You need JavaScript enabled to view it , USA 850-878-9024,

President and Research Director, DAMS Intl.
325 www.flcv.com/amalg6. Health effects of amalgam fillings and results of replacement of amalgam filings.

More than 4000 medical study references (most in Medline) documenting common high mercury exposures.

www.flcv.com/amalg6 from amalgam, that vapour from amalgam is the most dangerous form of mercury to

the foetus and the mechanisms by which mercury causes over 40 chronic health conditions.
326 http://www.flcv.com/Hgrecovp.html. Sample of 1500 patients who had amalgam replacement and

percentages that recovered from various chronic conditions.

Most referenced studies can be found in NIH National Library of Medicine Medline, www.nlm.nih.gov/
327 Documentation of recovery from 60,000 clinical cases of serious adverse health effects after replacement

of amalgam fillings in over 30 chronic health conditions. B. Windham (Ed.) www.flcv.com/Hgremove.html.

(More than 50 peer-reviewed studies).
328 International mercury market study and the role and impact of US Environmental Policy. EPA, 2004.
329 Bradbard L. Dental Amalgam: Filling a Need or Foiling Health? FDA Consumer, December 1993;27: 22.

http://findarticles.com/p/articles/mi_m1370/is_n10_v27/ai_14891423/. Retrieved 5 April 2010.
330 What patients don’t know: dentists' sweet tooth for mercury. Mercury Policy Project, 14 February 2006.

http://mpp.cclearn.org/wp-content/uploads/2008/08/whatpatientsdontknow1.pdf. Retrieved 29 July 2009.
331 The mercury in your mouth: You can avoid amalgam fillings or even replace the ones you have, but

should you? Consumer Reports, 1991;56:316-9. www.consumerreports.org.
332 http://www.consumerreports.org/cro/aboutus/mission/overview/index.htm accessed 5 April 2010.
333 Lindh U, Lindvall A. Removal of dental amalgam and other metal alloys supported by antioxidant therapy

alleviates symptoms and improves quality of life in patients with amalgam-associated ill health.

Neuroendocrin Lett, Oct-Dec 2002;5(6):23.
334 Nerdrum P, et al. A 7-year prospective quasi-experimental study of the effects of removing dental

amalgam in 76 self-referred patients compared with 146 controls. J Psychosom Res, 2004 Jul;57(1):103-11.
335 Review and analysis of the literature on the health effects of dental amalgams. Life Sciences Research

Office. http://www.lsro.org/presentation_files/amalgam/amalgam_execsum.pdf. Retrieved 5 April 2010.
336 http://clinicaltrials.gov/ct2/show/NCT00346944?intr=%22Dental+amalgam+restorations%22&rank=1
337 Mutter, J, et al. Amalgam: Eine Risikobewertung unter Berücksichtigung der neuen Literatur bis 2005

[Amalgam risk assessment with coverage of references up to 2005. Gesundheitswesen (Bundesverband der

Arzte des Offentlichen Gesundheitsdienstes (Germany),) 2005;67(3): 204-16. (Author's own translation.)
338 Djerassi E, Berova N, et al. The possibilities of allergic reactions from silver Amalgamrestorations.

Int Dent J, 1969:19(4):481-8.
339 Miller EG, et al. Prevalence of mercury hypersensitivity in dental students. J Dent Res, 1985;64( Special

Issue):338.
340 Mobacken H, et al. Oral lichen planus: hypersensitivity to dental restoration material. Contact Dermatol,

1984;10:11-5.
341 Kusaka Y. Occupational diseases caused by exposure to sensitizing metals. Sangyo Igaku, 1993

Mar;35(2):75-87.
342 Catsakis LH, Sulica VI. Allergy to silver amalgams. Oral Surg Oral Med Oral Pathol, 1978 Sep;46(3):371-5.
343 Valentine-Thon E, et al. LTT-MELISA is clinically relevant for detecting and monitoring metal sensitivity.

Neuro Endocrinol Lett, 2006 Dec;27(1):17-24.
344 Katsunuma T, et al.Exercise-induced anaphylaxis: improvement after removal of amalgam in dental caries.

Ann Allergy, 1990 May;64(5):472-5.
345 Pizzichini M, et al. Influence of amalgam fillings on mercury levels and total antioxidant activity in plasma of

healthy donors. Bull Group Int Rech Sci Stomatol Odontol, 2001 May-Sep;43(2):62-7.
346 Pizzichini M, et al. Release of mercury from dental amalgam and its influence on salivary antioxidant activity.

Sci Total Environ, 2002 Feb 4;284(1-3):19-25.
347 Sandborgh-Englund G, et al. Mercury in biological fluids after amalgam removal. J Dent Res, 1998

Apr;77(4):615-24.
348 Baynes J, Dominiczak M. Medical Biochemistry. Mosby 1999. ISBN 0 7234 3341 0.
349 Frisk P, et al. Changed clinical chemistry pattern in blood after removal of dental amalgam and other metal

alloys supported by antioxidant therapy. Biol Trace Elem Res, 2007 Winter;120(1-3):163-70.
350 Weed R, et al., Interaction of mercury with human erythrocytes. J GenPhysiol, 1962;45:395-410.
351 Weed R, et al., Interaction of mercury with human erythrocytes. J GenPhysiol, 1962;45:395-410.
352 Riggs AF. Sulfhydryl groups and the interaction between the hemes in hemoglobin. J Gen Physiol, 1952

May;36(1):1-16.
353 Hughes WL. Protein mercaptides. Cold Spring Harbor Symp Quant Biol, 1949;14:79.
354 Ingbar SH, Kass EH. Sulfhydryl content of normal hemoglobin and hemoglobin in sickle cell anemia, Proc

Soc Exp Bio Med, 1951:77-4.
355 Trachtenberg IM. Chronic effects of mercury on organisms, U.S. Dept. Health, Education,Welfare, NIH,

DHEW Publ. 74-473, Washington, DC, 1974.
356 Siblerud RL. (Ph.D. dissertation). The relationship between mercury from dental amalgam and health,

Colorado State University, Department of Physiology, 1989.
357 Siblerud RL, et al. The relationship between mercury from dental amalgam and the cardiovascular system.

Sci Total Environ, 1990 Dec 1;99(1-2):23-35.
358 Boffetta P, et al. Carcinogenicity of mercury and mercury compounds. Scand J Work Environ Health, 1993

Feb;19(1):1-7.
359 Omura Y, et al. Significant mercury deposits in internal organs following the removal of dental amalgam,

& development of pre-cancer on the gingiva and the sides of the tongue and their represented organs as

a result of inadvertent exposure to strong curing light (used to solidify synthetic dental filling material)

& effective treatment: a clinical case report, along with organ representation areas for each tooth.

Acupunct Electrother Res, 1996 Apr-Jun;21(2):133-60.
360 Schmid K, et al. Mercuric dichloride induces DNA damage in human salivary gland tissue cells and

lymphocytes. Arch Toxicol, 2007 Nov;81(11):759-67.
361 Virtanen JK, et al. Mercury as a risk factor for cardiovascular diseases. J Nutr Biochem, 2007 Feb;18(2):75-85.
362 Siblerud RL, et al. The relationship between mercury from dental amalgam and the cardiovascular system.

Sci Total Environ, 1990 Dec 1;99(1-2):23-35.
363 Chan HM, Egeland GM. Fish consumption, mercury exposure and heart diseases. Nutr Rev, 2004;62:68-72.
364 Kannan K, et al. Distribution of total mercury and methyl mercury in water, sediment and fish from south

Florida estuaries. Arch Environ Contam Toxicol, 1998;34:109-18.
365 Kim DS, et al. Heavy metal as risk factor of cardiovascular disease–an analysis of blood lead and urinary

mercury. J Prev Med Public Health, 2005;38:401-7.
366 de Assis GP, et al. Effects of small concentrations of mercury on the contractile activity of the rat ventricular

myocardium. Comp Biochem Physiol Toxicol Pharmacol, 2003 Mar;134(3):375-83.
367 Wiggers GA, et al. Low nanomolar concentration of HgCl(2) increases vascular reactivity to phenylephrine

and local angiotensin production in rats. Comp Biochem Physiol Toxicol Pharmacol, 2008

Mar;147(2):252-60.
368 Moszczy?ski P, et al. Mercury and the risk of coronary heart disease. Przegl Lek, 2006;63(7):84-7.
369 Mazerik JN, et al. Phospholipase A2 activation regulates cytotoxicity of methylmercury in vascular endothelial

cells. Int J Toxicol, 2007 Nov-Dec;26(6):553-69.
370 Moszczy?ski P, et al. Mercury and the risk of coronary heart disease. Przegl Lek, 2006;63(7):84-7.
371 de Assis GP, et al. Effects of small concentrations of mercury on the contractile activity of the rat ventricular

myocardium. Comp Biochem Physiol Toxicol Pharmacol, 2003 Mar;134(3):375-83.
372 Kim DS, et al. Heavy metal as risk factor of cardiovascular disease–an analysis of blood lead and urinary

mercury. J Prev Med Public Health, 2005;38:401-7.
373 Guallar E, et al. Mercury, fish oils and the risk of myocardial infarction. N Engl J Med, 2002;347:1747-54.
374 Yoshizawa K, et al. Mercury and the risk of coronary heart disease in men. N Engl J Med,

2002;347:1755-60.
375 Frustaci A, et al. Marked elevation of myocardial trace elements in idiopathic dilated cardiomyopathy

compared with secondary cardiac dysfunction. J Am Coll Cardiol, 1999 May;33(6):1578-83.
376 de Assis GP, et al. Effects of small concentrations of mercury on the contractile activity of the rat ventricular

myocardium. Comp Biochem Physiol Toxicol Pharmacol, 2003 Mar;134(3):375-83.
377 Worowski K, Prokopowicz J. Effect of mercuric chloride on the arterial blood pressure of dogs. Pol Akad

Nauk Bull Ser Sci Biol, 1969;17:349-51.
378 Guyton AC. Textbook of Medical Physiology. W.B. Saunders Co., Philadelphia, PA, 1981:270.
379 Schmidt R, Wilber CG. Mercury and lead content of human body tissues from a selected population.

Med Sci Law, 1978;18(3):155-8.
380 Trachtenberg IM. Chronic effects of mercury on organisms, U.S. Dept. Health, Education, Welfare, NIH,

DHEW Publ. 74-473, Washington, DC, 1974.
381 Schulman IH, et al. Calcium channel blockers, endothelial dysfunction and combination therapy. Aging Clin

Exp Res, 2005;17(4):40-5.
382 Henry PD. Antiperoxidative actions of calcium antagonists and atherogenesis. J Cardiovasc Pharmacol,

1991;18(1):S6-10.
383 Denny MF, Atchison WD. Mercurial-induced alterations in neuronal divalent cation homeostasis.

Neurotoxicology, 1996;17:47-61.
384 Gasso S, et al.. Antioxidant compounds and Ca2þ pathway blockers differentially protect against methyl

mercury and mercuric chloride neurotoxicity. J Neurosci Res, 2001;66:135-45.
385 Kim SH, Sharma RP. Cytotoxicity of inorganic mercury in murine T and B lymphoma cell lines: involvement of

reactive oxygen species, Ca2þ homeostasis and cytokine gene expression.

Toxicol In Vitro, 2003;17:385-95.
386 Sakamoto M, et al. Protective effects of Ca2þ channel blockers against methyl mercury toxicity. Pharmacol

Toxicol, 1996;78:193-9.
387 Peltz A, et al. Calcium and calmodulin regulate mercury-induced phospholipase D activation in vascular

endothelial cells. Int J Toxicol, 2009 May-Jun;28(3):190-206.
388 Mazerik JN, et al. Phospholipase A2 activation regulates cytotoxicity of methyl mercury in vascular

endothelial cells. Int J Toxicol, 2007 Nov-Dec;26(6):553-69.
389 Hagele TJ, et al. Mercury activates vascular endothelial cell phospholipase D through thiols and oxidative

stress. Int J Toxicol, 2007 Jan-Feb;26(1):57-69.
390 Houston MC, et al. The role of mercury and cadmium heavy metals in vascular disease, hypertension,

coronary heart disease and myocardial infarction. Altern Ther Health Med, 2007 Mar-Apr;13(2):S128-33.
391 Fillion M, et al. A preliminary study of mercury exposure and blood pressure in the Brazilian Amazon.

Environ Health, 2006 Oct 10;5:29.
392 Siblerud, RL. The relationship between denta amalgam and th cardiovascular system. Sci Tot Environ,

1990;99:23-35.
393 Brake J, et al. Mercury induced cardiovascular abnormalities in the chicken. Arch Environ Contam Toxicol,

1977;6(2-3):269-77.
394 Trachtenberg IM. Chronic effects of mercury on organisms, U.S. Dept. Health, Education, Welfare, NIH,

DHEW Publ. 74-473, Washington, DC, 1974.
395 Cunha FN, et al. Effects of mercury on the contractile activity of the right ventricular myocardium. Arch

Environ Contam Toxicol, 2001 Oct;41(3):374-80.
396 Oliveira EM, et al. Mercury effects on the contractile activity of isolated heart muscle. Toxicol Appl

Pharmacol, 1994 Sep;128(1):86-91.
397 Oliveira EM, Vassallo DV. Effects of mercury on the contractility of isolated rat cardiac muscle. Braz J Med

Biol Res, 1992;25(10):1037-40.
398 Dahhan SS, Orfaly H. Electrocardiographic changes in mercury poisoning. Am J Cardiol, 1972;14:178-87.
399 Siblerud RL. The relationship between mercury from dental amalgam and the cardiovascular system. Sci Tot

Environ, 1990;99:23-35.
400 Wojcik DP, et al. Mercury toxicity presenting as chronic fatigue, memory impairment and depression:

diagnosis, treatment, susceptibility and outcomes in a New Zealand general practice setting (1994-2006).

Neuro Endocrinol Lett, 2006 Aug;27(4):415-23.
401 Sterzl I, et al. Mercury and nickel allergy: risk factors in fatigue and autoimmunity. Neuro Endocrinol Lett,

1999;20(3-4):221-8.
402 Patient Adverse Reaction Report, as reported in Defense Against Mercury Syndrome, editor Brake, M.

Printed by Chek Printing co., March 1994.
403 Aposhian HV. Mobilization of mercury and arsenic in humans by Sodium 2,3-Dimercapto-1-propane

sulfonate (DMPS). Environ Health Perspect, 1998;106(4):1017-25.
404 Karahalil B, et al. Examination of urinary mercury levels in dentists in Turkey. Hum Exp Toxicol, 2005

Aug;24(8):383-8.
405 Naleway C, et al. Urinary mercury levels in US dentists, 1975-1983: review of Health Assessment Program.

JADA, 1985;111:37-42.
406 Ritchie KA, et al. Mercury vapour levels in dental practices and body mercury levels of dentists and controls.

Br Dent J, 2004 Nov 27:197(10):625-32.
407 Farahat SA, et al. Effect of occupational exposure to elemental mercury in the amalgam on thymulin hormone

production among dental staff. Toxicol Ind Health, 2009;25(3):159-67.
408 Jones L, et al. A 30-year follow-up of residual effects on New Zealand School Dental Nurses, from

occupational mercury exposure. Human & Experimental Toxicology, 2007;26:367-74.
409 Nylander M, et al. Mercury accumulation in tissues from dental staff and controls in relation to exposure.

Swed Dent J, 1989;13:235-43.
410 Ritchie KA, et al. Mercury vapour levels in dental practices and body mercury levels of dentists and controls.

Br Dent J, 2004 Nov 27;197(10):625-32; discussion p621.
411 Farahat SA, et al. Effect of occupational exposure to elemental mercury in the amalgam on thymulin hormone

production among dental staff. Toxicol Ind Health, 2009;25(3):159-67.
412 Karahalil B, et al. Examination of urinary mercury levels in dentists in Turkey. Hum Exp Toxicol, 2005

Aug;24(8):383-8.
413 Chaari N, et al. Mercury impregnation in dentists and dental assistants in Monastir city, Tunisia.

Rev Stomatol Chir Maxillofac, 2009 Jun;110(3):139-44.
414 Patient Adverse Reaction Report, as reported in Defense Against Mercury Syndrome, editor Brake, M.

Printed by Chek Printing co., March 1994.
415 Patient Adverse Reaction Report, as reported in Defense Against Mercury Syndrome, editor Brake, M.

Printed by Chek Printing co., March 1994.
416 Ayensu WK, et al. Microarray analysis of mercury-induced changes in gene expression in human liver

carcinoma (HepG2) cells: importance in immune responses. Int J Environ Res Public Health, 2006

June;3(2):141-73.
417 Houston MC, et al. The role of mercury and cadmium heavy metals in vascular disease, hypertension,

coronary heart disease and myocardial infarction. Altern Ther Health Med, 2007 Mar-Apr;13(2):S128-33.
418 Di Pietro A, et al. Biomonitoring of DNA damage in peripheral blood lymphocytes of subjects with dental

restorative fillings. Mutat Res, 2008 Feb 29;650(2):115-22.
419 Schmid K, et al. Mercuric dichloride induces DNA damage in human salivary gland tissue cells and

lymphocytes. Arch Toxicol, 2007 Nov;81(11):759-67.
420 Shenker BJ, et al. Immunotoxic effects of mercuric compounds on human lymphocytes and monocytes. II.

Alterations in cell viability. Immunopharmacol Immunotoxicol, 1992;14(3):555-77.
421 Reichl FX, et al. Cytotoxicity of dental composite (co) monomers and the amalgam component Hg(2+) in

human gingival fibroblasts. Arch Toxicol, 2006 Aug;80(8):465-72.
422 Rothwell JA, Boyd PJ. Amalgam dental fillings and hearing loss. Int J Audiology, 2008;47:12,770–76.
423 Ellermann-Eriksen S, et al. Effect of mercuric chloride on macrophage- mediated resistance mechinisms

against infection with herpes simplex virus type 2. Toxicology, 194;93:269-297.
424 Omura Y, Beckman SL. Role of mercury (Hg) in resistant infections & effective treatment of Chlamydia

trachomatis and Herpes family viral infections (and potential treatment for cancer) by removing localized

mercury deposits with Chinese parsley and delivering effective antibiotics using various drug uptake

enhancement methods. Acupunct Electrother Res, 1995 Aug-Dec;20(3-4):195-229.
425 Trajanovska S, et al. Detection of heavy metal ion resistance genes in gram-positive and gram-negative

bacteria isolated from a lead-contaminated site. Biodegradation, 1997; 8(2):113-24.
426 Aguiar JM, et al. Heavy metals, chlorine and antibiotic resistance in Escherichia coli isolates from ambulatory

patients. J Chemother, 1990 Aug; 2(4):238-40.
427 Poiata A, et al. Mercury resistance among clinical isolates of Escherichia coli. Roum Arch Microbiol

Immunol, 2000 Jan-Jun;59(1-2):71-9.
428 Edlund C, et al. Resistance of the normal human microflora to mercury and antimicrobials after exposure to

mercury from dental amalgam fillings. Clin Infect Dis, 1996 Jun; 22(6):944-50.
429 Lorscheider FL, et al. The dental amalgam mercury controversy - inorganic mercury and the CNS; genetic

linkage of mercury and antibiotic resistances in intestinal bacteria. Toxicology, 1995 Mar 31; 97(1-3):19-22.
430 Summers AO, et al. Mercury released from dental "silver" fillings provokes an increase in mercury- and

antibiotic-resistant bacteria in oral and intestinal floras of primates. Antimicrob Agents Chemother, 1993

Apr;37(4):825-34.
431 Perlingeiro RC, Queiroz ML. Polymorphonuclear phagocytosis and killing in workers exposed to inorganic

mercury. Int J Immunopharmacol, 1994 Dec;16(12):1011-7.
432 Lyttle HA, Bowden GH. The resistance and adaptation of selected oral bacteria to mercury and its impact on

their growth. J Dent Res, 1993 Sep; 72(9):1325-30.
433 Hultman P, et al. Adverse immunological effects and autoimmunity induced by dental amalgam and alloy in

mice. FASEB J, 1994 Nov;8(14):1183-90.
434 Stejskal VD, et al. Metal-specific lymphocytes: biomarkers of sensitivity in man. Neuro Endocrinol Lett,

1999;20(5):289-98.
435 Bigazzi PE. Autoimmunity and heavy metals. Lupus, 1994 Dec;3(6):449-53.
436 Druet P, et al. Immune dysregulation and auto-immunity induced by toxic agents. Transplant Proc,

1982;14(3):482-4.
437 Druet P, et al. Immunologically mediated glomerulonephritis induced by heavy metals. Arch Toxicol,

1982;50:187-94.
438 Hirsch F, et al. Autoimmunity induced by HgCI2 in brown Norway rats: I. Production of monoclonal

antibodies. J Immunol, 1986;136(9):3272-6.
439 Hultman P, et al. Adverse immunological effects and autoimmunity induced by dental Amalgamand alloy in

mice. FASEB J, 1994:8(14):1183-90.
440 Hultman P, et al. Activation of the immune system and systemic immune-complex deposits in brown Norway

rats with dental amalgam restorations. J Dent Res, 1998;77:1415–25.
441 Siblerud RL, et al. Evidence that merury from silver dental fillings may be an etiological factor in multiple

sclerosis. Sci Total Environ, 1994 Mar 15;42(3):191-205.
442 Siblerud RL. A comparison of mental health of multiple sclerosis patients with silver/merury dental fillings and

those with fillings removed. Psychol Rep, 1992 Jun:70(3 Pt 2):1139-51.
443 Huggins HA, et al. Cerebrospinal fluid protein changes in multiple sclerosis after dental amalgam removal.

Altern Med Rev, 1998 Aug;3(4):295-300.
444 Nylander M, et al. Mercury concentrations in the human brain and kidneys and exposure from amalgam

fillings. Swed Dent J, 1987;11:179-87.
445 Schiraldi M, Monestier M. How can a chemical element elicit complex immunopathology? Lessons from

mercury-induced autoimmunity. Trends Immunol, 2009 Oct;30(10):502-9.
446 Bamonti F, et al. Cracked mercury dental amalgam as a possible cause of fever of unknown origin: a case

report. J Med Case Reports, 2008 Mar 6;2:72
447 Nielsen JB, et al. Experimental studies on genetically determined susceptibility to mercury-induced

autoimmune response. Ren Fail, 1999 May-Jul;21(3-4):343-8.
448 Prochazkova J, et al. The beneficial effect of amalgam replacement on health in patients with autoimmunity.

Neuro Endocrinol Lett, 2004 Jun;25(3):211-8.
449 Shenker BJ, et al. Immunotoxic effects of mercuric compounds on human lymphocytes and monocytes. I.

Suppression of T-cell activation. Immunopharmacol Immunotoxicol, 1992;14(3):539-53.
450 Shenker BJ, et al. Immunotoxic effects of mercuric compounds on human lymphocytes and monocytes. IV.

Alterations in cellular glutathione content. Immunopharmacol Immunotoxicol, 1993 Mar-June;15(2-3):273-90.
451 Lash LH, et al Interactive toxicity of inorganic mercury and trichloroethylene in rat and human proximal

tubules: effects on apoptosis, necrosis and glutathione status. Toxicol Appl Pharmacol, 2007 June

15;221(3):349-62.
452 Nielsen JB, Hultman P. Mercury-induced autoimmunity in mice. Environ Health Perspect, 2002

Oct;110(5):877-81.
453 Hultman P, et al. The effect of dose, gender and non-H-2 genes in murine mercury-induced autoimmunity.

Toxicology, 2001 Aug:17(1):27-37.
454 Havarinasab S, et al. Mercury species in lymphoid and non-lymphoid tissues after exposure to methyl

mercury: correlation with autoimmune parameters during and after treatment in susceptible mice. Toxicol Appl

Pharmacol, 2007 May 15;221(1):21-8.
455 Havarinasab S, et al. Mercury species in lymphoid and non-lymphoid tissues after exposure to methyl

mercury: correlation with autoimmune parameters during and after treatment in susceptible mice.

Toxicol Appl Pharmacol, 2007 May 15;221(1):21-8.
456 Havarinasab S, et al. Dose and mercury species determine the T-helper cell activation in murine

autoimmunity. Toxicology, 2007 Jan 5;229(1-2):23-32.
457 Hultman P, et al. The effect of dose, gender and non-H-2 genes in murine mercury -induced autoimmunity. J

Autoimmun, 2001 Aug:17(1):27-37.
458 Nielsen JB, et al. Experimental studies on genetically determined susceptibility to mercury-induced

autoimmune response. Ren Fail, 1999 May-Jul;21(3-4):343-8.
459 Havarinasab S, et al. Dose and mercury species determine the T-helper cell activation in murine

autoimmunity. Toxicology, 2007 Jan 5;229(1-2):23-32.
460 Stejskal V, et al. Diagnosis and treatment of metal-induced side-effects. Neuro Endocrinol Lett, 2006

Dec;27(1):7-16.
461 Stejskal VD, et al. Metal-specific lymphocytes: biomarkers of sensitivity in man. Neuro Endocrinol Lett,

1999;20(5):289-98.
462 Mackert JR, et al. Lymphocyte levels in subjects with and without amalgam restorations. JADA,

1991;122:49-53.
463 http://www.cfsn.com/metimune.html.
464 Hensten-Pettersen A, et al. Skin and mucosal reactions associated with dental materials. Eur J Oral Sci,

1998 April;106(2 Pt 2):707-12.
465 Eggleston DW. Effect of dental amalgam and nickel alloys on T-lymphocytes: preliminary report. J Prosthet

Dent, 1984;51:617-23.
466 Anneroth G, et al. Comprehensive medical examination of a group of patients with alleged adverse effects

from dental amalgams. Acta Odontol Scand, 1992 Apr;50(2):101-11.
467 Silbergeld EK, et al. Mercury and autoimmunity: implications for occupational and environmental health.

Toxicol Appl Pharmacol, 2005 Sep 1;207(2):282-92.
468 Prochazkova J, et al.The beneficial effect of amalgam replacement on health in patients with autoimmunity.

Neuro Endocrinol Lett, 2004 Jun;25(3):211-8.
469 Sutton DJ, et al. Mercury induces the externalization of phosphatidyl-serine in human renal proximal tubule

(HK-2) cells. Int J Environ Res Public Health, 2007 Jun;4(2):138-44.
470 Lund BO, et al. Studies on Hg(II)-induced H2O2 formation and oxidative stress in vivo and in vitro in rat

kidney mitochondria. Biochem Pharmacol, 1993 May 25;45(10):2017-24.
471 Eide R, et al. Mercury contents of indicators and target organs in rats after long-term, low-level, mercury

vapour exposure. Environ Res, 1993;61:212-22.
472 Dieckmann W, Butler WH. Proc Eur Soc Study Drug Toxicity, 1970:247-52.
473 Hahn LJ, et al. Dental "silver " tooth fillings: a source of mercury exposure revealed by whole body scan and

tissue analysis. FASEB J, 1989;3:2641-6.
474 Tandon SK, et al. Effect of kidney damage on the mobilisation of mercury by thiol-complexing agents. Br J

Ind Med, 1980 May;37(2):128–32.
475 Boyd ND, et al. Mercury from dental "silver" tooth fillings impairs sheep kidney function. Amer J Physiol,

1991;261(RICP 30):R1010-4.
476 Mortada WL, et al. Mercury in dental restoration: is there a risk of nephrotoxicity? J Nephrol, 2002 Mar-

Apr;15(2):171-6.
477 Ye X, et al. Nephrotoxicity, neurotoxicity and mercury exposure among children with and without dental

amalgam fillings. Int J Hyg Environ Health, 2009 Jul;212(4):378-86.
478 Eley BM, Cox SW. Influence of a standard laboratory diet containing nutritionally adequate levels of selenium

on renal pathology from mercury released by experimental amalgam tattoos. Biomaterials,

1988 Jul;9(4):339-44.
479 Ayensu WK, et al. Microarray analysis of mercury-induced changes in gene expression in human liver

carcinoma (HepG2) cells: importance in immune responses. Int J Environ Res Public Health, 2006

Jun;3(2):141-73.
480 Korashy HM, et al. The role of aryl hydrocarbon receptor and the reactive oxygen species in the modulation

of glutathione transferase by heavy metals in murine hepatoma cell lines. Chem Biol Interact, 2006 Sep

25;162(3):237-48.
481 Almar MM, et al. In vitro interaction of mercury, copper (II) and cadmium with human glutathione transferase

pi. Res Commun Chem Pathol Pharmacol, 1990 Jul;69(1):99-102.
482 Korashy HM, et al. Modulation of TCDD-mediated induction of cytochrome P450 1A1 by Hg, lead and copper

in human HepG2 cell line. Toxicol In Vitro, 2008 Feb;22(1):154-8.
483 Korashy HM, et al. The role of aryl hydrocarbon receptor and the reactive oxygen species in the modulation

of glutathione transferase by heavy metals in murine hepatoma cell lines. Chem Biol Interact, 2006 Sep

25;162(3):237-48.
484 Korashy HM, et al. The role of aryl hydrocarbon receptor and the reactive oxygen species in the modulation

of glutathione transferase by heavy metals in murine hepatoma cell lines. Chem Biol Interact, 2006 Sep

25;162(3):237-48.
485 Korashy HM, et al. Differential effects of merury, lead and copper on the constitutive and inducible

expression of aryl hydrocarbon receptor (AHR)-regulated genes in cultured hepatoma Hepa 1c1c7 cells.

Toxicology, 2004 Sep 1;201(1-3):153-72.
486 Sutton DJ, et al. Merury-induced externalization of phosphatidylserine and caspase 3 activation in human

liver carcinoma (HepG2) cells. Int J Environ Res Public Health, 2006 Mar;3(1):38-42.
487 Hultberg B, et al. Lipoic acid increases glutathione production and enhances the effect of merury in human

cell lines. Toxicology, 2002 Jun 14;175(1-3):103-10.
488 Hultberg B, et al. Alterations of thiol metabolism in human cell lines induced by low amounts of copper,

merury or cadmium ions. Toxicology, 1998 Apr 3:126(3):203-12.
489 Siblerud RL, et al. Evidence that merury from silver dental fillings may be an etiological factor in multiple

sclerosis. Sci Total Environ, 1994 Mar 15;42(3):191-205.
490 Siblerud RL. A comparison of mental health of multiple sclerosis patients with silver/merury dental fillings and

those with fillings removed. Psychol Rep. 1992 Jun:70(3 Pt 2):1139-51.
491 Huggins HA, et al. Cerebrospinal fluid protein changes in multiple sclerosis after dental amalgam removal.

Altern Med Rev, 1998 Aug;3(4):295-300.
492 Zamm AV. Removal of dental mercury: often an effective treatment for the very sensitive patient. Orthomolec

Med, 1990;5:138-42.
493 www.fda.org.
494 Rooney JP. The role of thiols, dithiols, nutritional factors and interacting ligands in the toxicology of mercury.

Toxicology, 2007 May 20;234(3):145-56.
495 Berlin M, et al. Uptake and retention of mercury in mouse brain. Arch Environ Health, 1966;13:33-42.
496 Hershey CO, et al. Cerebrospinal fluid trace element content in dementia: clinical, radiologic and pathologic

correlations. Neurology, 1983;33:1350–3.
497 Haacke EM, et al. Imaging iron stores in the brain using magnetic resonance imaging. Magn Reson Imaging,

2005;23:1–25.
498 Hershey CO, et al. Cerebrospinal fluid trace element content in dementia: clinical, radiologic and pathologic

correlations. Neurology, 1983;33:1350–3.
499 Basun H, et al. Metals and trace elements in plasma and cerebrospinal fluid in normal aging and Alzheimer’s

disease. J Neural Transm Park Dis Dement Sect, 1991;3:231–58.
500 Thompson SA, et al. Induction of glutamate-cysteine ligase (gamma-glutamylcysteine synthetase) in the

brains of adult female mice subchronically exposed to methyl mercury. Toxicol Lett, 1999;110:1–9.
 

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