1Dieter MP,et al.Immunological and biochemical responses in mice treated with mercury chloride. Toxicology and Applied Pharmacology . 1983
2Weening JJ,et al.Immunoregulation and anti-nuclear antibodies in mercury-induced glomerulopathy in the rat. Clinical and Experimental Immunology . 1981
3Glen A,et al.Mercury-induced autoimmunity in the MAXX rat. Clinical Immunology and Immunopathology . 1988
4Koller LD.Effects of environmental contaimnants on the immune system. Advances in Veterinary Science and Comparative Medicine . 1979
5Robinson CLG,et al.Induction of anti-nuclear antibodies by mercuric chloride in mice. Clinical and Experimental Immunology . 1984
6Gaworski CL & Sharma RP.The effects of heavy metals on (~3H) thymidine uptake in lymphocyte. Toxicology and Applied Pharmacology . 1978
7Hirsch F,et al.2</sub> in the rat, its possible role in an experimental autoimmune disease&sid=European Journal of Immunology&aufirst=Hirsch F');
 ">Pobolonl effecs of HgCl<sub>2</sub> in the rat, its possible role in an experimental autoimmune disease. European Journal of Immunology . 1982
8Koller LD,et al.Effects of lead cadmium and methylmercury on immunological memory. J Eur Pathol Toxicol . 1980
9Matthew A. Bridger,J. Paul Thaxton. Humoral immunity in the chicken as affected by mercury[J] 1983,Archives of Environmental Contamination and Toxicology(1):45~49
1Kuo TC, Lin-Shiau SY. Early acute necrosis and delayed apoptosis induced by methyl mercury inmurine peritoneal neutrophils. Basic Clin Pharmacol Toxicol, 2004,94:274-281
2Bulat P, Dujic L, Potkonjak B. Activity of glutathlone peroxidase and surperoxide dismutase in workers occupationally exposed to mercury. Int Arch Occup Environ Health, 1998,71(Suppl) :37-39
3Zabinski, Dabrowski, Moszczynski P. The activity of erythrocyte enzymes and basic indices of peripheral blood erythrocytes from workers chronically exposed to mercury vapours. Toxicol Ind Health, 2000,16:58-64
4Nava M, Romero F, Quiroz Y, et al. Melatonin attenuates acute renal failure and oxidative stress induced by mercuric chloride in rats. Am J Physiol Renal Physiol,2000, 279:F910-F918
5Whitekus M,J,Santini RP, Rosenspire AJ, et al, Protection against CD95-Mediated apoptosis by inorganic mercury in jurkat T Cells1, J of Immunol, 1999,162:7162-7170
6Yoshizawa K, Sc D, Rimm EB, et al. Mercury and the risk of coronary heart disease in men. N Engl J Med, 2002,12(347) : 1755-1760
7Yokoo ME, Valente JG, Lynn Grattan, et al. Low level methylmercury exposure affects neropsychologial function in adults. Environment Health:A Global Acess Science Source 2003,2:8
8Sorensen FW, Larsen RJO, Eide R, et al. Neuron loss in cerebellar cortex of rats exposed to mercury vapor: a stereological study. Acta Neuropathol, 2000(100) :95-100
9Zalups RK. Molecular interactions with mercury in the kidney. Am Soc Pharmacol Exp Therap, 2001(52) 1 : 113-143
10Stephanie D, Pingree P, Kevin T, et al. Quantitative evaluation of urinary porphyrins as a measure of kidney mercury content and mercury body burden during prolonged methylmercury exposure in rats. Toxicol Sci, 2001(61) :234-240