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The Journal of Qazvin Univ. of Med. Sci. Vol. 9, No. 4, Winter 2006 ( ) ** * Effect of mercury intoxication on thyroid function and blood cholesterol M.Taher Y.Nory Abstract Background: Mercury is a heavy metal and transition element in periodic table that has many uses in industries, agriculture and medicine. This element can enter the body through different routs including food materials, ventilation and skin. Objective: To investigate the short and long term effect of mercury on thyroid hormone in the sera from rats. Methods: Mercuric chloride in doses of 3 mg/kg (short term or 10-day injection) and 1 mg/kg (long term or 45- and 60-day injection) was injected intraperitoneally into three test groups of rats (n=5). Following each period of injections, the blood samples were collected for T 3, T 4, TSH and T 3 uptake measurements. Blood cholesterol level was measured simultaneously for monitoring cholesterol changes. Findings: After the 10-day injection, values for T 3, T 4 and TSH in test group were decreased 29, 18 and 30 percent, respectively, compared to control group (P<0.04). T 3 uptake was increased 23 percent (P<0.04). The 45-day injection caused a decrease in the levels of T3, T 4, and TSH as 30, 16 and 40 percent, respectively. T 3 uptake and blood cholesterol levels were increased 25 and 8 percent respectively. Following the 60-day injection, the levels of T 3, T 4, and TSH in test group were decreased 51, 28 and 44 percent, respectively. T 3 uptake and blood cholesterol levels were increased 22 and 11percent respectively (P<0.05). Conclusion: Based on data obtained from current study, it seems that mercury chloride can lead to hypothyroidism and causes an increase in blood cholesterol level. Direct toxic effect of mercury on liver leads to low protein synthesis and may contribute to increase the serum concentration of T 3 uptake. Higher level of cholesterol may be attributable to resulting hypothyroidism, which in turn lowers T 4 and T 3 concentrations. Keywords: Mercury Poisoning, Cholesterol, Endocrine Galands, Thyroxin. :.. : : T 3 uptake TSH T 4 T 3. / TSH T 4 T 3 :. / T 3 uptake T 3 uptake TSH / T 4 T 3. :. TSH T 4 T 3. T 3 uptake : Email: Taher@pharm.mui.ac.ir ** * : Page (5)

/... ().. (RS) 2 Hg RS-Hg-X. R X. R-Hg-SR (). (). Na + /K + /ATPase.... :. : (). (). ().. ().. ().. SH ().. HDL

( ). : TSH T 4 T 3 / T 3 uptake.(p</) T 3 TSH T 4 T 3 uptake ) (p</).( ( ) / ± /. HgCl2 ()...( ). TSH T 3 uptake T 4 T 3. - T 3 uptake () ± / TSH ( IU) / ± / T 4 ( ) ± / T 3 ( ) / ± / / ± / ± / / ± ± / / ± / /% % % % % ± / ± / / ± / ± / / ± / / ± / / ± / / ± / / ± / / ± / % % % % % / ± / / ± / / ± / /± /±/ % % % % % p</ ** p</ *

/... TBG Na/K/ATPase T 3 uptake TBG. T 4 T 3. : 1. Otte M. Relation between heavy metal concentration in salt marsh plant and soil. Environ Pollut 1993; 82(1): 13-22 2. Weast RC. Hand book of chemistry and physics. 70 th ed, Florida, CRC press, 1987, 123 3. Keln GD, Noji EK. Manual of toxicologic emergencies. Chicago, Year Book Medical Pub, 1989, 678-82 4. Kodati VR. Effect of amalgam restorations on whole body potassium and bone mineral content in older men. Gen Dent 1996; 44: 246-8 5. Patil H. Cadmium and Mercury accumulation in rat hepatocytes. Toxicol Appl Pharmacol 1992; 113(1): 118-25 6. Sichak S, Harsh J, Clarkson T. Kinetics of elemental Mercury ordination by a suspension of washed erythrocytes. Toxicologist Abstr 1987; 154 7. Homer BL, Sundlof M. Mercury distribution in American alligators (alligator mississipiensis) in Florida. J Wild Med 1997; 28: 62-70 8. Strubelt O, Hunter TC. Comparative studies on the toxicity of Mercury, Cadmium, and Cupper toward the isolated perfused rat liver. J Toxicol Envion Health 1996; 47(3): 267-83 9. Klassen C D. Heavy metals and their antagonists. in: Goodman Gilman A, (ed). The pharmacological basis of theraputics. 7 th : ) ( ) TSH T 4 T 3 ( T 3 uptake. Na + /K + ATPase (). - T 4 T 3 T 3. uptake TBG ().. TBG T 3 uptake T 4 TBG. T 3. LDL (LDL) ().. - (). TSH

( ) 13. Taylor S A, Chiver I D. The assessment of biomarkers to detect nephrotoxicity using itegrated database. J Environ Res 1997; 75(1): 23-33 14. Morris M S, Bostom G A, Jacques P, Sellhab J, Rosenberg HS. Hyperhomocysteinemia and hypercholesterolemia associated with hypothyroidism in the third US, national health and nutrition examination survey. J Atheroscler 2001; 155: 195-200 15. Ganotakis E, Mandolakis K, Tampakakis M, Malll N. Thyroid function and lipid abnormalities in older Cretan women. J Atheroscler 2000; 151(1): 224 ed, New York, Mcmillian Pub Co, 1985, 1611-4 10. Paul CJ. Methyl Mercury: acute toxicity, tissue distribution and decay profiles in the guineapig. Toxicol Appl Pharmacol 1973; 24: 545-54 11. Kaward J, Jeferson B, Banner A. Effect of organic and inorganic Mercurials on thyroid function. J Pharmaco Bio Mar 1980; 3(3): 140-59 12. Ghosh N, Batta Charyas. Thyrotoxicity of the chlorides of Cadmium and Mercury in rabbits. J Biomed Environ Sciences 1992; 5(3): 240-63