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硫酸镍对大鼠心肝肾ATPase毒性的实验研究 被引量:17

Experimental study on the toxic effect of nickel sulfate at ATPase of heart, liver and kidney in rats
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摘要 Objective To inquire into the mechanism of toxic effect of nickel sulfate (NiSO 4) on heart, liver and kidney.Methods Several groups of rats were exposed to NiSO 4 at dose of 2.5,5 0, 10.0 mg/kg through intraperitoneal infection for 10 days, the cell membrane of myocardium, liver and renal tubules were prepared to assess the activity of Na +·K + ATPase, Ca 2+ ATPase with spectrophotometric assay. Results The result showed that NiSO 4 was able to inhibit obviously the activity of Na +·K + ATPase, Ca 2+ ATPase of the three kinds of cell membrane, and its inhibitiue effect was shown to be the strongest in kidney and the weakest in liver.Conclusion The damage on rat’s heart, liver and kidney by NiSO 4 could be related to the inhibitive activity of cell membrane ATPase. However, the mechanism of toxic effect of nickel sulfate on heart, liver and kidney should be studied further. Objective To inquire into the mechanism of toxic effect of nickel sulfate (NiSO 4) on heart, liver and kidney.Methods Several groups of rats were exposed to NiSO 4 at dose of 2.5,5 0, 10.0 mg/kg through intraperitoneal infection for 10 days, the cell membrane of myocardium, liver and renal tubules were prepared to assess the activity of Na +·K + ATPase, Ca 2+ ATPase with spectrophotometric assay. Results The result showed that NiSO 4 was able to inhibit obviously the activity of Na +·K + ATPase, Ca 2+ ATPase of the three kinds of cell membrane, and its inhibitiue effect was shown to be the strongest in kidney and the weakest in liver.Conclusion The damage on rat's heart, liver and kidney by NiSO 4 could be related to the inhibitive activity of cell membrane ATPase. However, the mechanism of toxic effect of nickel sulfate on heart, liver and kidney should be studied further.
出处 《中国职业医学》 CAS 北大核心 2001年第3期27-28,共2页 China Occupational Medicine
关键词 硫酸镍 Na^+.K^+-ATPase CA^2+-ATPASE 大鼠 心脏 肝脏 肾脏 毒性 nickel sulfate, Na +·K + ATPase, Ca 2+ ATPase
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