Comparative effects of chlordecone and mirex on rat cardiac ATPases and binding of 3H-catecholamines.

D Desaiah
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Abstract

The effects of chlordecone and mirex on the rat myocardial ATPases and binding of 3H-dopamine and 3H-norepinephrine to the NAK-fraction were determined both by in vitro and in vivo treatment. The in vitro data showed that chlordecone significantly inhibited mitochondrial Mg2+ ATPase and Na+--K+ ATPase in a concentration dependent manner with ID50 values of 5 x 10(-8) and 2 x 10(-6) M, respectively. Mitrex, a close structural analog of chlordecone did not inhibit mitochondrial Mg2+ ATPase but inhibited about 15% of N+--K+ ATPase activity. Rats treated with symptomatogenic doses of chlordecone showed a marked and significant decrease of myocardial Na+--K+ ATPase and the residual Mg2+ ATPase activities. The decrease in the enzyme activities was dose dependent and significant. However, mirex treated rats showed a slight decrease in the myocardial Na+--K+ ATPase. The potency of chlordecone to inhibit the ATPase system was parallel to its ability to decrease the dopamine and norepinephrine binding of the myocardial NAK-fraction. Preincubation of the NAK-fraction with various concentrations of chlordecone resulted in a decreased binding of dopamine and norepinephrine. The decrease was significant and concentration dependent. Similar findings were observed in rats pretreated with chlordecone. Mirex did not show any effect, either in vitro or in vivo treatment, on the binding of dopamine or norepinephrine to the myocardial NAK-fraction. These results suggest that chlordecone may be altering the sodium pump activity by inhibiting both ATP hydrolysis and ATP synthesis and thus reducing other cellular events such as catecholamine uptake.

十氯酮和鼠雷对大鼠心脏atp酶和3h -儿茶酚胺结合的影响。
采用体外和体内两种处理方法,观察十氯酮和咪雷克斯对大鼠心肌atp酶的影响,以及3h -多巴胺和3h -去甲肾上腺素与nak组分结合的影响。体外实验结果显示,十氯酮对线粒体Mg2+ atp酶和Na+—K+ atp酶的抑制作用呈浓度依赖性,其ID50值分别为5 × 10(-8)和2 × 10(-6) M。十氯酮的结构类似物Mitrex不抑制线粒体Mg2+ atp酶,但抑制约15%的N+—K+ atp酶活性。十氯酮给药后大鼠心肌Na+—K+ atp酶和Mg2+ atp酶活性显著降低。酶活性的降低是剂量依赖性的,而且是显著的。然而,mirex处理的大鼠心肌Na+—K+ atp酶略有下降。十氯酮抑制atp酶系统的效力与其降低心肌na -部分多巴胺和去甲肾上腺素结合的能力是平行的。与不同浓度的十氯酮预孵育nak片段导致多巴胺和去甲肾上腺素的结合减少。这种下降是显著的,并且是浓度依赖性的。在十氯酮预处理的大鼠中也观察到类似的结果。在体外或体内治疗中,Mirex对多巴胺或去甲肾上腺素与心肌nak -分数的结合没有任何影响。这些结果表明,十氯酮可能通过抑制ATP水解和ATP合成来改变钠泵活性,从而减少其他细胞事件,如儿茶酚胺摄取。
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