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葡萄糖给药后大鼠肝脏微粒体介导的苯并[a]芘及苯并[a]芘-7,8-二氢二醇的诱变、代谢及DNA结合抑制作用。

Inhibition of liver microsome-mediated mutagenesis, metabolism and DNA-binding of benzo[a]pyrene and benzo[a]pyrene 7,8-dihydrodiol in the rat following glucose administration.

作者信息

Vance R E, Teel R W, Strother A

机构信息

Department of Physiology and Pharmacology, Loma Linda University, School of Medicine, CA 92350.

出版信息

Cancer Lett. 1990 Apr 20;50(2):149-56. doi: 10.1016/0304-3835(90)90245-s.

Abstract

Aroclor 1254-induced rat liver microsomes prepared from control and glucose-treated rats (30% glucose in drinking water 48 h prior to sacrifice) were used in studies of benzo[a]pyrene (BaP) and BaP 7,8-dihydrodiol (BaP 7,8-DHD)-induced mutagenesis in Salmonella typhimurium TA100. Microsome-dependent metabolism and metabolite binding of BaP and BaP 7,8-DHD to calf thymus DNA was also investigated. BaP-induced mutagenesis in TA100 was inhibited 27% and BaP 7,8-DHD-induced mutagenesis was inhibited 55% by microsomes from glucose-treated rats. [3H]BaP and [3H]BaP 7,8-DHD metabolite binding to DNA was inhibited 17% and 20%, respectively. High performance liquid chromatographic (hplc) analysis of enzyme-hydrolyzed DNA yielded 7R and 7S-diol epoxide-1 deoxyguanosine (BPDE-1:dG) adducts and BPDE-2:dG adducts of [3H]BaP and [3H]BaP 7,8-DHD. These adducts were inhibited 38% and 50%, respectively, by microsomes from glucose-treated rats. Hplc analysis of organosoluble metabolites of [3H]BaP and [3H]BaP 7,8-DHD showed an inhibition of metabolism of 28% and 50%, respectively, by microsomes from glucose-treated rats. The inhibition of metabolism correlated with the effect of glucose treatment on inhibition of BaP and BaP 7,8-DHD-induced mutagenesis and adduct formation. These results suggest that the mechanism by which glucose produces its effects on mutagenesis, DNA-binding and adduct formation is by an inhibition of microsome-mediated metabolism of BaP and BaP 7,8-DHD.

摘要

从对照大鼠和葡萄糖处理的大鼠(处死前48小时在饮用水中添加30%葡萄糖)制备的Aroclor 1254诱导的大鼠肝微粒体,用于研究苯并[a]芘(BaP)和苯并[a]芘7,8-二氢二醇(BaP 7,8-DHD)在鼠伤寒沙门氏菌TA100中诱导的诱变作用。还研究了BaP和BaP 7,8-DHD对小牛胸腺DNA的微粒体依赖性代谢及代谢产物结合情况。葡萄糖处理的大鼠的微粒体使BaP在TA100中诱导的诱变作用抑制了27%,使BaP 7,8-DHD诱导的诱变作用抑制了55%。[3H]BaP和[3H]BaP 7,8-DHD代谢产物与DNA的结合分别被抑制了17%和20%。对酶水解DNA的高效液相色谱(hplc)分析产生了[3H]BaP和[3H]BaP 7,8-DHD的7R和7S-二醇环氧化物-1脱氧鸟苷(BPDE-1:dG)加合物以及BPDE-2:dG加合物。葡萄糖处理的大鼠的微粒体分别使这些加合物的生成抑制了38%和50%。对[3H]BaP和[3H]BaP 7,8-DHD的有机可溶性代谢产物的hplc分析表明,葡萄糖处理的大鼠的微粒体分别使代谢抑制了28%和50%。代谢抑制与葡萄糖处理对BaP和BaP 7,8-DHD诱导的诱变作用及加合物形成的抑制作用相关。这些结果表明,葡萄糖对诱变作用、DNA结合和加合物形成产生影响的机制是通过抑制微粒体介导的BaP和BaP 7,8-DHD的代谢。

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