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吲哚 - 3 - 甲醇衍生物对细胞色素P - 450依赖性活性的器官选择性诱导:对大鼠肝脏和肺脏DNA中苯并[a]芘共价结合的影响

Organ-selective induction of cytochrome P-450-dependent activities by indole-3-carbinol-derived products: influence on covalent binding of benzo[a]pyrene to hepatic and pulmonary DNA in the rat.

作者信息

Park J Y, Bjeldanes L F

机构信息

Department of Nutritional Sciences, University of California, Berkeley 94720.

出版信息

Chem Biol Interact. 1992 Aug 28;83(3):235-47. doi: 10.1016/0009-2797(92)90100-y.

Abstract

Indole-3-carbinol (I3C) is a dietary modulator of carcinogenesis that can reduce the level of carcinogen binding to DNA. I3C-derived products are potent inducers of certain cytochrome P-450(CYP)-dependent enzyme activities. To investigate whether the protective effects of I3C against carcinogen damage to DNA are associated with increased activities of CYP1A1 enzymes, we examined the relationship of I3C-mediated organ-specific CYP enzyme induction with total levels of benzo[a]pyrene (BP) binding to hepatic and pulmonary DNA of rats. Oral intubation (PO) of I3C (500 mumol/kg body wt.) in 10% DMSO in corn oil produced after 20 h, increases in ethoxyresorufin O-deethylase (EROD) activities (associated with CYP1A1 isozyme) of 700-fold, 245-fold and 36-fold in small intestine, lungs and liver, respectively, compared with activities in untreated controls. Hepatic aryl hydrocarbon hydroxylase (AHH) activity was increased 4-fold under these conditions. Pentoxyresorufin O-depentylase (PROD) activity (associated with CYP2B isoenzyme) was increased 6-fold in the liver but was unaffected in lung and small intestine. Intraperitoneal injection (IP) of I3C (500 mumol/kg body wt.) produced no significant change in EROD or PROD activities in lung, liver, or small intestine. PO administration of the acid reaction mixture (RXM) of I3C increased hepatic AHH activity (5-fold) and EROD activities in small intestine (650-fold), lung (100-fold) and liver (18-fold). IP administration of RXM (equivalent to 500 mumol I3C/kg body wt.) significantly increased only EROD activity in lung and liver, but did not affect EROD activity in small intestine, AHH activity in liver, or PROD activity in any of the organs examined. Twenty hours after inducer treatment, half of the rats were treated PO with 0.2 mumol [3H]BP in corn oil. Analysis of tissues 5 h after BP administration indicated that compared with untreated controls, administration of I3C and RXM by either route reduced by 30-50% the level of BP binding to hepatic DNA, an effect that was not correlated to CYP1A1 enzyme induction in any of the organs examined. However, PO administration of I3C and RXM produced a 50-70% decrease in carcinogen binding to pulmonary DNA, while IP administration of inducers had no effect on DNA binding in this organ. These results with the lung are consistent with an increased presystemic clearance of BP in the intestine and are discussed in terms of the role of induction of intestinal CYP1A1 activity in the decreased lymphatic and venous transport of unmetabolized BP to the lung.

摘要

吲哚 - 3 - 甲醇(I3C)是一种癌症发生过程中的膳食调节剂,它能够降低致癌物与DNA结合的水平。I3C衍生产品是某些细胞色素P - 450(CYP)依赖性酶活性的强效诱导剂。为了研究I3C对致癌物所致DNA损伤的保护作用是否与CYP1A1酶活性增加有关,我们检测了I3C介导的器官特异性CYP酶诱导与大鼠肝脏和肺中苯并[a]芘(BP)与DNA结合的总水平之间的关系。以10%二甲基亚砜(DMSO)的玉米油溶液经口插管(PO)给予I3C(500 μmol/kg体重),20小时后,与未处理对照组相比,小肠、肺和肝脏中乙氧异吩唑酮 - O - 脱乙基酶(EROD)活性(与CYP1A1同工酶相关)分别增加了700倍、245倍和36倍。在这些条件下,肝脏芳烃羟化酶(AHH)活性增加了4倍。戊氧异吩唑酮 - O - 脱戊基酶(PROD)活性(与CYP2B同工酶相关)在肝脏中增加了6倍,但在肺和小肠中未受影响。腹腔注射(IP)I3C(500 μmol/kg体重)对肺、肝脏或小肠中的EROD或PROD活性没有显著影响。经口给予I3C的酸反应混合物(RXM)可使肝脏AHH活性增加5倍,小肠、肺和肝脏中的EROD活性分别增加650倍、100倍和18倍。腹腔注射RXM(相当于500 μmol I3C/kg体重)仅显著增加了肺和肝脏中的EROD活性,但不影响小肠中的EROD活性、肝脏中的AHH活性或所检测任何器官中的PROD活性。诱导剂处理20小时后,一半的大鼠经口给予0.2 μmol溶于玉米油的[³H]BP。给予BP 5小时后对组织进行分析表明,与未处理对照组相比,通过任何一种途径给予I3C和RXM均可使BP与肝脏DNA结合的水平降低30 - 50%,这一效应与所检测任何器官中CYP1A1酶的诱导均无关。然而,经口给予I3C和RXM可使致癌物与肺DNA的结合减少50 - 70%,而腹腔注射诱导剂对该器官中的DNA结合没有影响。肺的这些结果与BP在肠道中首过清除增加一致,并根据肠道CYP1A1活性诱导在未代谢BP向肺的淋巴和静脉转运减少中的作用进行了讨论。

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