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四氯化碳对豚鼠肾上腺皮质结构和功能的影响。

Effects of carbon tetrachloride on adrenocortical structure and function in guinea pigs.

作者信息

Brogan W C, Eacho P I, Hinton D E, Colby H D

出版信息

Toxicol Appl Pharmacol. 1984 Aug;75(1):118-27. doi: 10.1016/0041-008x(84)90082-6.

DOI:10.1016/0041-008x(84)90082-6
PMID:6464017
Abstract

Studies were carried out to evaluate the effects of carbon tetrachloride (CCl4) on adrenocortical structure and function in guinea pigs. Treatment with CCl4 reduced adrenal microsomal cytochrome P-450 concentrations and markedly decreased adrenal benzo(a)pyrene (BP) hydroxylase and benzphetamine (BZ) demethylase activities. Adrenal microsomal 17 alpha- and 21-hydroxylase activities were relatively unaffected by CCl4. Similar changes in adrenal metabolism resulted from incubation of microsomal suspension with CCl4 plus NADPH in vitro. Morphologically, CCl4 treatment resulted in necrotic changes in the inner portions of the adrenal cortex. The zona reticularis and inner fasciculata contained numerous cells with pyknotic nuclei, fragmented nuclei, and vacuolated cytoplasm. Cells in the outer fasciculata and zona glomerulosa of the adrenals appeared normal. In adrenals obtained from normal guinea pigs, xenobiotic metabolism was highly localized to the inner portion of the cortex, the site of CCl4-induced necrosis. The CCl4-induced type I spectral change, a tentative measure of binding to cytochrome(s) P-450, was also greater in microsomes from the inner than from the outer zones. In addition, the initiation of lipid peroxidation by CCl4 plus NADPH, as well as the formation of covalently bound metabolites from 14CCl4, was far greater with inner than outer zone microsomes. The results indicate that the effects of CCl4 on the adrenal cortex are localized to the inner zone which probably represents the site of activation of the toxin. In addition, adrenal xenobiotic-metabolizing monooxygenases seem to be more vulnerable to the toxic effects of CCl4 than the microsomal steroid hydroxylases.

摘要

开展了多项研究以评估四氯化碳(CCl4)对豚鼠肾上腺皮质结构和功能的影响。用CCl4处理可降低肾上腺微粒体细胞色素P - 450浓度,并显著降低肾上腺苯并(a)芘(BP)羟化酶和苄非他明(BZ)脱甲基酶活性。肾上腺微粒体17α-和21-羟化酶活性相对不受CCl4影响。体外将微粒体悬浮液与CCl4加NADPH孵育也导致肾上腺代谢出现类似变化。形态学上,CCl4处理导致肾上腺皮质内部出现坏死变化。网状带和束状带内层含有大量细胞核固缩、核碎裂及细胞质空泡化的细胞。肾上腺束状带外层和球状带的细胞外观正常。在正常豚鼠的肾上腺中,外源性物质代谢高度局限于皮质内部,即CCl4诱导坏死的部位。CCl4诱导的I型光谱变化(一种与细胞色素P - 450结合的初步测量方法)在内层微粒体中也比外层微粒体中更大。此外,CCl4加NADPH引发的脂质过氧化以及14CCl4共价结合代谢物的形成,在内层微粒体中比外层微粒体中要多得多。结果表明,CCl4对肾上腺皮质的影响局限于内层区域,该区域可能是毒素激活的部位。此外,肾上腺外源性物质代谢单加氧酶似乎比微粒体类固醇羟化酶更容易受到CCl4的毒性作用影响。

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