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三环类抗抑郁药引起的 DNA 损伤的体外研究:过氧化物酶在药物副作用中的作用。

In vitro studies of DNA damage caused by tricyclic antidepressants: a role of peroxidase in the side effects of the drugs.

机构信息

Science Department, John Jay College of Criminlal Justice, 445 W. 59th Avenue, New York, New York 10019, USA.

出版信息

Chem Res Toxicol. 2010 Sep 20;23(9):1497-503. doi: 10.1021/tx100221b.

Abstract

Studies show that tricyclic antidepressants prescribed for migraines, anxiety, and child enuresis have numerous adverse effects in living cells. One of the undesired outcomes observed under treatment with these drugs is DNA damage. However, the mechanisms underlying damage have yet to be elucidated. We performed in vitro studies of the DNA damage caused by four tricyclic antidepressants: imipramine, amitriptyline, opipramol, and protriptyline. We focused particularly on the DNA damage aided by peroxidases. As a model of a peroxidase, we used horseradish peroxidase (HRP). At pH 7, reactions of HRP with excess hydrogen peroxide and imipramine yielded an intense purple color and a broad absorption spectrum with the maximum intensity at 522 nm. Reactions performed between DNA and imipramine in the presence of H(2)O(2) and HRP resulted in the disappearance of the DNA band. In the case of the other three drugs, this effect was not observed. Extraction of the DNA from the reaction mixture indicated that DNA is degraded in the reaction between imipramine and H(2)O(2) catalyzed by HRP. The final product of imipramine oxidation was identified as iminodibenzyl. We hypothesize that the damage to DNA was caused by an imipramine reactive intermediate.

摘要

研究表明,三环类抗抑郁药被用于治疗偏头痛、焦虑症和儿童遗尿症,但在活细胞中会产生许多不良反应。在使用这些药物治疗过程中观察到的一种不良后果是 DNA 损伤。然而,损伤的机制尚未阐明。我们进行了四项三环类抗抑郁药(丙咪嗪、阿米替林、奥普瑞莫和普罗替林)引起的体外 DNA 损伤研究。我们特别关注过氧化物酶辅助下的 DNA 损伤。作为过氧化物酶的模型,我们使用辣根过氧化物酶(HRP)。在 pH 值为 7 时,HRP 与过量过氧化氢和丙咪嗪的反应产生强烈的紫色,并且在 522nm 处具有最大强度的宽吸收光谱。在 H2O2 和 HRP 存在下,在 DNA 与丙咪嗪之间进行的反应导致 DNA 带消失。对于其他三种药物,未观察到这种效果。从反应混合物中提取 DNA 表明,在 HRP 催化的 H2O2 和丙咪嗪之间的反应中,DNA 被降解。丙咪嗪氧化的最终产物被鉴定为亚氨基二苯。我们假设 DNA 的损伤是由丙咪嗪的反应性中间产物引起的。

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