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首页> 外文期刊>Drug resistance updates: reviews and commentaries in antimicrobial and anticancer chemotherapy >Modifications of DNA by platinum complexes. Relation to resistance of tumors to platinum antitumor drugs.
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Modifications of DNA by platinum complexes. Relation to resistance of tumors to platinum antitumor drugs.

机译:铂络合物对DNA的修饰。与肿瘤对铂类抗肿瘤药物耐药性的关系。

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摘要

The importance of platinum drugs in cancer chemotherapy is underscored by the clinical success of cisplatin [cis-diamminedichloroplatinum(II)] and its analogues and by clinical trials of other, less toxic platinum complexes that are active against resistant tumors. The antitumor effect of platinum complexes is believed to result from their ability to form various types of adducts with DNA. Nevertheless, drug resistance can occur by several ways: increased drug efflux, drug inactivation, alterations in drug target, processing of drug-induced damage, and evasion of apoptosis. This review focuses on mechanisms of resistance and sensitivity of tumors to conventional cisplatin associated with DNA modifications. We also discuss molecular mechanisms underlying resistance and sensitivity of tumors to the new platinum compounds synthesized with the goal to overcome resistance of tumors to established platinum drugs. Importantly, a number of new platinum compounds were designed to test the hypothesis that there is a correlation between the extent of resistance of tumors to these agents and their ability to induce a certain kind of damage or conformational change in DNA. Hence, information on DNA-binding modes, as well as recognition and repair of DNA damage is discussed, since this information may be exploited for improved structure-activity relationships.
机译:顺铂[cis-diamminedichloroplatinum(II)]及其类似物的临床成功以及其他对毒性具有抗药性的毒性较低的铂络合物的临床试验强调了铂药物在癌症化疗中的重要性。据信铂络合物的抗肿瘤作用是由于它们与DNA形成各种类型的加合物的能力所致。然而,耐药性可以通过几种方式发生:药物外排增加,药物失活,药物靶点改变,药物引起的损伤的处理以及细胞凋亡的逃避。这篇综述集中在肿瘤对与DNA修饰相关的常规顺铂的耐药性和敏感性机制。我们还讨论了潜在的抗肿瘤分子机制和对新合成的铂类化合物的敏感性,以克服肿瘤对已建立的铂类药物的抗性。重要的是,设计了许多新的铂化合物来检验以下假设:肿瘤对这些药物的耐药程度与其诱导DNA某种损伤或构象变化的能力之间存在相关性。因此,讨论了有关DNA结合模式的信息以及DNA损伤的识别和修复,因为可以利用该信息来改善结构-活性关系。

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