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Comparison of phenanthriplatin, a novel monofunctional platinum based anticancer drug candidate, with cisplatin, a classic bifunctional anticancer drug

机译:phenanthriplatin(一种新型单功能铂类抗癌药物候选药物)与顺铂(一种典型的双功能抗癌药物)的比较

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摘要

Nucleotide excision repair, a DNA repair mechanism, is the major repair pathway responsible for removal of platinum-based anticancer drugs. In this study, 146 bp duplexes were prepared containing either a site-specific cisdiammineplatinum( Il)-DNA intrastrand d(GpG) cross-link or a cisdiamminephenanthridinechloroplatinum( Il)-DNA dG adduct. Comparison of the repair efficiencies of the two adducts reveals that the diamminephenanthridinechloroplatinum(lI)-DNA dG lesion eludes the nucleotide excision repair pathway better than diammineplatinum(lI)-DNA intrastrand d(GpG) cross-link. A factor that may be relevant to the difference is the influence of platination on DNA-mediated charge transfer. Atomic force microscopy is a method by which we can explore the possibility that phenanthriplatin influences charge transfer properties of DNA. Long DNA duplexes site-specifically modified with cisplatin or phenthanriplatin were prepared for AFM studies.
机译:核苷酸切除修复是一种DNA修复机制,是负责去除铂类抗癌药物的主要修复途径。在这项研究中,制备了146 bp的双链体,其中包含位点特异性顺式二氨铂(II)-DNA内链d(GpG)交联或顺式二氨菲氯氯铂(II)-DNA dG加合物。两种加合物的修复效率的比较显示,二胺菲啶氯铂(lI)-DNA dG损伤比二氨铂(lI)-DNA内链d(GpG)交联更好地掩盖了核苷酸切除修复途径。可能与差异有关的一个因素是镀铂对DNA介导的电荷转移的影响。原子力显微镜是一种可以探究菲铂影响DNA电荷转移特性的方法。制备了用顺铂或苯乙铂进行位点特异性修饰的长DNA双链体用于AFM研究。

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