A comparison of in vitro platinum-DNA adduct formation between carboplatin and cisplatin

Atsushi Hongo , Shuji Seki , Kosuke Akiyama , Takafumi Kudo
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引用次数: 53

Abstract

  • 1.

    1. DNA damage induced by carboplatin [cis-diammine-(1,1-cyclobutanedi-carboxylato)platinum(II)] was studied in vitro in comparison with cisplatin [cis-diammine-dichloroplatinum(II)]. The drug-induced DNA damage monitored by conformational change of pUC18 plasmid DNA showed that carboplatin required 10 times higher drug concentration and 7.5 times longer incubation time than those of cisplatin to induce the same degree of conformational change on plasmid DNA.

  • 2.

    2. The carboplatin-induced DNA damage was promoted by the increase of pH of the reaction mixture for platinum-DNA adduct formation.

  • 3.

    3. Sequence gel analysis of carboplatin-damaged DNA indicated that carboplatin attacked preferentially the sequence of GG > AG > GA > GNG in the order, similarly to the case of cisplatin.

  • 4.

    4. DNA adducts formed by carboplatin were analyzed by HPLC after a sequential digestion of carboplatin-treated DNA with deoxyribonuclease I and S1 nuclease. A single peak having the same retention time as that of bifunctional adduct of (dGMP)2Pt(NH3)2 appeared by treating DNA with carboplatin. The adduct was assigned to be d(pGpG) > Pt(NH3)2.

  • 5.

    5. These results suggested that carboplatin induces the same platinum-DNA adducts as those induced by cisplatin, and that the difference in efficiency or kinetics of DNA damage between carboplatin and cisplatin is due to difference of aquation rate between them.

卡铂与顺铂体外铂- dna加合物形成的比较
1.1. 体外研究了卡铂[顺-二胺-(1,1-环丁二-羧酸)铂(II)]对DNA的损伤作用,并与顺铂[顺-二胺-二氯铂(II)]进行了比较。通过对pUC18质粒DNA的构象变化监测药物性DNA损伤,结果表明,卡铂比顺铂需要高10倍的药物浓度和7.5倍的培养时间才能在质粒DNA上引起相同程度的构象变化。2.2。增加铂-DNA加合物反应混合物的pH可促进卡铂诱导的DNA损伤。卡铂损伤DNA序列凝胶分析表明,卡铂优先攻击GG和gt序列;AG)在遗传算法在GNG按顺序排列,与顺铂的情况类似。用脱氧核糖核酸酶I和S1核酸酶依次消化卡铂处理过的DNA后,用HPLC分析卡铂形成的DNA加合物。卡铂处理DNA后,出现与(dGMP)2Pt(NH3)2双功能加合物保留时间相同的单峰。加合物编号为d(pGpG) >2.5.5 Pt (NH3)。这些结果表明,卡铂诱导的铂-DNA加合物与顺铂诱导的铂-DNA加合物相同,卡铂与顺铂在DNA损伤效率或动力学上的差异是由于它们之间的水化速率不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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