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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Antitumor carboplatin is more toxic in tumor cells when photoactivated: Enhanced DNA binding
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Antitumor carboplatin is more toxic in tumor cells when photoactivated: Enhanced DNA binding

机译:光活化后,抗肿瘤卡铂在肿瘤细胞中更具毒性:增强的DNA结合

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Carboplatin, an analogue of "classical" cis- diamminedichloridoplatinum(II) (cisplatin), is a widely used second-generation platinum anticancer drug. Cytotoxicity of cisplatin and carboplatin is mediated by platinum-DNA adducts. Markedly higher concentrations of carboplatin are required, and the rate of adduct formation is considerably slower. The reduced toxic effects in tumor cells and a more acceptable side-effect profile are attributable to the lower reactivity of carboplatin with nucleophiles, since the cyclobutanedicarboxylate ligand is a poorer leaving group than the chlorides in cisplatin. Recently, platinum complexes were shown to be particularly attractive as potential photochemotherapeutic anticancer agents. Selective photoactivation of platinum complexes by irradiation of cancer cells may avoid enhancement of toxic side-effects, but may increase toxicity selectively in cancer cells and extend the application of photoactivatable platinum complexes to resistant cells and to a wider range of cancer types. Therefore, it was of interest to examine whether carboplatin can be affected by irradiation with light to the extent that its DNA binding and cytotoxic properties are altered. We have found that carboplatin is converted to species capable of enhanced DNA binding by UVA irradiation and consequently its toxicity in cancer cells is markedly enhanced. Recent advances in laser and fiber-optic technologies make it possible to irradiate also internal organs with light of highly defined intensity and wavelength. Thus, carboplatin is a candidate for use in photoactivated cancer chemotherapy. Graphical abstract: [Figure not available: see fulltext.]
机译:卡铂是“经典”顺式二氨基二氯铂(II)(顺铂)的类似物,是一种广泛使用的第二代铂类抗癌药。顺铂和卡铂的细胞毒性由铂-DNA加合物介导。需要显着更高浓度的卡铂,并且加合物形成的速度相当慢。由于环丁烷二羧酸酯配体的离去基团比顺铂中的氯化物差,因此肿瘤细胞中毒性作用的降低和更可接受的副作用归因于卡铂与亲核试剂的较低反应性。最近,显示出铂络合物作为潜在的光化学治疗抗癌剂特别有吸引力。通过癌细胞的辐射对铂络合物的选择性光活化可以避免毒性副作用的增强,但是可以选择性地增加癌细胞的毒性,并将可光活化的铂络合物的应用扩展到耐药细胞和更广泛的癌症类型。因此,感兴趣的是检查卡铂是否可以被光照射影响到其DNA结合和细胞毒性性质改变的程度。我们已经发现卡铂通过UVA辐射被转化为能够增强DNA结合的物种,因此其在癌细胞中的毒性得到了显着增强。激光和光纤技术的最新进展使得也可以用高度确定的强度和波长的光照射内部器官。因此,卡铂是用于光活化癌症化学疗法的候选者。图形摘要:[该图不可用:请参见全文。]

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