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DNA damage and repair in human lymphocytes exposed to three anticancer platinum drugs.

机译:暴露于三种抗癌铂药物的人淋巴细胞的DNA损伤和修复。

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摘要

Cisplatin is a widely used anticancer drug, but its application is limited due to severe side effects. To reduce these effects, many other platinum drugs have been synthesized. In the present work comparative analysis of the toxicity of cisplatin, oxoplatin, and a conjugate (NH(3))(2)Pt(SeO(3)) (Se-Pt) in terms of cell viability, DNA binding, and DNA damage and repair in human lymphocytes was performed using the Trypan blue exclusion test, atomic absorption spectroscopy, and the comet assay, respectively. Cisplatin and oxoplatin did not cause a significant change in the viability of the lymphocytes even at the highest used concentration (750 microM), but the conjugate dramatically diminished viability at 100 microM only about 60% of the lymphocytes were viable (P < 0.05), and at 750 microM, less than 20% (P < 0.001). Se-Pt bound to isolated DNA was about 100 times weaker than the remaining two compounds; the binding of cisplatin was about 30% stronger than oxoplatin. Cisplatin and oxoplatin formed crosslinks with DNA in lymphocytes, whereas the conjugate induced DNA strand breaks. The lesions evoked by cisplatin and oxoplatin were slowly removed, but damage induced by Se-Pt was not repaired after 5 h even at a drug concentration of 10 microM. Severe cytotoxic and genotoxic effects exerted by Se-Pt in normal human lymphocytes preclude its intravenous application in cancer therapy. Teratogenesis Carcinog. Mutagen. 20:119-131, 2000. Copyright 2000 Wiley-Liss, Inc.
机译:顺铂是一种广泛使用的抗癌药,但由于严重的副作用,其应用受到限制。为了降低这些作用,已经合成了许多其他铂类药物。在本工作中,从细胞活力,DNA结合和DNA损伤方面对顺铂,氧铂和缀合物(NH(3))(2)Pt(SeO(3))(Se-Pt)的毒性进行比较分析。分别使用台盼蓝排除试验,原子吸收光谱法和彗星测定法进行人淋巴细胞的修复。即使在最高使用浓度(750 microM)下,顺铂和氧铂也不会引起淋巴细胞活力的显着变化,但是结合物在100 microM时却显着降低了活力,只有大约60%的淋巴细胞是可行的(P <0.05),而在750 microM时,小于20%(P <0.001)。与分离的DNA结合的Se-Pt比其余两种化合物弱约100倍。顺铂的结合强度比氧铂高约30%。顺铂和氧铂与淋巴细胞中的DNA形成交联,而结合物诱导的DNA链断裂。顺铂和氧铂引起的病变被缓慢清除,但是即使在10 microM的药物浓度下,Se-Pt诱导的损伤也无法在5 h后得到修复。 Se-Pt对正常人淋巴细胞产生的严重细胞毒性和遗传毒性作用,使其无法静脉内应用在癌症治疗中。致癌作用。诱变剂。 20:119-131,2000。版权所有2000 Wiley-Liss,Inc.。

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