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首页> 外文期刊>Medicinal chemistry >Synthesis and Activity of [{Cis-PtCl(NH3)2}2μ{Trans-Pt(3-Hydroxypyridine)2(H2N(CH2)6NH2)2}]Cl4 in the Human Ovarian Tumour Models.
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Synthesis and Activity of [{Cis-PtCl(NH3)2}2μ{Trans-Pt(3-Hydroxypyridine)2(H2N(CH2)6NH2)2}]Cl4 in the Human Ovarian Tumour Models.

机译:[{Cis-PtCl(NH3)2}2μ{反式-Pt(3-羟基吡啶)2(H2N(CH2)6NH2)2}] Cl4在人卵巢肿瘤模型中的合成和活性。

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摘要

A novel trinuclear platinum compound with a cis-geometry for terminal metal centres coded as QH1 has been synthesized, characterized and investigated for activity against the human ovarian A2780, A2780cisR and A2780ZD0473R cancer cell lines. The cellular accumulation of platinum, level of platinum-DNA binding and the nature of interaction of the compound with pBR322 plasmid DNA have also been determined. QH1 is found to be more active against the resistant cell lines than the parent cell line, thus indicating that the compound has been able to overcome mechanisms of resistance operating in the A2780cisR and A2780ZD0473R cell lines. The high activity of QH1 is associated with high platinum accumulation and high level of platinum-DNA binding in all the three ovarian cancer cell lines. Provided QH1 has the right toxicity profile and its in vitro activity is matched with sufficient activity in vivo, the compound has the potential for development as a novel platinum-based anticancer drug targeted to the ovarian cancer.
机译:合成了一种新型的具有顺式几何构型的三核铂化合物,其末端金属中心编码为QH1,并对其抗人卵巢A2780,A2780cisR和A2780ZD0473R癌细胞系的活性进行了表征和研究。还确定了铂的细胞积累,铂与DNA的结合水平以及该化合物与pBR322质粒DNA相互作用的性质。发现QH1对抗性细胞系的活性高于亲本细胞系,因此表明该化合物已能够克服在A2780cisR和A2780ZD0473R细胞系中起作用的抗性机制。 QH1的高活性与所有三种卵巢癌细胞系中的高铂积累和高水平的铂-DNA结合有关。只要QH1具有正确的毒性特征,并且其体外活性与体内足够的活性相匹配,该化合物就有可能作为靶向卵巢癌的新型铂基抗癌药开发。

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