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首页> 外文期刊>British Journal of Cancer >The binding of cis-dichlorodiammineplatinum(II) to extracellular and intracellular compounds in relation to drug uptake and cytotoxicity in vitro
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The binding of cis-dichlorodiammineplatinum(II) to extracellular and intracellular compounds in relation to drug uptake and cytotoxicity in vitro

机译:顺式二氯二氨合铂(II)与细胞外和细胞内化合物的结合与体外药物吸收和细胞毒性的关系

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The biological consequence of the binding of cis-dichlorodiammineplatinum(II) (cis-DDP) to serum protein as well as to cellular components in general, was studied on human NHIK 3025 cells in vitro. As expected, we found that the cytotoxicity of cis-DDP was lost by binding to serum protein, and that protein-bound platinum was impermeable to the cells. As we have previously shown that electropermeabilisation may transiently increase the influx of cis-DDP, we applied this technique in an attempt to increase the efflux of cis-DDP or any other cytotoxic intermediates. Our data demonstrate that if cells are electropermeabilised shortly after treatment with cis-DDP, cell survival increased. This indicates that cis-DDP in an active form is released from the cells; furthermore, the plasma membrane represents a barrier against efflux, as it has also been shown to be against influx of active cis-DDP. Thus, our data are consistent with the idea that there must be an intracellular pool of either cis-DDP, or some biologically active intermediates, in cells treated with this drug. Additionally, our data indicate that the binding rate of cis-DDP to biological molecules is much quicker intracellularly than in the extracellular environment: We found the biological half-life at 37 degrees C to be about 2.1 h in human serum and about 11 min inside our cells.
机译:一般在人NHIK 3025细胞上研究了顺式-二氯二氨合铂(II)(cis-DDP)与血清蛋白以及细胞成分结合的生物学结果。如所期望的,我们发现顺式-DDP通过与血清蛋白结合而丧失了细胞毒性,并且与蛋白结合的铂对细胞是不可渗透的。正如我们先前所显示的,电透性可能会暂时增加顺式DDP的流入,因此我们尝试使用这种技术来增加顺式DDP或任何其他细胞毒性中间体的流出。我们的数据表明,如果在用顺式DDP处理后不久将细胞进行电透化,细胞存活率就会提高。这表明活性形式的顺式-DDP从细胞中释放出来。此外,质膜代表了针对外流的屏障,因为它也显示出对活性顺式-DDP的涌入。因此,我们的数据与这样的想法是一致的:在用该药物治疗的细胞中,必须有一个细胞内的顺式DDP或一些具有生物活性的中间体。此外,我们的数据表明,顺式-DDP与生物分子的结合速率在细胞内比在细胞外环境中要快得多:我们发现,在37摄氏度下,人血清中的生物半衰期约为2.1小时,而在体内则约为11分钟我们的细胞。

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