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金属组学研究 RAPTA-C 和顺铂在细胞培养液中的代谢及其对细胞积累的影响。

Metallomic study on the metabolism of RAPTA-C and cisplatin in cell culture medium and its impact on cell accumulation.

机构信息

School of Chemical Sciences, University of Auckland, Private Bag 92019, Auckland 1142, New Zealand.

出版信息

Metallomics. 2018 Mar 1;10(3):455-462. doi: 10.1039/c8mt00024g. Epub 2018 Feb 27.

Abstract

Metal-based anticancer agent development can be improved with advanced metallomics methods that allow for quick and efficient screening of metallodrugs for their metabolites in biological media. Cellular accumulation in in vitro settings is not always correlated with cytotoxicity; and protein binding, particularly with albumin and transferrin, can have an important influence on metallodrug transportation, selectivity, and efficacy. We contrast the time-dependent cellular accumulation of both cisplatin and the pre-clinically investigated RAPTA-C in terms of cell uptake and speciation in culture medium via CE-ICP-MS analysis. Despite RAPTA-C being administered at 40-fold higher dose than cisplatin, owing to its much higher IC value, the accumulation over time was only 10-fold higher. An optimised CE-ICP-MS method, through the coating of the capillary to prevent protein-capillary surface interactions, resulted in superior resolution and metal-protein adduct identification. It was then used for extracellular speciation in conjunction with [tris(acetylacetonato)cobalt(iii)] as an internal standard. RAPTA-C was found to be more inert to extracellular reactions than cisplatin which could be used to rationalise the observed cellular uptake patterns. While for cisplatin both transferrin and albumin were identified as the main binding partners, RAPTA-C was found to react nearly exclusively with albumin. Moreover, this behaviour was time-dependent and our results also demonstrate that cancer cells have an influence on metal species distribution in the cell culture medium over time.

摘要

金属类抗癌药物的研发可以通过先进的金属组学方法得到改善,这些方法可以快速有效地筛选金属药物在生物介质中的代谢物。细胞在体外的积累并不总是与细胞毒性相关;而蛋白质结合,特别是与白蛋白和转铁蛋白的结合,对金属药物的运输、选择性和疗效有重要影响。我们对比了顺铂和临床前研究的 RAPTA-C 在细胞摄取和培养基中形态方面的时间依赖性细胞积累,采用 CE-ICP-MS 分析。尽管 RAPTA-C 的给药剂量是顺铂的 40 倍,由于其更高的 IC 值,其随时间的积累仅增加了 10 倍。通过对毛细管进行涂层以防止蛋白质-毛细管表面相互作用,优化了 CE-ICP-MS 方法,从而实现了更好的分辨率和金属-蛋白质加合物的鉴定。然后,将其与 [三(乙酰丙酮基)钴(III)] 一起用于细胞外形态分析,作为内标。与顺铂相比,RAPTA-C 对细胞外反应的惰性更强,这可以用来解释观察到的细胞摄取模式。虽然顺铂的主要结合蛋白是转铁蛋白和白蛋白,但 RAPTA-C 几乎只与白蛋白反应。此外,这种行为是时间依赖性的,我们的结果还表明,癌细胞会随着时间的推移而影响细胞培养介质中金属物种的分布。

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