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FTIR Biospectroscopy Investigation on Cisplatin Cytotoxicity in Three Pairs of Sensitive and Resistant Cell Line

机译:FTIR生物光谱学研究三对敏感和耐药细胞系中顺铂的细胞毒性

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摘要

Fourier Transformed Infrared Spectroscopy (FTIR) has extensively been used for biological applications. Cisplatin is one the most useful antineoplastic chemotherapy drugs for a variety of different human cancers. One of the clinical problems in its application, which would consequently affect the therapeutic outcome of its application, is the occurrence of resistance to this agent. In this project three different pairs of sensitive and resistant cell lines of human ovarian A2780 and its resistant pair of A2780-CP, human ovarian OV2008 and its resistant pair of C13, and finally human lung carcinoma of HTB56 and its resistant pair of HTB56-CP were grown in the laboratory under the standard procedure. Saline was exposed to control cells, whereas 1, 5 and 10 µg/mL of cisplatin was exposed to experimental cells, for 1 h. Cells were then collected and lyophilized from which spectra were taken. According to our results, we could not trigger a well-recognized cells biomolecular band at 1015 cm-1, being modified after exposure to cisplatin in all cell lines. On the other hand, there was a clear dose-dependent increase in protein β-sheet structure related peaks shift in resistant cell lines after exposure to cisplatin. This would probably indicate an easier protein interaction site for cisplatin in the resistant cell lines, which would probably inhibit cisplatin from binding to DNA, as the cytotoxic target. As a conclusion, FTIR biospectroscopy has proven its potency to identify the interactions, as well as the false engagement cellular sites for cisplatin in sensitive and resistant cell lines.
机译:傅立叶变换红外光谱(FTIR)已广泛用于生物学应用。顺铂是针对多种不同人类癌症的最有用的抗肿瘤化疗药物之一。在其应用中的临床问题之一,其结果将影响其应用的治疗结果,是对该药物产生抗药性。在这个项目中,人类卵巢A2780及其抗性A2780-CP对,人类卵巢OV2008及其抗性C13对,以及人类HTB56及其抗性对HTB对三对不同的敏感和抗性细胞系按照标准程序在实验室中生长。将盐水暴露于对照细胞,而将1、5和10 µg / mL的顺铂暴露于实验细胞1 h。然后收集细胞并冻干以获取光谱。根据我们的结果,我们无法在1015 cm -1 上触发公认的细胞生物分子条带,因为在所有细胞系中暴露于顺铂后都会对其进行修饰。另一方面,暴露于顺铂后,耐药细胞系中与蛋白质β-折叠结构相关的峰移动明显呈剂量依赖性增加。这可能表明耐药细胞系中顺铂的蛋白质相互作用位点更容易,这可能会抑制顺铂作为细胞毒性靶标与DNA结合。结论是,FTIR生物光谱法已经证明了其在敏感和耐药细胞系中识别相互作用以及顺铂错误参与的细胞位点的潜力。

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