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Hyperthermic Enhancement of Cytotoxicity and Increased Uptake of cis‐Diamminedichloroplatinum(II) in Cultured Human Esophageal Cancer Cells

机译:高温增强培养的人食管癌细胞的细胞毒性并增加顺式-二氨基二氯铂(II)的吸收

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摘要

Thermal enhancement of cytotoxicity of cis‐diamminedichloroplatinum(II) (CDDP) has been well recognized and applied clinically to chemotherapy of various malignancies, but its fundamental mechanism remains to be elucidated. In order to obtain a clue to this mechanism, we analyzed the effect of hyperthermia on the uptake and subsequent distribution of [195mPt]CDDP in two lines of esophageal cancer cells (KYSE‐150 and KYSE‐170) established from clinical patients. First, we observed a significant increase in [195mPt]CDDP uptake by both types of cells at increasingly higher temperatures. The incorporated CDDP was distributed between the nucleus and the cytosol at a ratio of approximately 3:1, and the ratio remained the same at various temperatures. The CDDP was found in all four molecular fractions, i.e., DNA, RNA, protein, and TCA‐soluble, with a slight preference for DNA at higher temperatures. Enhancement of cytotoxicity required simultaneous, and not sequential, treatments with CDDP and hyperthermia; hyperthermia after CDDP treatment increased the efflux of CDDP from the cells, and rather reduced the cytotoxicity of CDDP. These results suggest that thermal enhancement of the cytotoxicity of CDDP is caused mainly by acceleration of the drug entry into the cell, probably due to increased permeability, and a consequent increase in the amount of CDDP binding to DNA. This mechanism gives support for clinical trial of simultaneous treatment with CDDP and hyperthermia.
机译:顺二氨二氯铂(II)(CDDP)的细胞毒性的热增强作用已得到公认,并已在临床上应用于各种恶性肿瘤的化学治疗,但其基本机制尚待阐明。为了获得这种机制的线索,我们分析了热疗对[ 195m Pt] CDDP的摄取及其在两系食管癌细胞(KYSE-150和KYSE-170)中的分布的影响。 )由临床患者建立。首先,我们观察到两种类型的细胞在越来越高的温度下对[ 195m Pt] CDDP的摄取均显着增加。掺入的CDDP以大约3:1的比例分布在细胞核和胞质溶胶之间,并且该比例在各种温度下均保持不变。 CDDP存在于所有四个分子部分中,即DNA,RNA,蛋白质和可溶于TCA的部分,在较高温度下略微偏爱DNA。增强细胞毒性需要同时而不是顺序地用CDDP和热疗治疗; CDDP处理后的体温过高会增加CDDP从细胞中的流出,而降低CDDP的细胞毒性。这些结果表明,CDDP的细胞毒性的热增强主要是由于药物进入细胞的加速引起的,这可能是由于通透性增加,以及CDDP与DNA结合的数量随之增加所致。该机制为同时进行CDDP和热疗的临床试验提供了支持。

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