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Cell‐killing Efficiency and Number of Platinum Atoms Binding to DNA RNA and Protein Molecules of HeLa Cells Treated with Combinations of trans‐Diammedichloroplatinum(II) and Hyperthermia

机译:反式-二氨合铂(II)和热疗联合处理对HeLa细胞DNARNA和蛋白质分子的杀伤效率和铂原子数

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摘要

The effect of hyperthermia on the cell‐killing efficiency of Pt atoms binding to DNA, RNA and protein molecules was examined. HeLa S‐3 cells were treated with 195mPt‐radiolabeled trans‐diaminedichloro‐platinum(II) (TDDP) for 60 min at various temperatures, and the relationship between the lethal effect and the number of Pt atoms binding to DNA, RNA and proteins was examined. The mean lethal concentration (D0) of TDDP for a 60‐min treatment at 0, 25, 37, 40, 42 and 44°C was 1714,1016, 302, 179,125 and 42.5 μM, respectively. (D0 is defined as the dose that would give an average of one lethal event per member of the population; for further details, see Fig. 1). By using identically treated cells, the numbers of Pt‐atoms combined with DNA, RNA and protein molecules were determined in the subcellular fractions. Thus, the D0's given as the drug concentrations were replaced with the number of Pt‐atoms combined in each fraction. Then, the cell‐killing efficiency of the Pt atom was expressed as the reciprocal of the number of Pt‐atoms combined and was calculated for each molecule. The efficiency for DNA was 0.206, 0.273, 0.779,1.28,1.77 and 5.14×103 nucleotides, respectively, for the conditions described above. It seemed that hyperthermia potentially interacted not only with bifunctional, but also with monofunctional bonds. Thus, it was concluded that TDDP was markedly less cytotoxic than cis‐diaminedichloroplatinum (CDDP) at 37°C, but was more cytotoxic than CDDP at 44°C.
机译:检查了高温对结合到DNA,RNA和蛋白质分子上的Pt原子的杀细胞效率的影响。 HeLa S-3细胞在不同温度下用 195m Pt放射性标记的反式二胺二氯铂(II)(TDDP)处理60分钟,并观察其致死作用与Pt原子数之间的关系。检查与DNA,RNA和蛋白质的结合。在0、25、37、40、42和44°C下60分钟处理的TDDP的平均致死浓度(D0)分别为1714、1016、302、179、125和42.5μM。 (D0定义为每位人口平均产生一次致命事件的剂量;更多详细信息,请参见图1)。通过使用相同处理的细胞,可以确定亚细胞级分中结合DNA,RNA和蛋白质分子的Pt原子数。因此,将药物浓度给出的D0替换为每个馏分中结合的Pt原子数。然后,Pt原子的杀细胞效率表示为结合的Pt原子数的倒数,并针对每个分子进行计算。在上述条件下,DNA的效率分别为0.206、0.273、0.779、1.28、1.77和5.14×10 3 个核苷酸。似乎热疗不仅可能与双功能键相互作用,而且还可能与单功能键相互作用。因此,可以得出结论,在37°C时,TDDP的细胞毒性显着低于顺式二胺二氯铂(CDDP),但在44°C时,其TDDP的细胞毒性却比CDDP高。

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