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The combined effects of high-energy shock waves and cytostatic drugs or cytokines on human bladder cancer cells.

机译:高能冲击波和抑制细胞生长的药物或细胞因子对人膀胱癌细胞的综合作用。

摘要

The effects of shock waves generated by an experimental Siemens lithotripter in combination with cytostatic drugs or cytokines on several bladder cancer cell lines were examined in vitro. Proliferation after treatment was determined with the 3-4,5-dimethylthiazol-2,5 diphenyl tetrazolium bromide assay. Dose enhancement ratios were calculated for each drug and each shock wave application mode in order to characterise the sensitising effect of shock wave pretreatment. The influence of the time between shock wave and drug treatment as well as the effects of different sequences of shock wave and drug treatment or concomitant treatment were assessed for selected combinations of cell lines and drugs. It was found that shock wave treatment could render certain cell lines more susceptible to subsequent cis-platinum, mitomycin C or actinomycin D incubation. Cell lines sensitive to tumour necrosis factor alpha or interferon alpha were further sensitised to these cytokines by shock wave pretreatment. The enhanced sensitivity to cis-platinum and actinomycin D decreased rapidly during the first hours after shock wave treatment. The antiproliferative effect was most pronounced after concomitant shock wave and drug treatment. The sensitisation to interferon alpha diminishes more slowly after shock wave exposure. From the results presented in this study it is concluded that transient shock wave-induced permeabilisation of cell membrane not only enhances drug efficiency, but also causes damage to cell organelles and alterations in cellular metabolism.
机译:在体外检查了实验性西门子碎石机与细胞抑制药物或细胞因子联合产生的冲击波对几种膀胱癌细胞系的影响。用3-4,5-二甲基噻唑-2,5-二苯基溴化四氮唑测定法测定处理后的增殖。计算每种药物和每种冲击波施加方式的剂量增强比,以表征冲击波预处理​​的敏化效果。对于细胞系和药物的选定组合,评估了冲击波和药物处理之间的时间的影响以及冲击波和药物处理或伴随治疗的不同顺序的影响。发现冲击波处理可使某些细胞系对随后的顺铂,丝裂霉素C或放线菌素D温育更敏感。通过冲击波预处理​​使对肿瘤坏死因子α或干扰素α敏感的细胞系对这些细胞因子进一步敏感。冲击波治疗后的最初几个小时内,对顺铂和放线菌素D的敏感性增强迅速下降。伴随冲击波和药物治疗后,抗增殖作用最为明显。暴露于冲击波后,对干扰素α的敏感性降低得更慢。从该研究中提出的结果可以得出结论,瞬态冲击波诱导的细胞膜通透性不仅提高了药物效率,而且还引起了细胞器的损伤和细胞代谢的改变。

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