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首页> 外文期刊>British Journal of Cancer >Characteristics of cancer cell death after exposure to cytotoxic drugs in vitro
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Characteristics of cancer cell death after exposure to cytotoxic drugs in vitro

机译:体外暴露于细胞毒性药物后癌细胞死亡的特征

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摘要

The characteristics of cell death were investigated after exposure of CCRF-CEM.f2 cells to five drugs over a broad concentration range; these were the glucocorticoid dexamethasone (DXM), the mitotic inhibitor vincristine (VIN) and three antimetabolites, methotrexate (MTX), 5'-fluoro-2'-deoxyuridine (FUdR) and 5'-fluorouracil (5-FU). Drug-treated cells were monitored for cell death mechanisms at different times by examining the pattern of DNA degradation, cell morphology and flow cytometric profile, together with effects on cell growth over 72 h. At growth-inhibitory drug concentrations, the first changes were cell cycle perturbations detectable after 4-6 h of drug exposure. The appearance of features characteristic of apoptotic cell death was noted after all drug treatments in the CCRF-CEM.f2 cell line, but the pattern and kinetics varied considerably. VIN induced apoptotic changes by 12 h, while DXM treatment caused apoptosis only after 48 h. Both MTX and FUdR induced morphological changes characteristic of apoptosis at least 24 h before internucleosomal DNA cleavage, which was detectable only after 48 h. In contrast, 5-FU did not cause internucleosomal DNA cleavage by 48 h at any concentration, despite the presence of morphologically apoptotic cells 24 h earlier. These data suggest that disruption of the cell cycle caused by drug treatment may be the common trigger initiating the drug-specific apoptotic sequence of dying cells.
机译:将CCRF-CEM.f2细胞暴露于五种浓度范围较广的药物后,研究了细胞死亡的特征。它们是糖皮质激素地塞米松(DXM),有丝分裂抑制剂长春新碱(VIN)和三种抗代谢物,甲氨蝶呤(MTX),5'-氟-2'-脱氧尿苷(FUdR)和5'-氟尿嘧啶(5-FU)。通过检查DNA降解的模式,细胞形态和流式细胞仪分析以及对72小时内细胞生长的影响,对药物处理过的细胞在不同时间的细胞死亡机制进行了监测。在抑制生长的药物浓度下,第一个变化是在暴露4-6小时后可检测到细胞周期扰动。在CCRF-CEM.f2细胞系中进行所有药物处理后,均注意到凋亡细胞死亡的特征性特征的出现,但其模式和动力学变化很大。 VIN在12 h时引起凋亡变化,而DXM处理仅在48 h后才引起凋亡。 MTX和FUdR都在核糖体间DNA切割之前至少24 h诱导了凋亡的形态学改变特征,只有在48 h后才可以检测到。相反,尽管在24小时之前存在形态学上的凋亡细胞,但在任何浓度下48小时内5-FU都不会引起核糖体间DNA切割。这些数据表明,由药物治疗引起的细胞周期破坏可能是引发垂死细胞的药物特异性凋亡序列的常见触发因素。

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