首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >P-glycoprotein depresses cisplatin sensitivity in L1210 cells by inhibiting cisplatin-induced caspase-3 activation
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P-glycoprotein depresses cisplatin sensitivity in L1210 cells by inhibiting cisplatin-induced caspase-3 activation

机译:P-糖蛋白通过抑制顺铂诱导的caspase-3激活来降低L1210细胞中的顺铂敏感性

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摘要

Multidrug resistance (MDR) is a phenomenon in which cells become resistant to cytostatic drugs and other substances with diverse chemical structures and cytotoxicity mechanisms. The most often observed molecular mechanism for MDR includes high levels of P-glycoprotein (P-gp) - an ABCB1 member of the ABC drug transporter family. Overexpression of P-gp in neoplastic tissue is an obstacle to chemotherapeutic treatment. Herein, we were focused on differences in apoptosis induced by cisplatin (no substrate for P-gp) between P-gp-positive and P-gp-negative L1210 cells. P-gp-positive cells were obtained by either L1210 cell adaptation to vincristine (R) or L1210 cell transfection with the human gene for P-gp (T) and compared with parental L1210 cells (S). R and T cells were more resistant to CisPt than S cells. R and T cell resistance to CisPt-induced apoptosis could not be reversed by verapamil (a well-known P-gp inhibitor), which excludes P-gp transport activity as a cause of CisPt resistance. CisPt induced a more pronounced entry into apoptosis in S than R and T cells, which was measured using the annexin-V/propidium iodide apoptosis kit. CisPt induced more pronounced caspase-3 activation in S than R and T cells. CisPt did not induce changes in the P-gp protein level for R and T cells. While similar levels of Bax and Bcl-2 proteins were observed in P-gp-negative and P-gp-positive cells, CisPt induced a more significant decrease in Bcl-2 levels for S cells than P-gp-positive cells. Expression of p53 and its molecular chaperone Hsp90 were more pronounced in R and T than S cells. Moreover, CisPt enhanced the upregulation of p53 and Hsp90 in R and T cells to a higher degree than S cells. Apoptosis was shown to be the prevalent mode of cell death in S, R and T cells by the typical DNA fragmentation and cell ultrastructure changes.All of the above findings indicate that P-gp, independent of its drug efflux activity, induced changes in cell regulatory pathways that confer a partial loss of cisplatin sensitivity.
机译:多药耐药性(MDR)是一种现象,在这种现象中,细胞对细胞生长抑制药物和其他具有不同化学结构和细胞毒性机制的物质产生抗性。最常见的MDR分子机制包括高水平的P-糖蛋白(P-gp)-ABC药物转运蛋白家族的ABCB1成员。 P-gp在肿瘤组织中的过表达是化疗治疗的障碍。在本文中,我们集中于P-gp阳性和P-gp阴性的L1210细胞之间由顺铂(无P-gp底物)诱导的凋亡差异。通过L1210细胞适应长春新碱(R)或用人P-gp基因(T)转染L1210细胞获得P-gp阳性细胞,并与亲本L1210细胞(S)进行比较。 R和T细胞比S细胞对CisPt更具有抵抗力。维拉帕米(一种众所周知的P-gp抑制剂)无法逆转R和T细胞对CisPt诱导的细胞凋亡的抗性,而维拉帕米不包括P-gp转运活性是引起CisPt抗性的原因。使用膜联蛋白-V /碘化丙啶凋亡试剂盒测量,与R和T细胞相比,CisPt诱导S进入凋亡更为明显。与R和T细胞相比,CisPt在S中诱导的caspase-3激活更为明显。 CisPt不会诱导R和T细胞的P-gp蛋白水平发生变化。虽然在P-gp阴性和P-gp阳性细胞中观察到了相似的Bax和Bcl-2蛋白水平,但CisPt诱导S细胞的Bcl-2水平比P-gp阳性细胞明显降低。在S和R和T细胞中,p53及其分子伴侣Hsp90的表达更为明显。此外,CisPt增强了R和T细胞中p53和Hsp90的上调程度,高于S细胞。通过典型的DNA片段化和细胞超微结构变化,显示凋亡是S,R和T细胞中细胞死亡的普遍模式。以上所有发现表明,P-gp与其药物外排活性无关,可诱导细胞变化导致顺铂敏感性部分丧失的调节途径。

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