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首页> 外文期刊>Cell death & disease. >Cafestol overcomes ABT-737 resistance in Mcl-1-overexpressed renal carcinoma Caki cells through downregulation of Mcl-1 expression and upregulation of Bim expression
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Cafestol overcomes ABT-737 resistance in Mcl-1-overexpressed renal carcinoma Caki cells through downregulation of Mcl-1 expression and upregulation of Bim expression

机译:Cafestol通过下调Mcl-1表达和上调Bim表达来克服Mcl-1过表达的肾癌Caki细胞中的ABT-737耐药性

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Although ABT-737, a small-molecule Bcl-2/Bcl-xL inhibitor, has recently emerged as a novel cancer therapeutic agent, ABT-737-induced apoptosis is often blocked in several types of cancer cells with elevated expression of Mcl-1. Cafestol, one of the major compounds in coffee beans, has been reported to have anti-carcinogenic activity and tumor cell growth-inhibitory activity, and we examined whether cafestol could overcome resistance against ABT-737 in Mcl-1-overexpressed human renal carcinoma Caki cells. ABT-737 alone had no effect on apoptosis, but cafestol markedly enhanced ABT-737-mediated apoptosis in Mcl-1-overexpressed Caki cells, human glioma U251MG cells, and human breast carcinoma MDA-MB231 cells. By contrast, co-treatment with ABT-737 and cafestol did not induce apoptosis in normal human skin fibroblast. Furthermore, combined treatment with cafestol and ABT-737 markedly reduced tumor growth compared with either drug alone in xenograft models. We found that cafestol inhibited Mcl-1 protein expression, which is important for ABT-737 resistance, through promotion of protein degradation. Moreover, cafestol increased Bim expression, and siRNA-mediated suppression of Bim expression reduced the apoptosis induced by cafestol plus ABT-737. Taken together, cafestol may be effectively used to enhance ABT-737 sensitivity in cancer therapy via downregulation of Mcl-1 expression and upregulation of Bim expression.
机译:尽管小分子Bcl-2 / Bcl-xL抑制剂ABT-737最近作为一种新型的癌症治疗剂出现了,但ABT-737诱导的细胞凋亡通常在几种类型的Mcl-1表达升高的癌细胞中被阻断。 Cafestol是咖啡豆中的主要化合物之一,据报道具有抗癌活性和抑制肿瘤细胞生长的活性,并且我们研究了cafestol是否可以克服Mcl-1过表达的人肾癌Caki对ABT-737的耐药性细胞。单独的ABT-737对细胞凋亡没有影响,但是cafestol显着增强了Mcl-1过表达的Caki细胞,人神经胶质瘤U251MG细胞和人乳腺癌MDA-MB231细胞中ABT-737介导的细胞凋亡。相比之下,与ABT-737和Cafestol共同治疗不会在正常人皮肤成纤维细胞中诱导凋亡。此外,与异种移植模型中的任何一种药物相比,与cafestol和ABT-737联合治疗显着降低了肿瘤的生长。我们发现cafestol通过促进蛋白质降解来抑制Mcl-1蛋白表达,这对ABT-737抵抗很重要。此外,cafestol可增加Bim表达,而siRNA介导的Bim表达抑制可降低cafestol加ABT-737诱导的细胞凋亡。两者合计,咖啡因可以通过下调Mcl-1表达和上调Bim表达而有效地用于增强ABT-737在癌症治疗中的敏感性。

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