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首页> 外文期刊>Archives of medical research >Alteration of the Intrinsic Apoptosis Pathway Is Involved in Notch-induced Chemoresistance to Gemcitabine in Pancreatic Cancer
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Alteration of the Intrinsic Apoptosis Pathway Is Involved in Notch-induced Chemoresistance to Gemcitabine in Pancreatic Cancer

机译:内切细胞凋亡途径的改变与胰腺癌吉西他滨的刻缺诱导的化学抗性有关。

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Background and Aims: Chemoresistance is a major challenge in pancreatic cancer (PC) treatment. Limited data have shown that members of the Notch signaling pathway are involved in resistance to gemcitabine (GEM) in PC. However, further evidence is needed and the underlying mechanisms remain to be elucidated. The current study aims to investigate the role of alterations of the intrinsic apoptosis pathway in Notch-induced GEM resistance of PC. Methods: The Notch signaling pathway was inhibited or activated in three PC cell lines (AsPC-1, BxPC-3, and MIA PaCa-2) by γ-secretase inhibition and Notch intracellular domain (NICD) overexpression, respectively. Subsequent analyses included inhibition rates of cell proliferation by GEM, cell apoptosis, and expression of proteins involved in the intrinsic apoptosis pathway. Results: Hes-1 expression was significantly elevated after GEM treatment, indicating Notch activation. Inhibition of the Notch signaling pathway by DAPT, a γ-secretase inhibitor, resulted in a significant increase of the inhibition rates by GEM in all PC cell lines. In addition, there was more frequent apoptosis, higher caspase-3 activity, up-regulation of Bax, and down-regulation of Bcl-2 and Bcl-xL. Conversely, transient transfection of NICD, which enhances the activity of the Notch signaling, caused a remarkable decrease of the chemosensitivity to GEM. Conclusions: An alteration of the intrinsic apoptosis pathway is involved in Notch-induced chemoresistance to GEM in PC cells.
机译:背景与目的:化学抗性是胰腺癌(PC)治疗的主要挑战。有限的数据表明,Notch信号通路的成员参与了PC对吉西他滨(GEM)的耐药性。但是,还需要进一步的证据,其潜在机制仍有待阐明。目前的研究旨在调查内在凋亡途径的改变在Notch诱导的PC的GEM抵抗中的作用。方法:Notch信号通路分别通过抑制γ-分泌酶和Notch细胞内结构域(NICD)的表达而在三种PC细胞系(AsPC-1,BxPC-3和MIA PaCa-2)中被抑制或激活。随后的分析包括GEM对细胞增殖的抑制率,细胞凋亡以及参与固有凋亡途径的蛋白质的表达。结果:GEM处理后Hes-1表达明显升高,表明Notch激活。 DAPT(一种γ-分泌酶抑制剂)对Notch信号通路的抑制导致GEM在所有PC细胞系中的抑制率显着提高。此外,细胞凋亡更频繁,caspase-3活性更高,Bax上调,Bcl-2和Bcl-xL下调。相反,NICD的瞬时转染增强了Notch信号传导的活性,导致对GEM的化学敏感性显着降低。结论:内在凋亡途径的改变与Notch诱导的PC细胞对GEM的化学抗性有关。

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