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首页> 外文期刊>Autophagy >Autophagy is induced by ischemic preconditioning in human livers formerly treated by chemotherapy to limit necrosis.
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Autophagy is induced by ischemic preconditioning in human livers formerly treated by chemotherapy to limit necrosis.

机译:通过化疗治疗以前通过化疗治疗的人肝脏缺血预处理引起自噬,限制坏死。

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The effectiveness of ischemic preconditioning (IP) against hepatic ischemia/reperfusion injury during human liver surgery is linked to decreased apoptotic cell death as well as preservation of the ATP content in liver tissue. Overproduction of Bcl-2 is reported in preconditioned organs. In human liver biopsies exhibiting steatosis and/or vascular injuries (mainly peliosis) induced by chemotherapy, we find that the expression of Bcl-2 in centrolobular and peliotic areas colocalizes with the autophagy protein Beclin 1 in IP livers. Increased expression of phosphorylated Bcl-2 in preconditioned livers is associated with decreased immunoprecipitation of Beclin 1 and increased expression of LC3-II. The increased number of autophagic vacuoles seen by electron microscopy confirmed that IP could trigger autophagy in chemotherapy-injured livers, probably to reduce the pro-inflammatory necrotic cell death of hepatocytes or endothelial cells and to increase ATP levels. Indeed, necrosis is less frequent (p = 0.04) in IP livers than in the others although no change in apoptosis as assessed by TUNEL assay or caspase-3, -8 and -9 expressions is observed. In conclusion, Bcl-2 and Beclin 1 could be major targets in the regulation of cell death during ischemia/reperfusion injury modulating autophagy to switch on/off necrosis and/or apoptosis.
机译:缺血预处理(IP)对人肝脏手术期间肝脏缺血/再灌注损伤的有效性与凋亡细胞死亡降低,以及肝组织中的ATP含量的保存。在预处理器官中报道了Bcl-2的过度生产。在人类肝脏活组织检查中,表现出化疗诱导的脂肪变性和/或血管损伤(主要是脑脊菌),我们发现Bcl-2在甲状腺和嗜纤维区域中的表达与IP肝脏中的自噬蛋白BECLIN 1中的含有自噬蛋白BECLIN 1。在预处理肝脏中磷酸化Bcl-2的表达增加与BECLIN1的免疫沉淀和LC3-II的表达增加相关。通过电子显微镜观察到增加的自噬液泡数证实,IP可以触发化疗伤害肝脏中的自噬,可能降低肝细胞或内皮细胞的促炎症坏细胞死亡并增加ATP水平。实际上,Decrosis在IP肝脏中的频率低于(P = 0.04),但是观察到由TUNEL测定或Caspase-3,-8和-9表达评估的细胞凋亡的变化。总之,Bcl-2和Beclin 1可以是在缺血/再灌注损伤期间细胞死亡调节中调节自噬的主要目标,以接通/关闭坏死和/或细胞凋亡。

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