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Roles of autophagy and endoplasmic reticulum stress in intracerebral hemorrhage‐induced secondary brain injury in?rats

机译:自噬和内质网应激在大鼠脑出血后继发性脑损伤中的作用

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Summary ObjectivesThis study aimed to evaluate the roles of autophagy and endoplasmic reticulum (ER) stress in intracerebral hemorrhage (ICH)-induced secondary brain injury (SBI) in rats. MethodsAutophagy inducer (rapamycin) and inhibitor (3-methyladenine), as well as ER stress activator (tunicamycin, TM) and inhibitor (tauroursodeoxycholic acid, TUDCA), were used. Bafilomycin A1, an inhibitor of autophagosome-lysosome fusion, was used to assess autophagic flux. ResultsAutophagy and ER stress were enhanced in the week after ICH. At 6?hours after ICH, autophagy was excessive, while the autophagic flux was damaged at 72?hours and return to be intact at 7?days after ICH. At 6?hours after ICH, ER stress induction by TM could enhance autophagy and lead to caspase 12-mediated apoptosis and neuronal degeneration, which was further aggravated by autophagy induction. At 7?days after ICH, ER stress inhibition by TUDCA still could suppress ICH-induced SBI. And, the effects of TUDCA were enhanced by autophagy induction. ConclusionsAt 6?hours after ICH, excessive autophagy may participate in ER stress-induced brain injury; at 7?days after ICH, autophagy could enhance the protection of ER stress inhibitor possibly via clearing up the cell rubbish generated due to the early-stage damaged autophagic flux.
机译:摘要目的本研究旨在评估自噬和内质网应激在大鼠脑出血(ICH)引起的继发性脑损伤(SBI)中的作用。方法使用自噬诱导剂(雷帕霉素)和抑制剂(3-甲基腺嘌呤),以及内质网应激激活剂(衣霉素,TM)和抑制剂(牛磺去氧胆酸,TUDCA)。噬菌体-溶酶体融合抑制剂Bafilomycin A1用于评估自噬通量。结果ICH后一周自噬和内质网应激增强。 ICH后6小时,自噬过多,而自噬通量在72小时时受损,并在ICH后7天恢复原状。 ICH后6小时,TM诱导的ER应激可增强自噬作用,并导致caspase 12介导的细胞凋亡和神经元变性,自噬诱导作用进一步加剧。 ICH后7天,TUDCA抑制ER应激仍可抑制ICH诱导的SBI。并且,通过自噬诱导增强了TUDCA的作用。结论ICH后6小时,自噬过多可能参与了ER应激引起的脑损伤;在ICH后7天,自噬可能通过清除由于早期自噬通量受损而产生的细胞垃圾来增强对ER应激抑制剂的保护。

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