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Hes1 Knockdown Exacerbates Ischemic Stroke Following tMCAO by Increasing ER Stress-Dependent Apoptosis via the PERK/ eIF2a/ATF4/CHOP Signaling Pathway 被引量:15
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作者 Yueyong Li Yingjun Zhang +8 位作者 Huangde Fu Huadong Huang Qifeng Lu Houji Qin Yingning Wu Huatuo Huang Guizhen Mao Zhongheng Wei Pinhu Liao 《Neuroscience Bulletin》 SCIE CAS CSCD 2020年第2期134-142,共9页
Apoptosis induced by endoplasmic reticulum(ER)stress plays a crucial role in mediating brain damage after ischemic stroke.Recently,Hes1(hairy and enhancer of split 1)has been implicated in the regulation of ER stress,... Apoptosis induced by endoplasmic reticulum(ER)stress plays a crucial role in mediating brain damage after ischemic stroke.Recently,Hes1(hairy and enhancer of split 1)has been implicated in the regulation of ER stress,but whether it plays a functional role after ischemic stroke and the underlying mechanism remain unclear.In this study,using a mouse model of ischemic stroke via transient middle cerebral artery occlusion(tMCAO),we found that Hes1 was induced following brain injury,and that siRNA-mediated knockdown of Hes1 increased the cerebral infarction and worsened the neurological outcome,suggesting that Hes1 knockdown exacerbates ischemic stroke.In addition,mechanistically,Hes1 knockdown promoted apoptosis and activated the PERK/eIF2a/ATF4/CHOP signaling pathway after tMCAO.These results suggest that Hes1 knockdown promotes ER stress-induced apoptosis.Furthermore,inhibition of PERK with the specific inhibitor GSK2606414 markedly attenuated the Hes1 knockdown-induced apoptosis and the increased cerebral infarction as well as the worsened neurological outcome following tMCAO,implying that the protection of Hes1 against ischemic stroke is associated with the amelioration of ER stress via modulating the PERK/eIF2a/ATF4/CHOP signaling pathway.Taken together,these results unveil the detrimental role of Hes1 knockdown after ischemic stroke and further relate it to the regulation of ER stress-induced apoptosis,thus highlighting the importance of targeting ER stress in the treatment of ischemic stroke. 展开更多
关键词 HES1 Ischemic stroke perk/eIF2a/atf4/CHOP pathway ER stress Transient MCAO
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布美他尼通过PERK/EIF-2a/ATF4信号抑制内质网应激减轻缺血性脑卒中大鼠神经元损伤 被引量:1
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作者 赵旭 鞠延玲 +2 位作者 臧雪莲 童健尔 戚芳 《解剖科学进展》 CAS 2022年第5期635-638,共4页
目的探讨布美他尼抑制内质网应激减轻缺血性脑卒中大鼠海马神经元损伤的机制研究。方法30只SD大鼠随机分为假手术组、模型组、布美他尼组,每组10只。通过结扎双侧颈总动脉方法制备缺血性脑卒中大鼠模型。检测各组大鼠神经功能缺损评分;... 目的探讨布美他尼抑制内质网应激减轻缺血性脑卒中大鼠海马神经元损伤的机制研究。方法30只SD大鼠随机分为假手术组、模型组、布美他尼组,每组10只。通过结扎双侧颈总动脉方法制备缺血性脑卒中大鼠模型。检测各组大鼠神经功能缺损评分;TTC染色检测大鼠脑组织梗死体积;检测脑组织含水量;免疫荧光染色检测神经元标记物NeuN的数量;免疫组织化学染色检测内质网应激相关蛋白葡萄糖调控蛋白78(GRP78)、C/EBP同源蛋白(CHOP)表达;Western blot检测胰腺内质网激酶(PERK)、真核细胞起始因子2α(EIF-2α)、磷酸化PERK(p-PERK)、磷酸化EIF-2α(p-EIF-2α)和转录激活因子4(ATF4)表达。结果与模型组相比,布美他尼组大鼠神经功能缺损评分明显降低,脑梗死体积明显减小,脑组织含水量明显降低,神经元NeuN数量明显增加,GRP78、CHOP蛋白表达明显降低,并且p-PERK、p-EIF-2α和ATF4蛋白表达明显降低。结论布美他尼能够改善缺血性脑卒中大鼠神经元损伤,其作用机制可能与抑制PERK/EIF-2α/ATF4信号通路、抑制内质网应激有关。 展开更多
关键词 布美他尼 缺血性脑卒中 神经元损伤 内质网应激 perk/eif-2α/atf4信号通路
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