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Molecular chaperones and hypoxic-ischemic encephalopathy

发布时间:2018-04-27 20:35

  本文选题:nerve + regeneration ; 参考:《Neural Regeneration Research》2017年01期


【摘要】:Hypoxic-ischemic encephalopathy(HIE) is a disease that occurs when the brain is subjected to hypoxia,resulting in neuronal death and neurological deficits,with a poor prognosis.The mechanisms underlying hypoxic-ischemic brain injury include excitatory amino acid release,cellular proteolysis,reactive oxygen species generation,nitric oxide synthesis,and inflammation.The molecular and cellular changes in HIE include protein misfolding,aggregation,and destruction of organelles.The apoptotic pathways activated by ischemia and hypoxia include the mitochondrial pathway,the extrinsic Fas receptor pathway,and the endoplasmic reticulum stress-induced pathway.Numerous treatments for hypoxic-ischemic brain injury caused by HIE have been developed over the last half century.Hypothermia,xenon gas treatment,the use of melatonin and erythropoietin,and hypoxic-ischemic preconditioning have proven effective in HIE patients.Molecular chaperones are proteins ubiquitously present in both prokaryotes and eukaryotes.A large number of molecular chaperones are induced after brain ischemia and hypoxia,among which the heat shock proteins are the most important.Heat shock proteins not only maintain protein homeostasis; they also exert anti-apoptotic effects.Heat shock proteins maintain protein homeostasis by helping to transport proteins to their target destinations,assisting in the proper folding of newly synthesized polypeptides,regulating the degradation of misfolded proteins,inhibiting the aggregation of proteins,and by controlling the refolding of misfolded proteins.In addition,heat shock proteins exert anti-apoptotic effects by interacting with various signaling pathways to block the activation of downstream effectors in numerous apoptotic pathways,including the intrinsic pathway,the endoplasmic reticulum-stress mediated pathway and the extrinsic Fas receptor pathway.Molecular chaperones play a key role in neuroprotection in HIE.In this review,we provide an overview of the mechanisms of HIE and discuss the various treatment strategies.Given their critical role in the disease,molecular chaperones are promising therapeutic targets for HIE.
[Abstract]:Hypoxic-ischemic encephalopathy(HIE) is a disease that occurs when the brain is subjected to hypoxia,resulting in neuronal death and neurological deficits,with a poor prognosis.The mechanisms underlying hypoxic-ischemic brain injury include excitatory amino acid release,cellular proteolysis,reactive oxygen species generation,nitric oxide synthesis,and inflammation.The molecular and cellular changes in HIE include protein misfolding,aggregation,and destruction of organelles.The apoptotic pathways activated by ischemia and hypoxia include the mitochondrial pathway,the extrinsic Fas receptor pathway,and the endoplasmic reticulum stress-induced pathway.Numerous treatments for hypoxic-ischemic brain injury caused by HIE have been developed over the last half century.Hypothermia,xenon gas treatment,the use of melatonin and erythropoietin,and hypoxic-ischemic preconditioning have proven effective in HIE patients.Molecular chaperones are proteins ubiquitously present in both prokaryotes and eukaryotes.A large number of molecular chaperones are induced after brain ischemia and hypoxia,among which the heat shock proteins are the most important.Heat shock proteins not only maintain protein homeostasis; they also exert anti-apoptotic effects.Heat shock proteins maintain protein homeostasis by helping to transport proteins to their target destinations,assisting in the proper folding of newly synthesized polypeptides,regulating the degradation of misfolded proteins,inhibiting the aggregation of proteins,and by controlling the refolding of misfolded proteins.In addition,heat shock proteins exert anti-apoptotic effects by interacting with various signaling pathways to block the activation of downstream effectors in numerous apoptotic pathways,including the intrinsic pathway,the endoplasmic reticulum-stress mediated pathway and the extrinsic Fas receptor pathway.Molecular chaperones play a key role in neuroprotection in HIE.In this review,we provide an overview of the mechanisms of HIE and discuss the various treatment strategies.Given their critical role in the disease,molecular chaperones are promising therapeutic targets for HIE.
【作者单位】: Department
【分类号】:R743.3

【参考文献】

相关期刊论文 前2条

1 Yue Yao;Xiang-rong Zheng;Shan-shan Zhang;Xia Wang;Xiao-he Yu;Jie-lu Tan;Yu-jia Yang;;Transplantation of vascular endothelial growth factor-modified neural stem/progenitor cells promotes the recovery of neurological function following hypoxic-ischemic brain damage[J];Neural Regeneration Research;2016年09期

2 Ying-bo Li;Yan Wang;Ji-ping Tang;Di Chen;Sha-li Wang;;Neuroprotective effects of ginsenoside Rg1-induced neural stem cell transplantation on hypoxic-ischemic encephalopathy[J];Neural Regeneration Research;2015年05期

【共引文献】

相关期刊论文 前10条

1 方声;王丽珍;;脑苷肌肽对缺氧缺血性脑病血清胰岛素样生长因子-1及治疗预后的影响[J];中国临床药理学与治疗学;2017年01期

2 Cong Hua;Wei-na Ju;Hang Jin;Xin Sun;Gang Zhao;;Molecular chaperones and hypoxic-ischemic encephalopathy[J];Neural Regeneration Research;2017年01期

3 杜依楚;潘玉君;;人参皂苷Rg1在神经系统疾病中的作用机制进展[J];医学研究杂志;2016年10期

4 Yue Yao;Xiang-rong Zheng;Shan-shan Zhang;Xia Wang;Xiao-he Yu;Jie-lu Tan;Yu-jia Yang;;Transplantation of vascular endothelial growth factor-modified neural stem/progenitor cells promotes the recovery of neurological function following hypoxic-ischemic brain damage[J];Neural Regeneration Research;2016年09期

5 Qun Cai;Ting Wang;Wen-jie Yang;Xing Fen;;Protective mechanisms of micro RNA-27a against oxygen-glucose deprivation-induced injuries in hippocampal neurons[J];Neural Regeneration Research;2016年08期

6 Zhi-gao Sun;Li-ping Chen;Fa-wei Wang;Cheng-yong Xu;Miao Geng;;Protective effects of ginsenoside Rg1 against hydrogen peroxide-induced injury in human neuroblastoma cells[J];Neural Regeneration Research;2016年07期

7 万凤;司银楚;牛欣;;人参皂苷作用于星形胶质细胞对中风后神经干细胞增殖和分化的影响[J];中华中医药杂志;2016年05期

8 何方;余丽梅;;人参皂苷Rg1对成体干细胞特性与功能的影响[J];中国药理学通报;2016年03期

9 李林娟;;振幅整合脑电图在缺氧缺血性脑病患儿诊断及预后评价中的价值[J];内科;2016年01期

10 李红艳;代永霞;张江华;孔亮;康廷国;杨静娴;;人参蛋白对过氧化氢致神经元损伤的保护作用[J];中国医院药学杂志;2015年21期

【二级参考文献】

相关期刊论文 前10条

1 Ying-bo Li;Yan Wang;Ji-ping Tang;Di Chen;Sha-li Wang;;Neuroprotective effects of ginsenoside Rg1-induced neural stem cell transplantation on hypoxic-ischemic encephalopathy[J];Neural Regeneration Research;2015年05期

2 Jielu Tan;Xiangrong Zheng;Shanshan Zhang;Yujia Yang;Xia Wang;Xiaohe Yu;Le Zhong;;Response of the sensorimotor cortex of cerebral palsy rats receiving transplantation of vascular endothelial growth factor 165-transfected neural stem cells[J];Neural Regeneration Research;2014年19期

3 Lin Wang;Feng Jiang;Qifeng Li;Xiaoguang He;Jie Ma;;Mild hypothermia combined with neural stem cell transplantation for hypoxic-ischemic encephalopathy: neuroprotective effects of combined therapy[J];Neural Regeneration Research;2014年19期

4 杨坦;刘华;王肇光;高济凡;肖东杰;汪运山;;应用于缺血缺氧性脑病治疗的神经干细胞移植:现实与未来[J];中国组织工程研究;2014年01期

5 Zhichun Feng;Jing Liu;Rong Ju;;Hyperbaric oxygen treatment promotes neural stem cell proliferation in the subventricular zone of neonatal rats with hypoxic-ischemic brain damage[J];Neural Regeneration Research;2013年13期

6 周s,

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