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Autophagy and cerebral ischemia |
PENG Yongjun1 QIAO Yu2 LI Zhongren2 FU Shuping2 CHU Jihong1 JIANG Pengjun1 ZHU Bingmei3 |
1.The Affiliated Hospital of Nanjing University of Chinese Medicine, Jiangsu Province, Nanjing 210029, China;
2.Nanjing University of Chinese Medicine, Jiangsu Province, Nanjing 210029, China;
3.West China Hospital, Sichuan University, Sichuan Province, Chengdu 610041, China |
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Abstract Autophagy is closely related to cerebral ischemia, and the two interact with each other. Cerebral ischemia can stimulate autophagy, and meanwhile, autophagy can aggravate or reduce the damage of nerve cells after cerebral ischemia. Cerebral ischemia can lead to cell autophagy and cell autophagy activation moderately, conducive to the repair of nerve cell after cerebral ischemia, but excessive or insufficient cell autophagy activation, and can lead to cell apoptosis, increase brain damage, so the cell autophagy activation takes control and grasp the degrees, also need further to study the roles of autophagy in cerebral ischemia specific signal and interference signal pathways in concrete means and so on. This article explores the relationship between autophagy and cerebral ischemia at home and abroad in recent years, and to provide new ideas for its clinical research.
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[1] 袁扬.线粒体自噬的抗缺血性脑损伤作用及其调控机制研究[D].杭州:浙江大学,2016.
[2] 韦磊,王丽宁,李明,等.细胞自噬与肿瘤发生关系研究进展[J].医学综述,2017,23(11):2116-2119.
[3] 汪光云.基于细胞自噬信号通路探讨通窍活血汤保护大鼠脑缺血再灌注损伤与自噬的关系[D].合肥:安徽中医药大学,2016.
[4] 郭向飞,赵雅宁,李建民,等.阻塞性睡眠呼吸暂停低氧对脑缺血大鼠海马区神经细胞自噬的影响[J].解剖学杂志,2016,39(5):572-575.
[5] Wang N,Yang L,Zhang H,et al. MicroRNA-9a-5p Alleviates Ischemia Injury After Focal Cerebral Ischemia of the Rat by Targeting ATG5-Mediated Autophagy [J]. Cell Physiol Biochem,2018,45(1):78-87.
[6] Wang P,Shao BZ,Deng Z,et al. Autophagy in ischemic stroke [J]. Prog Neurobiol,2018,45(1):98-117.
[7] Nakamura S,Hasegawa J,Yoshimori T. Regulation of lysosomal phosphoinositide balance by INPP5E is essential for autophagosome-lysosome fusion [J]. Autophagy,2016,12(12):2500-2501.
[8] Nakamura,Yoshimori. New insights into autophagosome-lysosome fusion [J]. J Cell Sci,2017,130(7):1209-1216.
[9] Chao S,Xiaojun L,Haizhen W,et al. Lithocholic acid activates mTOR signaling inducing endoplasmic reticulum stress in placenta during intrahepatic cholestasis of pregnancy [J]. Life Sci,2018,218(12):300-307.
[10] Peng C,Rao W,Zhang L,et al. Mitofusin 2 Exerts a Protective Role in Ischemia Reperfusion Injury Through Increasing Autophagy [J]. Cell Physiol Biochem,2018,46(6):2311-2324.
[11] 秦正红.自噬:生物学与疾病,基础卷[M].北京:科学出版社,2015.
[12] 柳挺,尹金鹏.脑缺血损伤的病理生理机制[J].包头医学,2008,32(4):216-218.
[13] 张斌斌,吴美玲,刘露娜,等.抑制哺乳动物雷帕霉素靶蛋白信号通路对慢性脑缺血小鼠认知功能的改善和机制[J].浙江大学学报:医学版,2017,46(4):405-412.
[14] 刘坚.永久性双侧颈总动脉结扎大鼠海马AMPK-mTOR的时向变化及与神经功能评分关系[D].南昌:南昌大学医学院,2013.
[15] 王瑜,王天龙,赵磊,等.局部脑缺血再灌注损伤对小鼠TMEM166基因和神经细胞自噬的影响[J].中国比较医学杂志,2018,27(7):28-32.
[16] 何鹤,黄国志,曾庆,等.自噬对脑缺血再灌注损伤后神经功能障碍恢复的影响[J].中华神经医学杂志,2018, 17(2):124-129.
[17] 黄语悠,房亚兰,师文娟,等.一氧化氮合酶抑制剂N-硝基-L-精氨酸甲酯对局灶性脑缺血再灌注大鼠缺血半暗带区细胞自噬的影响[J].首都医科大学学报,2018, 38(3):355-359.
[18] 李巍巍,王群,郭安臣,等.自噬--脑缺血损伤中的双刃剑[J].中国卒中杂志,2015,10(4):319-325.
[19] 黄海广.自噬在低氧促神经干细胞增殖及在脑缺血损伤中的调节作用[D].北京:中国人民解放军军事医学科学院,2016.
[20] Wu Z,Zou Z,Zou R,et al. Electroacupuncture pretreatment induces tolerance against cerebral ischemia/reperfusion injury through inhibition of the autophagy pathway [J]. Mol Med Rep,2015,11(6):4438-4446.
[21] 李建荣,蒋晓帆,张磊,等.脑缺血模型中皮层Sirt3与自噬蛋白LC3表达的相关性[J].中华神经外科疾病研究杂志,2018,17(5):387-39
[22] 李丽茹,黄杰.病变侧亚低温对大鼠局脑缺血再灌注后认知障碍及自噬蛋白表达的影响[J].中华全科医学,2018, 15(12):1977-1980.
[23] 何坚,黄紫妍,陈伟标,等.电针抑制局灶性脑缺血损伤大鼠皮质细胞自噬的实验研究[J].中国康复医学杂志,2015,30(12):1203-1207.
[24] 王洁,马静萍.丁苯酞通过p53/mTOR通路对大鼠脑缺血再灌注损伤后自噬的影响[J].世界最新医学信息文摘,2018,17(43):19-21.
[25] Liu P,Liu P,Wang Z,et al. Inhibition of MicroRNA-96 Ameliorates Cognitive Impairment and Inactivation Autophagy Following Chronic Cerebral Hypoperfusion in the Rat [J]. Cell Physiol Biochem,2018,49(1):78-86.
[26] Mei J,Hairong W,Mingming J,et al. Exosomes from MiR-30d-5p-ADSCs Reverse Acute Ischemic Stroke-Induced,Autophagy-Mediated Brain Injury by Promoting M2 Microglial/Macrophage Polarization [J]. Cell Physiol Biochem,2018,47(2):864-878.
[27] Kumar V,Evans LC,Kurth T,et al. Therapeutic Suppression of mTOR (Mammalian Target of Rapamycin) Signaling Prevents and Reverses Salt-Induced Hypertension and Kidney Injury in Dahl Salt-Sensitive Rats [J]. Hypertension,2018,39(12):116-118.
[28] 杨阳,冷光朋,韦家俊,等.脑缺血再灌注损伤与自噬相关蛋白Beclin-1和CathepsinB表达相关[J].华夏医学,2018,30(1):1-4.
[29] 付乐.AMPK-mTOR信号通路对自噬的影响在小鼠局灶性脑缺血损伤中的作用[D].南昌:南昌大学,2015.
[30] 刘宇,赵雅宁,刘孜卓,等.LC3-Ⅱ和Beclin1在糖尿病脑缺血后处理大鼠海马CA1区表达及意义[J].医学研究生学报,2016,29(1):46-51.
[31] 冯晓东,高玲莉,李瑞青,等.电针对脑缺血再灌注模型大鼠脑组织Beclin-1蛋白及基因表达的影响[J].中国康复医学杂志,2016,30(12):1307-1310. |
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