Chinese General Practice ›› 2022, Vol. 25 ›› Issue (09): 1136-1140.DOI: 10.12114/j.issn.1007-9572.2021.02.107
Special Issue: 神经系统疾病最新文章合辑; 脑健康最新研究合辑
• Article·Brain Health • Previous Articles Next Articles
The Glymphatic System:a New Exploration of Pathological Mechanism in Stroke
1.School of Health Preservation and Rehabilitation,Chengdu University of TCM,Chengdu 610075,China
2.Department of Internal Medicine-Neurology,Hospital of Chengdu University of TCM,Chengdu 610072,China
3.School of Acupuncture and Tuina,Chengdu University of TCM,Chengdu 610075,China
*Corresponding authors:JIN Shuoguo,Lecturer;E-mail:jinshuoguo@cdutcm.edu.cn
YIN Haiyan,Associate professor;E-mail:yinhaiyan@cdutcm.edu.cn
Received:
2021-08-20
Revised:
2021-11-15
Published:
2022-03-20
Online:
2021-12-21
通讯作者:
金硕果,尹海燕
基金资助:
CLC Number:
YI Ting, JIN Shuoguo, YIN Haiyan, GAO Ping, ZHU Tianmin.
The Glymphatic System:a New Exploration of Pathological Mechanism in Stroke [J]. Chinese General Practice, 2022, 25(09): 1136-1140.
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URL: https://www.chinagp.net/EN/10.12114/j.issn.1007-9572.2021.02.107
[1] | NEDERGAARD M,GOLDMAN S A. Brain drain[J]. Sci Am,2016,314(3):44-49. DOI:10.1038/scientificamerican0316-44. |
[2] | ILIFF J J,WANG M H,LIAO Y H,et al. A paravascular pathway facilitates CSF flow through the brain parenchyma and the clearance of interstitial solutes,including amyloid Β[J]. Sci Transl Med,2012,4(147):147ra111. DOI:10.1126/scitranslmed.3003748. |
[3] | LOUVEAU A,SMIRNOV I,KEYES T J,et al. Corrigendum:Structural and functional features of central nervous system lymphatic vessels[J]. Nature,2016,533(7602):278. DOI:10.1038/nature16999. |
[4] | RASMUSSEN M K,MESTRE H,NEDERGAARD M. The glymphatic pathway in neurological disorders[J]. Lancet Neurol,2018,17(11):1016-1024. DOI:10.1016/S1474-4422(18)30318-1. |
[5] | SUN B L,WANG L H,YANG T,et al. Lymphatic drainage system of the brain:a novel target for intervention of neurological diseases[J]. Prog Neurobiol,2018,163/164:118-143. DOI:10.1016/j.pneurobio.2017.08.007. |
[6] | WEED L H. Studies on Cerebro-Spinal Fluid. No.Ⅲ:The pathways of escape from the Subarachnoid Spaces with particular reference to the Arachnoid Villi[J]. J Med Res,1914,31(1):51-91. |
[7] | LUKIC I K,GLUNCIC V,IVKIC G,et al. Virtual dissection:a lesson from the 18th century[J]. Lancet,2003,362(9401):2110-2113. DOI:10.1016/S0140-6736(03)15114-8. |
[8] | 周颖. 脑小血管病患者脑类淋巴功能的变化及机制研究[D]. 杭州:浙江大学,2020. |
[9] | 刘俊,张国斌. 脑脊液循环动力学机制研究进展[J]. 中国神经精神疾病杂志,2021,47(5):301-305. |
[10] | 杨逸飞,李昊. 脑部类淋巴系统的研究进展[J]. 中华临床医师杂志:电子版,2021,15(1):52-56. |
[11] | PROULX S T. Cerebrospinal fluid outflow:a review of the historical and contemporary evidence for arachnoid villi,perineural routes,and dural lymphatics[J]. Cell Mol Life Sci,2021,78(6):2429-2457. DOI:10.1007/s00018-020-03706-5. |
[12] | CSERR H F,COOPER D N,SURI P K,et al. Efflux of radiolabeled polyethylene glycols and albumin from rat brain[J]. Am J Physiol,1981,240(4):F319-328. DOI:10.1152/ajprenal.1981.240.4.F319. |
[13] | ABSINTA M,HA S K,NAIR G,et al. Human and nonhuman primate meninges harbor lymphatic vessels that can be visualized noninvasively by MRI[J]. Elife,2017,6:e29738. DOI:10.7554/eLife.29738. |
[14] | 王琳辉,王紫兰,陈文悦,等. 胶质淋巴系统:概念、功能和研究进展[J]. 生理学报,2018,70(1):52-60. DOI:10.13294/j.aps.2018.0006. |
[15] | 卢鹤扬,冯一苇,崔梅. 类淋巴系统与中枢神经系统病变的相关性研究进展[J]. 中国临床神经科学,2020,28(1):78-84,92. |
[16] | 鲍嘉敏,陈锦漫,梁倩倩,等. 大脑淋巴系统的研究进展[J]. 神经解剖学杂志,2019,35(3):339-342. DOI:10.16557/j.cnki.1000-7547.2019.03.019. |
[17] | NEDERGAARD M. Neuroscience. Garbage truck of the brain[J]. Science,2013,340(6140):1529-1530. DOI:10.1126/science.1240514. |
[18] | 黄宽宽,张敏,恽文伟,等. 脑血管周围间隙扩大的研究进展[J]. 临床神经病学杂志,2020,33(6):472-475. |
[19] | 梁文聪,陈仰昆,肖卫民. 脑血管周围间隙扩大的病理生理机制及临床意义的研究进展[J]. 复旦学报:医学版,2021,48(4):551-557. |
[20] | MESTRE H,HABLITZ L M,XAVIER A L,et al. Aquaporin-4-dependent glymphatic solute transport in the rodent brain[J]. Elife,2018,7:e40070. DOI:10.7554/eLife.40070. |
[21] | VERKMAN A S,SMITH A J,PHUAN P W,et al. The aquaporin-4 water channel as a potential drug target in neurological disorders[J]. Expert Opin Ther Targets,2017,21(12):1161-1170. DOI:10.1080/14728222.2017.1398236. |
[22] | MADER S,BRIMBERG L. Aquaporin-4 water channel in the brain and its implication for health and disease[J]. Cells,2019,8(2):E90. DOI:10.3390/cells8020090. |
[23] | CAMPBELL B C V,DE SILVA D A,MACLEOD M R,et al. Ischaemic stroke[J]. Nat Rev Dis Primers,2019,5(1):70. DOI:10.1038/s41572-019-0118-8. |
[24] | LYU Z,CHAN Y,LI Q,et al. Destructive effects of pyroptosis on homeostasis of neuron survival associated with the dysfunctional BBB-Glymphatic system and Amyloid-Beta accumulation after cerebral ischemia/reperfusion in rats[J]. Neural Plast,2021,2021:4504363. DOI:10.1155/2021/4504363. |
[25] | BACK D B,CHOI B R,HAN J S,et al. Characterization of tauopathy in a rat model of post-stroke dementia combining acute infarct and chronic cerebral hypoperfusion[J]. Int J Mol Sci,2020,21(18):E6929. DOI:10.3390/ijms21186929. |
[26] | LUNDGAARD I,LU M L,YANG E,et al. Glymphatic clearance controls state-dependent changes in brain lactate concentration[J]. J Cereb Blood Flow Metab,2017,37(6):2112-2124. DOI:10.1177/0271678X16661202. |
[27] | TUO Q Z,LEI P,JACKMAN K A,et al. Tau-mediated iron export prevents ferroptotic damage after ischemic stroke[J]. Mol Psychiatry,2017,22(11):1520-1530. DOI:10.1038/mp.2017.171. |
[28] | IADECOLA C,BUCKWALTER M S,ANRATHER J. Immune responses to stroke:mechanisms,modulation,and therapeutic potential[J]. J Clin Invest,2020,130(6):2777-2788. DOI:10.1172/JCI135530. |
[29] | GABEREL T,GAKUBA C,GOULAY R,et al. Impaired glymphatic perfusion after strokes revealed by contrast-enhanced MRI:a new target for fibrinolysis?[J]. Stroke,2014,45(10):3092-3096. DOI:10.1161/STROKEAHA.114.006617. |
[30] | LV T,ZHAO B,HU Q,et al. The glymphatic system:a novel therapeutic target for stroke treatment[J]. Front Aging Neurosci,2021,13:689098. DOI:10.3389/fnagi.2021.689098. |
[31] | 唐超智,张玉玲. 胶质淋巴系统及相关脑疾病研究进展[J]. 河南师范大学学报:自然科学版,2021,49(1):87-92. DOI:10.16366/j.cnki.1000-2367.2021.01.013. |
[32] | ACHARIYAR T M,LI B M,PENG W G,et al. Glymphatic distribution of CSF-derived apoE into brain is isoform specific and suppressed during sleep deprivation[J]. Mol Neurodegener,2016,11(1):74. DOI:10.1186/s13024-016-0138-8. |
[33] | RANGROO THRANE V,THRANE A S,PLOG B A,et al. Paravascular microcirculation facilitates rapid lipid transport and astrocyte signaling in the brain[J]. Sci Rep,2013,3:2582. DOI:10.1038/srep02582. |
[34] | JESSEN N A,MUNK A S,LUNDGAARD I,et al. The glymphatic system:a beginner's guide[J]. Neurochem Res,2015,40(12):2583-2599. DOI:10.1007/s11064-015-1581-6. |
[35] | 中华医学会神经病学分会,中华医学会神经病学分会脑血管病学组. 中国急性缺血性脑卒中诊治指南2018[J]. 中华神经科杂志,2018,51(9):666-682. DOI:10.3760/cma.j.issn.1006-7876.2018.09.004. |
[36] | 樊文香. 缺血性脑卒中的机制研究进展[J]. 中国药科大学学报,2018,49(6):751-759. |
[37] | LIN L,HAO X,LI C,et al. Impaired glymphatic system in secondary degeneration areas after ischemic stroke in rats[J]. J Stroke Cerebrovasc Dis,2020,29(7):104828. DOI:10.1016/j.jstrokecerebrovasdis.2020.104828. |
[38] | VENKAT P,CHOPP M,ZACHAREK A,et al. White matter damage and glymphatic dysfunction in a model of vascular dementia in rats with no prior vascular pathologies[J]. Neurobiol Aging,2017,50: 96-106. DOI:10.1016/j.neurobiolaging.2016.11.002. |
[39] | 黄珊,张敏,黄宽宽,等. 血管周围间隙扩大与脑梗死患者中国缺血性脑卒中亚型分型及复发的相关性研究[J]. 中华老年心脑血管病杂志,2020,22(9):942-946. |
[40] | 欧茹,唐亚梅,李飞,等. 扩大的血管周围间隙与急性缺血性脑卒中患者神经功能恢复及生活质量的相关性研究[J]. 卒中与神经疾病,2018,25(3):256-259. |
[41] | MESTRE H,DU T,SWEENEY A M,et al. Cerebrospinal fluid influx drives acute ischemic tissue swelling[J]. Science,2020,367(6483):eaax7171. DOI:10.1126/science.aax7171. |
[42] | JI C H,YU X,XU W L,et al. The role of glymphatic system in the cerebral edema formation after ischemic stroke[J]. Exp Neurol,2021,340:113685. DOI:10.1016/j.expneurol.2021.113685. |
[43] | 周新建,赵金兵,余志强,等. 蛛网膜下腔出血后血肿代谢机制及治疗研究进展[J]. 临床神经外科杂志,2021,18(4):477-480. |
[44] | MACDONALD R L,SCHWEIZER T A. Spontaneous subarachnoid haemorrhage[J]. Lancet,2017,389(10069):655-666. DOI:10.1016/S0140-6736(16)30668-7. |
[45] | GOLANOV E V,BOVSHIK E I,WONG K K,et al. Subarachnoid hemorrhage - Induced block of cerebrospinal fluid flow:Role of brain coagulation factorⅢ(tissue factor)[J]. J Cereb Blood Flow Metab,2018,38(5):793-808. DOI:10.1177/0271678X17701157. |
[46] | PU T L,ZOU W Y,FENG W X,et al. Persistent malfunction of glymphatic and meningeal lymphatic drainage in a mouse model of subarachnoid hemorrhage[J]. Exp Neurobiol,2019,28(1):104-118. DOI:10.5607/en.2019.28.1.104. |
[47] | LIU E,PENG X,MA H,et al. The involvement of aquaporin-4 in the interstitial fluid drainage impairment following subarachnoid hemorrhage[J]. Front Aging Neurosci,2020,12:611494. DOI:10.3389/fnagi.2020.611494. |
[48] | LIU E,SUN L L,ZHANG Y X,et al. Aquaporin4 knockout aggravates early brain injury following subarachnoid hemorrhage through impairment of the glymphatic system in rat brain[J]. Acta Neurochir Suppl,2020,127:59-64. DOI:10.1007/978-3-030-04615-6_10. |
[49] | 中华医学会神经病学分会,中华医学会神经病学分会脑血管病学组. 中国脑出血诊治指南(2019)[J]. 中华神经科杂志,2019,52(12):994-1005. DOI:10.3760/cma.j.issn.1006-7876.2019.12.003. |
[50] | TSCHOE C,BUSHNELL C D,DUNCAN P W,et al. Neuroinflammation after intracerebral hemorrhage and potential therapeutic targets[J]. J Stroke,2020,22(1): 29-46. DOI:10.5853/jos.2019.02236. |
[51] | RAPOSO N,PLANTON M,PAYOUX P,et al. Enlarged perivascular spaces and florbetapir uptake in patients with intracerebral hemorrhage[J]. Eur J Nucl Med Mol Imaging,2019,46(11):2339-2347. DOI:10.1007/s00259-019-04441-1. |
[52] | KLEBE D,MCBRIDE D,KRAFFT P R,et al. Posthemorrhagic hydrocephalus development after germinal matrix hemorrhage:Established mechanisms and proposed pathways[J]. J Neurosci Res,2020,98(1):105-120. DOI:10.1002/jnr.24394. |
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