The impact of neurovascular, blood-brain barrier, and glymphatic dysfunction in neurodegenerative and metabolic diseases

被引:51
作者
Braun, Molly [1 ,2 ]
Iliff, Jeffrey J. [1 ,2 ,3 ]
机构
[1] Univ Washington, Sch Med, Dept Psychiat & Behav Sci, Seattle, WA 98195 USA
[2] VA Puget Sound Hlth Care Syst, VISN Mental Illness Res Educ & Clin Ctr MIRECC 20, Seattle, WA 98108 USA
[3] Univ Washington, Sch Med, Dept Neurol, Seattle, WA 98195 USA
来源
METABOLIC AND BIOENERGETIC DRIVERS OF NEURODEGENERATIVE DISEASE: NEURODEGENERATIVE DISEASE RESEARCH AND COMMONALITIES WITH METABOLIC DISEASES | 2020年 / 154卷
关键词
CEREBRAL AMYLOID ANGIOPATHY; CEREBROSPINAL-FLUID; ALZHEIMERS-DISEASE; INTERSTITIAL FLUID; LYMPHATIC-SYSTEM; GLIAL REGULATION; MOUSE MODEL; CLEARANCE; FLOW; IMPAIRMENT;
D O I
10.1016/bs.irn.2020.02.006
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The cerebral vasculature serves as the crossroads of the CNS, supporting exchange of nutrients, metabolic wastes, solutes and cells between the compartments of the brain, including the blood, brain interstitium, and cerebrospinal fluid (CSF). The blood-brain barrier (BBB) regulates the entry and efflux of molecules into brain tissue. The cells of the neurovascular unit regulate cerebral blood flow, matching local metabolic demand to blood supply. The blood-CSF barrier at the choroid plexus secretes CSF, which supports the brain and provides a sink for interstitial solutes not cleared across the BBB. Recent studies have characterized the glymphatic system, a brain-wide network of perivascular spaces that supports CSF and interstitial fluid exchange and the clearance of interstitial solutes to the CSF. The critical role that these structures play in maintaining brain homeostasis is illustrated by the established and emerging roles that their dysfunctions play in the development of neurodegenerative diseases, such as Alzheimer's disease (AD). Loss of BBB and blood-CSF barrier function is reported both in rodent models of AD, and in human AD subjects. Cerebrovascular dysfunction and ischemic injury are well established contributors to both vascular dementia and to a large proportion of cases of sporadic AD. In animal models, the slowed glymphatic clearance of interstitial proteins, such as amyloid beta or tau, are proposed to contribute to the development of neurodegenerative diseases, including AD. In total, these findings suggest that cellular and molecular changes occurring within and around the cerebral vasculature are among the key drivers of neurodegenerative disease pathogenesis.
引用
收藏
页码:413 / 436
页数:24
相关论文
共 97 条
[11]   Pericytes and Neurovascular Function in the Healthy and Diseased Brain [J].
Brown, Lachlan S. ;
Foster, Catherine G. ;
Courtney, Jo-Maree ;
King, Natalie E. ;
Howells, David W. ;
Sutherland, Brad A. .
FRONTIERS IN CELLULAR NEUROSCIENCE, 2019, 13
[12]   Dementia: An Evidence-Based Review of Common Presentations and Family-Based Interventions [J].
Buffington, Angela L. H. ;
Lipski, Dorothy M. ;
Westfall, Erin .
JOURNAL OF THE AMERICAN OSTEOPATHIC ASSOCIATION, 2013, 113 (10) :768-775
[13]   Metabolic Dysfunction in Alzheimer's Disease and Related Neurodegenerative Disorders [J].
Cai, Huan ;
Cong, Wei-na ;
Ji, Sunggoan ;
Rothman, Sarah ;
Maudsley, Stuart ;
Martin, Bronwen .
CURRENT ALZHEIMER RESEARCH, 2012, 9 (01) :5-17
[14]   Solutes, but not cells, drain from the brain parenchyma along basement membranes of capillaries and arteries: significance for cerebral amyloid angiopathy and neuroimmunology [J].
Carare, R. O. ;
Bernardes-Silva, M. ;
Newman, T. A. ;
Page, A. M. ;
Nicoll, J. A. R. ;
Perry, V. H. ;
Weller, R. O. .
NEUROPATHOLOGY AND APPLIED NEUROBIOLOGY, 2008, 34 (02) :131-144
[15]   Blood-Brain Barrier Pathophysiology in Traumatic Brain Injury [J].
Chodobski, Adam ;
Zink, Brian J. ;
Szmydynger-Chodobska, Joanna .
TRANSLATIONAL STROKE RESEARCH, 2011, 2 (04) :492-516
[16]   EFFLUX OF RADIOLABELED POLYETHYLENE GLYCOLS AND ALBUMIN FROM RAT-BRAIN [J].
CSERR, HF ;
COOPER, DN ;
SURI, PK ;
PATLAK, CS .
AMERICAN JOURNAL OF PHYSIOLOGY, 1981, 240 (04) :F319-F328
[17]   Cerebral perfusion alterations in type 2 diabetes and its relation to insulin resistance and cognitive dysfunction [J].
Cui, Ying ;
Liang, Xia ;
Gu, Hong ;
Hu, Yuzheng ;
Zhao, Zhen ;
Yang, Xiang-Yu ;
Qian, Cheng ;
Yang, Yihong ;
Teng, Gao-Jun .
BRAIN IMAGING AND BEHAVIOR, 2017, 11 (05) :1248-1257
[18]   The Meningeal Lymphatic System: A New Player in Neurophysiology [J].
Da Mesquita, Sandro ;
Fu, Zhongxiao ;
Kipnis, Jonathan .
NEURON, 2018, 100 (02) :375-388
[19]   Functional aspects of meningeal lymphatics in ageing and Alzheimer's disease [J].
Da Mesquita, Sandro ;
Louveau, Antoine ;
Vaccari, Andrea ;
Smirnov, Igor ;
Cornelison, R. Chase ;
Kingsmore, Kathryn M. ;
Contarino, Christian ;
Onengut-Gumuscu, Suna ;
Farber, Emily ;
Raper, Daniel ;
Viar, Kenneth E. ;
Powell, Romie D. ;
Baker, Wendy ;
Dabhi, Nisha ;
Bai, Robin ;
Cao, Rui ;
Hu, Song ;
Rich, Stephen S. ;
Munson, Jennifer M. ;
Lopes, M. Beatriz ;
Overall, Christopher C. ;
Acton, Scott T. ;
Kipnis, Jonathan .
NATURE, 2018, 560 (7717) :185-+
[20]   The Blood-Brain Barrier [J].
Daneman, Richard ;
Prat, Alexandre .
COLD SPRING HARBOR PERSPECTIVES IN BIOLOGY, 2015, 7 (01)