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Aberrant Neurogliovascular Unit Dynamics in Cerebral Small Vessel Disease: A Rheological Clue to Vascular Parkinsonism

The distinctive anatomical assemble and functionally discrete multicellular cerebrovasculature dynamics confer varying rheological and blood–brain barrier permeabilities to preserve the integrity of cerebral white matter and its neural microenvironment. This homeostasis intricately involves the glym...

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Autores principales: Che Mohd Nassir, Che Mohd Nasril, Damodaran, Thenmoly, Yusof, Siti R., Norazit, Anwar, Chilla, Geetha, Huen, Isaac, K. N., Bhanu Prakash, Mohamed Ibrahim, Norlinah, Mustapha, Muzaimi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8398765/
https://www.ncbi.nlm.nih.gov/pubmed/34452169
http://dx.doi.org/10.3390/pharmaceutics13081207
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author Che Mohd Nassir, Che Mohd Nasril
Damodaran, Thenmoly
Yusof, Siti R.
Norazit, Anwar
Chilla, Geetha
Huen, Isaac
K. N., Bhanu Prakash
Mohamed Ibrahim, Norlinah
Mustapha, Muzaimi
author_facet Che Mohd Nassir, Che Mohd Nasril
Damodaran, Thenmoly
Yusof, Siti R.
Norazit, Anwar
Chilla, Geetha
Huen, Isaac
K. N., Bhanu Prakash
Mohamed Ibrahim, Norlinah
Mustapha, Muzaimi
author_sort Che Mohd Nassir, Che Mohd Nasril
collection PubMed
description The distinctive anatomical assemble and functionally discrete multicellular cerebrovasculature dynamics confer varying rheological and blood–brain barrier permeabilities to preserve the integrity of cerebral white matter and its neural microenvironment. This homeostasis intricately involves the glymphatic system that manages the flow of interstitial solutes, metabolic waste, and clearance through the venous circulation. As a physiologically integrated neurogliovascular unit (NGVU) serving a particularly vulnerable cerebral white matter (from hypoxia, metabolic insults, infection, and inflammation), a likely insidious process over a lifetime could inflict microenvironment damages that may lead to pathological conditions. Two such conditions, cerebral small vessel disease (CSVD) and vascular parkinsonism (VaP), with poorly understood pathomechanisms, are frequently linked to this brain-wide NGVU. VaP is widely regarded as an atypical parkinsonism, described by cardinal motor manifestations and the presence of cerebrovascular disease, particularly white matter hyperintensities (WMHs) in the basal ganglia and subcortical region. WMHs, in turn, are a recognised imaging spectrum of CSVD manifestations, and in relation to disrupted NGVU, also include enlarged perivascular spaces. Here, in this narrative review, we present and discuss on recent findings that argue for plausible clues between CSVD and VaP by focusing on aberrant multicellular dynamics of a unique integrated NGVU—a crossroad of the immune–vascular–nervous system—which may also extend fresher insights into the elusive interplay between cerebral microvasculature and neurodegeneration, and the potential therapeutic targets.
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spelling pubmed-83987652021-08-29 Aberrant Neurogliovascular Unit Dynamics in Cerebral Small Vessel Disease: A Rheological Clue to Vascular Parkinsonism Che Mohd Nassir, Che Mohd Nasril Damodaran, Thenmoly Yusof, Siti R. Norazit, Anwar Chilla, Geetha Huen, Isaac K. N., Bhanu Prakash Mohamed Ibrahim, Norlinah Mustapha, Muzaimi Pharmaceutics Review The distinctive anatomical assemble and functionally discrete multicellular cerebrovasculature dynamics confer varying rheological and blood–brain barrier permeabilities to preserve the integrity of cerebral white matter and its neural microenvironment. This homeostasis intricately involves the glymphatic system that manages the flow of interstitial solutes, metabolic waste, and clearance through the venous circulation. As a physiologically integrated neurogliovascular unit (NGVU) serving a particularly vulnerable cerebral white matter (from hypoxia, metabolic insults, infection, and inflammation), a likely insidious process over a lifetime could inflict microenvironment damages that may lead to pathological conditions. Two such conditions, cerebral small vessel disease (CSVD) and vascular parkinsonism (VaP), with poorly understood pathomechanisms, are frequently linked to this brain-wide NGVU. VaP is widely regarded as an atypical parkinsonism, described by cardinal motor manifestations and the presence of cerebrovascular disease, particularly white matter hyperintensities (WMHs) in the basal ganglia and subcortical region. WMHs, in turn, are a recognised imaging spectrum of CSVD manifestations, and in relation to disrupted NGVU, also include enlarged perivascular spaces. Here, in this narrative review, we present and discuss on recent findings that argue for plausible clues between CSVD and VaP by focusing on aberrant multicellular dynamics of a unique integrated NGVU—a crossroad of the immune–vascular–nervous system—which may also extend fresher insights into the elusive interplay between cerebral microvasculature and neurodegeneration, and the potential therapeutic targets. MDPI 2021-08-05 /pmc/articles/PMC8398765/ /pubmed/34452169 http://dx.doi.org/10.3390/pharmaceutics13081207 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Che Mohd Nassir, Che Mohd Nasril
Damodaran, Thenmoly
Yusof, Siti R.
Norazit, Anwar
Chilla, Geetha
Huen, Isaac
K. N., Bhanu Prakash
Mohamed Ibrahim, Norlinah
Mustapha, Muzaimi
Aberrant Neurogliovascular Unit Dynamics in Cerebral Small Vessel Disease: A Rheological Clue to Vascular Parkinsonism
title Aberrant Neurogliovascular Unit Dynamics in Cerebral Small Vessel Disease: A Rheological Clue to Vascular Parkinsonism
title_full Aberrant Neurogliovascular Unit Dynamics in Cerebral Small Vessel Disease: A Rheological Clue to Vascular Parkinsonism
title_fullStr Aberrant Neurogliovascular Unit Dynamics in Cerebral Small Vessel Disease: A Rheological Clue to Vascular Parkinsonism
title_full_unstemmed Aberrant Neurogliovascular Unit Dynamics in Cerebral Small Vessel Disease: A Rheological Clue to Vascular Parkinsonism
title_short Aberrant Neurogliovascular Unit Dynamics in Cerebral Small Vessel Disease: A Rheological Clue to Vascular Parkinsonism
title_sort aberrant neurogliovascular unit dynamics in cerebral small vessel disease: a rheological clue to vascular parkinsonism
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8398765/
https://www.ncbi.nlm.nih.gov/pubmed/34452169
http://dx.doi.org/10.3390/pharmaceutics13081207
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