Literature DB >> 30306658

Loss of perivascular aquaporin-4 in idiopathic normal pressure hydrocephalus.

Md Mahdi Hasan-Olive1,2, Rune Enger3,4, Hans-Arne Hansson5, Erlend A Nagelhus3,4, Per Kristian Eide1,2.   

Abstract

Idiopathic normal pressure hydrocephalus (iNPH) is a subtype of dementia that may be successfully treated with cerebrospinal fluid (CSF) diversion. Recently, magnetic resonance imaging (MRI) using a MRI contrast agent as a CSF tracer revealed impaired clearance of the CSF tracer from various brain regions such as the entorhinal cortex of iNPH patients. Hampered clearance of waste solutes, for example, soluble amyloid-β, may underlie neurodegeneration and dementia in iNPH. The goal of the present study was to explore whether iNPH is associated with altered subcellular distribution of aquaporin-4 (AQP4) water channels, which is reported to facilitate CSF circulation and paravascular glymphatic drainage of metabolites from the brain parenchyma. Cortical brain biopsies of 30 iNPH patients and 12 reference individuals were subjected to AQP4 immunogold cytochemistry. Electron microscopy revealed significantly reduced density of AQP4 water channels in astrocytic endfoot membranes along cortical microvessels in patients with iNPH versus reference subjects. There was a significant positive correlation between density of AQP4 toward endothelial cells (perivascular) and toward parenchyma, but the reduced density of AQP4 toward parenchyma was not significant in iNPH. We conclude that perivascular AQP4 expression is attenuated in iNPH, potentially contributing to impaired glymphatic circulation, and waste clearance, and subsequent neurodegeneration. Hence, restoring normal perivascular AQP4 distribution may emerge as a novel treatment strategy for iNPH.
© 2018 Wiley Periodicals, Inc.

Entities:  

Keywords:  aquaporin-4; astrocytes; cerebrospinal fluid; glia; glymphatic; idiopathic normal pressure hydrocephalus; immunogold electron microscopy

Mesh:

Substances:

Year:  2018        PMID: 30306658     DOI: 10.1002/glia.23528

Source DB:  PubMed          Journal:  Glia        ISSN: 0894-1491            Impact factor:   7.452


  32 in total

Review 1.  Normal pressure hydrocephalus-an overview of pathophysiological mechanisms and diagnostic procedures.

Authors:  Petr Skalický; Arnošt Mládek; Aleš Vlasák; Patricia De Lacy; Vladimír Beneš; Ondřej Bradáč
Journal:  Neurosurg Rev       Date:  2019-11-08       Impact factor: 3.042

2.  NLRP3 inflammasome-mediated choroid plexus hypersecretion contributes to hydrocephalus after intraventricular hemorrhage via phosphorylated NKCC1 channels.

Authors:  Zhaoqi Zhang; Qiang Tan; Peiwen Guo; Suna Huang; Zhengcai Jia; Xin Liu; Hua Feng; Yujie Chen
Journal:  J Neuroinflammation       Date:  2022-06-21       Impact factor: 9.587

Review 3.  The meningeal lymphatic vessels and the glymphatic system: Potential therapeutic targets in neurological disorders.

Authors:  Gaowei Li; Yi Cao; Xin Tang; Jianhan Huang; Linjun Cai; Liangxue Zhou
Journal:  J Cereb Blood Flow Metab       Date:  2022-04-28       Impact factor: 6.960

4.  Neuronal Aquaporin 1 Inhibits Amyloidogenesis by Suppressing the Interaction Between Beta-Secretase and Amyloid Precursor Protein.

Authors:  Jinsu Park; Meenu Madan; Srinivasulu Chigurupati; Seung Hyun Baek; Yoonsuk Cho; Mohamed R Mughal; Amin Yu; Sic L Chan; Jogi V Pattisapu; Mark P Mattson; Dong-Gyu Jo
Journal:  J Gerontol A Biol Sci Med Sci       Date:  2021-01-01       Impact factor: 6.053

Review 5.  Glymphatic System Impairment in Alzheimer's Disease and Idiopathic Normal Pressure Hydrocephalus.

Authors:  Benjamin C Reeves; Jason K Karimy; Adam J Kundishora; Humberto Mestre; H Mert Cerci; Charles Matouk; Seth L Alper; Iben Lundgaard; Maiken Nedergaard; Kristopher T Kahle
Journal:  Trends Mol Med       Date:  2020-01-18       Impact factor: 11.951

6.  Lumbar and ventricular CSF concentrations of extracellular matrix proteins before and after shunt surgery in idiopathic normal pressure hydrocephalus.

Authors:  Karolina Minta; Anna Jeppsson; Gunnar Brinkmalm; Erik Portelius; Henrik Zetterberg; Kaj Blennow; Mats Tullberg; Ulf Andreasson
Journal:  Fluids Barriers CNS       Date:  2021-05-13

7.  Intrathecal Contrast-Enhanced Magnetic Resonance Imaging of Cerebrospinal Fluid Dynamics and Glymphatic Enhancement in Idiopathic Normal Pressure Hydrocephalus.

Authors:  Per Kristian Eide; Aslan Lashkarivand; Åsmund Aleksander Hagen-Kersten; Øivind Gjertsen; Bård Nedregaard; Ruth Sletteberg; Grethe Løvland; Svein Are Sirirud Vatnehol; Are Hugo Pripp; Lars Magnus Valnes; Geir Ringstad
Journal:  Front Neurol       Date:  2022-04-06       Impact factor: 4.086

8.  Dopaminergic Degeneration and Small Vessel Disease in Patients with Normal Pressure Hydrocephalus Who Underwent Shunt Surgery.

Authors:  Tze-Wei Chang; Pao-Hui Tseng; Yi-Cheng Wang; Guo-Fang Tseng; Tsung-Lang Chiu; Shinn-Zong Lin; Sheng-Tzung Tsai
Journal:  J Clin Med       Date:  2020-04-11       Impact factor: 4.241

9.  Mechanisms behind altered pulsatile intracranial pressure in idiopathic normal pressure hydrocephalus: role of vascular pulsatility and systemic hemodynamic variables.

Authors:  Karen Brastad Evensen; Per Kristian Eide
Journal:  Acta Neurochir (Wien)       Date:  2020-06-12       Impact factor: 2.216

Review 10.  Perivascular spaces in the brain: anatomy, physiology and pathology.

Authors:  Joanna M Wardlaw; Helene Benveniste; Maiken Nedergaard; Berislav V Zlokovic; Humberto Mestre; Hedok Lee; Fergus N Doubal; Rosalind Brown; Joel Ramirez; Bradley J MacIntosh; Allen Tannenbaum; Lucia Ballerini; Ravi L Rungta; Davide Boido; Melanie Sweeney; Axel Montagne; Serge Charpak; Anne Joutel; Kenneth J Smith; Sandra E Black
Journal:  Nat Rev Neurol       Date:  2020-02-24       Impact factor: 42.937

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