Literature DB >> 30954884

Vascular regeneration in adult mouse cochlea stimulated by VEGF-A165 and driven by NG2-derived cells ex vivo.

Xiaohan Wang1, Jinhui Zhang2, Guangshuai Li2, Na Sai2, Jiang Han2, Zhiqiang Hou2, Allan Kachelmeier2, Xiaorui Shi3.   

Abstract

Can damaged or degenerated vessels be regenerated in the ear? The question is clinically important, as disruption of cochlear blood flow is seen in a wide variety of hearing disorders, including in loud sound-induced hearing loss (endothelial injury), ageing-related hearing loss (lost vascular density), and genetic hearing loss (e.g., Norrie disease: strial avascularization). Progression in cochlear blood flow (CBF) pathology can parallel progression in hair cell and hearing loss. However, neither new vessel growth in the ear, nor the role of angiogenesis in hearing, have been investigated. In this study, we used an established ex vivo tissue explant model in conjunction with a matrigel matrix model to demonstrate for the first time that new vessels can be generated by activating a vascular endothelial growth factor (VEGF-A) signal. Most intriguingly, we found that the pattern of the newly formed vessels resembles the natural 'mesh pattern' of in situ strial vessels, with both lumen and expression of tight junctions. Sphigosine-1-phosphate (S1P) in synergy with VEGF-A control new vessel size and growth. Using transgenic neural/glial antigen 2 (NG2) fluorescent reporter mice, we have furthermore discovered that the progenitors of "de novo" strial vessels are NG2-derived cells. Taken together, our data demonstrates that damaged strial microvessels can be regenerated by reprogramming NG2-derived angiogenic cells. Restoration of the functional vasculature may be critical for recovery of vascular dysfunction related hearing loss.
Copyright © 2019 The Authors. Published by Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Angiogenesis; Mouse; Stria vascularis; VEGF-A(165)

Mesh:

Substances:

Year:  2019        PMID: 30954884      PMCID: PMC6526020          DOI: 10.1016/j.heares.2019.03.010

Source DB:  PubMed          Journal:  Hear Res        ISSN: 0378-5955            Impact factor:   3.208


  47 in total

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Review 3.  The role of pericytes in blood-vessel formation and maintenance.

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Review 4.  Regulation of vascular physiology and pathology by the S1P2 receptor subtype.

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Review 6.  Basic and therapeutic aspects of angiogenesis.

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8.  Regional blood flow in the rabbit cochlea.

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Journal:  Arch Otolaryngol       Date:  1984-05

9.  Vascular endothelial growth factor receptor-2 inhibition promotes cell death and limits endothelial cell proliferation in a neonatal rodent model of stroke.

Authors:  Janet Shimotake; Nikita Derugin; Michael Wendland; Zinaida S Vexler; Donna M Ferriero
Journal:  Stroke       Date:  2010-02       Impact factor: 7.914

10.  Pericytes regulate VEGF-induced endothelial sprouting through VEGFR1.

Authors:  Hanna M Eilken; Rodrigo Diéguez-Hurtado; Inga Schmidt; Masanori Nakayama; Hyun-Woo Jeong; Hendrik Arf; Susanne Adams; Napoleone Ferrara; Ralf H Adams
Journal:  Nat Commun       Date:  2017-11-17       Impact factor: 14.919

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Review 2.  Hearing Function, Degeneration, and Disease: Spotlight on the Stria Vascularis.

Authors:  Matsya R Thulasiram; Jacqueline M Ogier; Alain Dabdoub
Journal:  Front Cell Dev Biol       Date:  2022-03-04

3.  Integrative Functional Transcriptomic Analyses Implicate Shared Molecular Circuits in Sensorineural Hearing Loss.

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Journal:  Front Cell Neurosci       Date:  2022-03-14       Impact factor: 5.505

4.  VEGFA165 gene therapy ameliorates blood-labyrinth barrier breakdown and hearing loss.

Authors:  Jinhui Zhang; Zhiqiang Hou; Xiaohan Wang; Han Jiang; Lingling Neng; Yunpei Zhang; Qing Yu; George Burwood; Junha Song; Manfred Auer; Anders Fridberger; Michael Hoa; Xiaorui Shi
Journal:  JCI Insight       Date:  2021-04-22
  4 in total

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