Cargando…

Pericyte‐derived bone morphogenetic protein 4 underlies white matter damage after chronic hypoperfusion

Subcortical small vessel disease (SVD) is characterized by white matter damage resulting from arteriolosclerosis and chronic hypoperfusion. Transforming growth factor beta 1 (TGFB1) is dysregulated in the hereditary SVD, CARASIL (cerebral autosomal recessive arteriopathy with subcortical infarcts an...

Descripción completa

Detalles Bibliográficos
Autores principales: Uemura, Maiko T., Ihara, Masafumi, Maki, Takakuni, Nakagomi, Takayuki, Kaji, Seiji, Uemura, Kengo, Matsuyama, Tomohiro, Kalaria, Raj N., Kinoshita, Ayae, Takahashi, Ryosuke
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6099372/
https://www.ncbi.nlm.nih.gov/pubmed/28470822
http://dx.doi.org/10.1111/bpa.12523
_version_ 1783348650200530944
author Uemura, Maiko T.
Ihara, Masafumi
Maki, Takakuni
Nakagomi, Takayuki
Kaji, Seiji
Uemura, Kengo
Matsuyama, Tomohiro
Kalaria, Raj N.
Kinoshita, Ayae
Takahashi, Ryosuke
author_facet Uemura, Maiko T.
Ihara, Masafumi
Maki, Takakuni
Nakagomi, Takayuki
Kaji, Seiji
Uemura, Kengo
Matsuyama, Tomohiro
Kalaria, Raj N.
Kinoshita, Ayae
Takahashi, Ryosuke
author_sort Uemura, Maiko T.
collection PubMed
description Subcortical small vessel disease (SVD) is characterized by white matter damage resulting from arteriolosclerosis and chronic hypoperfusion. Transforming growth factor beta 1 (TGFB1) is dysregulated in the hereditary SVD, CARASIL (cerebral autosomal recessive arteriopathy with subcortical infarcts and leukoencephalopathy). However, very little is known about the role of the largest group in the TGFB superfamily – the bone morphogenetic proteins (BMPs) – in SVD pathogenesis. The aim of this study was to characterize signaling abnormalities of BMPs in sporadic SVD. We examined immunostaining of TGFB1 and BMPs (BMP2/BMP4/BMP6/BMP7/BMP9) in a total of 19 post‐mortem human brain samples as follows: 7 SVD patients (4 males, 76–90 years old); 6 Alzheimer's disease (AD) patients (2 males, 67–93 years old) and 6 age‐matched disease controls (3 males, 68–78 years old). We subsequently investigated the effects of oxygen–glucose deprivation and BMP4 addition on cultured cells. Furthermore, adult mice were subjected to chronic cerebral hypoperfusion using bilateral common carotid artery stenosis, followed by continuous intracerebroventricular infusion of the BMP antagonist, noggin. In the SVD cases, BMP4 was highly expressed in white matter pericytes. Oxygen–glucose deprivation induced BMP4 expression in cultured pericytes in vitro. Recombinant BMP4 increased the number of cultured endothelial cells and pericytes and converted oligodendrocyte precursor cells into astrocytes. Chronic cerebral hypoperfusion in vivo also upregulated BMP4 with concomitant white matter astrogliogenesis and reduced oligodendrocyte lineage cells, both of which were suppressed by intracerebroventricular noggin infusion. Our findings suggest ischemic white matter damage evolves in parallel with BMP4 upregulation in pericytes. BMP4 promotes angiogenesis, but induces astrogliogenesis at the expense of oligodendrocyte precursor cell proliferation and maturation, thereby aggravating white matter damage. This may explain white matter vulnerability to chronic hypoperfusion. The regulation of BMP4 signaling is a potential therapeutic strategy for treating SVD.
format Online
Article
Text
id pubmed-6099372
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-60993722018-08-24 Pericyte‐derived bone morphogenetic protein 4 underlies white matter damage after chronic hypoperfusion Uemura, Maiko T. Ihara, Masafumi Maki, Takakuni Nakagomi, Takayuki Kaji, Seiji Uemura, Kengo Matsuyama, Tomohiro Kalaria, Raj N. Kinoshita, Ayae Takahashi, Ryosuke Brain Pathol Research Articles Subcortical small vessel disease (SVD) is characterized by white matter damage resulting from arteriolosclerosis and chronic hypoperfusion. Transforming growth factor beta 1 (TGFB1) is dysregulated in the hereditary SVD, CARASIL (cerebral autosomal recessive arteriopathy with subcortical infarcts and leukoencephalopathy). However, very little is known about the role of the largest group in the TGFB superfamily – the bone morphogenetic proteins (BMPs) – in SVD pathogenesis. The aim of this study was to characterize signaling abnormalities of BMPs in sporadic SVD. We examined immunostaining of TGFB1 and BMPs (BMP2/BMP4/BMP6/BMP7/BMP9) in a total of 19 post‐mortem human brain samples as follows: 7 SVD patients (4 males, 76–90 years old); 6 Alzheimer's disease (AD) patients (2 males, 67–93 years old) and 6 age‐matched disease controls (3 males, 68–78 years old). We subsequently investigated the effects of oxygen–glucose deprivation and BMP4 addition on cultured cells. Furthermore, adult mice were subjected to chronic cerebral hypoperfusion using bilateral common carotid artery stenosis, followed by continuous intracerebroventricular infusion of the BMP antagonist, noggin. In the SVD cases, BMP4 was highly expressed in white matter pericytes. Oxygen–glucose deprivation induced BMP4 expression in cultured pericytes in vitro. Recombinant BMP4 increased the number of cultured endothelial cells and pericytes and converted oligodendrocyte precursor cells into astrocytes. Chronic cerebral hypoperfusion in vivo also upregulated BMP4 with concomitant white matter astrogliogenesis and reduced oligodendrocyte lineage cells, both of which were suppressed by intracerebroventricular noggin infusion. Our findings suggest ischemic white matter damage evolves in parallel with BMP4 upregulation in pericytes. BMP4 promotes angiogenesis, but induces astrogliogenesis at the expense of oligodendrocyte precursor cell proliferation and maturation, thereby aggravating white matter damage. This may explain white matter vulnerability to chronic hypoperfusion. The regulation of BMP4 signaling is a potential therapeutic strategy for treating SVD. John Wiley and Sons Inc. 2017-05-31 /pmc/articles/PMC6099372/ /pubmed/28470822 http://dx.doi.org/10.1111/bpa.12523 Text en © 2017 The Authors. Brain Pathology published by John Wiley & Sons Ltd on behalf of International Society of Neuropathology https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Uemura, Maiko T.
Ihara, Masafumi
Maki, Takakuni
Nakagomi, Takayuki
Kaji, Seiji
Uemura, Kengo
Matsuyama, Tomohiro
Kalaria, Raj N.
Kinoshita, Ayae
Takahashi, Ryosuke
Pericyte‐derived bone morphogenetic protein 4 underlies white matter damage after chronic hypoperfusion
title Pericyte‐derived bone morphogenetic protein 4 underlies white matter damage after chronic hypoperfusion
title_full Pericyte‐derived bone morphogenetic protein 4 underlies white matter damage after chronic hypoperfusion
title_fullStr Pericyte‐derived bone morphogenetic protein 4 underlies white matter damage after chronic hypoperfusion
title_full_unstemmed Pericyte‐derived bone morphogenetic protein 4 underlies white matter damage after chronic hypoperfusion
title_short Pericyte‐derived bone morphogenetic protein 4 underlies white matter damage after chronic hypoperfusion
title_sort pericyte‐derived bone morphogenetic protein 4 underlies white matter damage after chronic hypoperfusion
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6099372/
https://www.ncbi.nlm.nih.gov/pubmed/28470822
http://dx.doi.org/10.1111/bpa.12523
work_keys_str_mv AT uemuramaikot pericytederivedbonemorphogeneticprotein4underlieswhitematterdamageafterchronichypoperfusion
AT iharamasafumi pericytederivedbonemorphogeneticprotein4underlieswhitematterdamageafterchronichypoperfusion
AT makitakakuni pericytederivedbonemorphogeneticprotein4underlieswhitematterdamageafterchronichypoperfusion
AT nakagomitakayuki pericytederivedbonemorphogeneticprotein4underlieswhitematterdamageafterchronichypoperfusion
AT kajiseiji pericytederivedbonemorphogeneticprotein4underlieswhitematterdamageafterchronichypoperfusion
AT uemurakengo pericytederivedbonemorphogeneticprotein4underlieswhitematterdamageafterchronichypoperfusion
AT matsuyamatomohiro pericytederivedbonemorphogeneticprotein4underlieswhitematterdamageafterchronichypoperfusion
AT kalariarajn pericytederivedbonemorphogeneticprotein4underlieswhitematterdamageafterchronichypoperfusion
AT kinoshitaayae pericytederivedbonemorphogeneticprotein4underlieswhitematterdamageafterchronichypoperfusion
AT takahashiryosuke pericytederivedbonemorphogeneticprotein4underlieswhitematterdamageafterchronichypoperfusion