Elevated PDGF‐BB from Bone Impairs Hippocampal Vasculature by Inducing PDGFRβ Shedding from Pericytes

Author:

Liu Guanqiao1,Wang Jiekang1,Wei Zhiliang2,Fang Ching‐Lien1,Shen Ke1,Qian Cheng1,Qi Cheng1,Li Tong3,Gao Peisong4,Wong Philip C.35,Lu Hanzhang2,Cao Xu1,Wan Mei1ORCID

Affiliation:

1. Department of Orthopaedic Surgery Johns Hopkins University School of Medicine Ross Building, Room 232, 720 Rutland Avenue Baltimore MD 21205 USA

2. The Russell H. Morgan Department of Radiology and Radiological Science The Johns Hopkins University School of Medicine Baltimore MD 21205 USA

3. Department of Pathology Johns Hopkins University School of Medicine Baltimore MD 21205 USA

4. Division of Allergy and Clinical Immunology Johns Hopkins University School of Medicine Baltimore MD 21224 USA

5. Department of Neuroscience Johns Hopkins University School of Medicine Baltimore MD 21205 USA

Abstract

AbstractEvidence suggests a unique association between bone aging and neurodegenerative/cerebrovascular disorders. However, the mechanisms underlying bone‐brain interplay remain elusive. Here platelet‐derived growth factor‐BB (PDGF‐BB) produced by preosteoclasts in bone is reported to promote age‐associated hippocampal vascular impairment. Aberrantly elevated circulating PDGF‐BB in aged mice and high‐fat diet (HFD)‐challenged mice correlates with capillary reduction, pericyte loss, and increased blood‐brain barrier (BBB) permeability in their hippocampus. Preosteoclast‐specific Pdgfb transgenic mice with markedly high plasma PDGF‐BB concentration faithfully recapitulate the age‐associated hippocampal BBB impairment and cognitive decline. Conversely, preosteoclast‐specific Pdgfb knockout mice have attenuated hippocampal BBB impairment in aged mice or HFD‐challenged mice. Persistent exposure of brain pericytes to high concentrations of PDGF‐BB upregulates matrix metalloproteinase 14 (MMP14), which promotes ectodomain shedding of PDGF receptor β (PDGFRβ) from pericyte surface. MMP inhibitor treatment alleviates hippocampal pericyte loss and capillary reduction in the conditional Pdgfb transgenic mice and antagonizes BBB leakage in aged mice. The findings establish the role of bone‐derived PDGF‐BB in mediating hippocampal BBB disruption and identify the ligand‐induced PDGFRβ shedding as a feedback mechanism for age‐associated PDGFRβ downregulation and the consequent pericyte loss.

Funder

National Institutes of Health

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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