Cargando…

Inhibition of SDF-1/CXCR4 Axis to Alleviate Abnormal Bone Formation and Angiogenesis Could Improve the Subchondral Bone Microenvironment in Osteoarthritis

The pathogenesis of the osteoarthritis (OA) is complex. Abnormal subchondral bone metabolism is an important cause of this disease. Further understanding on the pathology of the subchondral bone in OA may provide a new therapy. This research is about to investigate the role of SDF-1 in the subchondr...

Descripción completa

Detalles Bibliográficos
Autores principales: Qin, Hanjun, Zhao, Xingqi, Hu, Yan Jun, Wang, Shengnan, Ma, Yunfei, He, Siying, Shen, Ke, Wan, Haoyang, Cui, Zhuang, Yu, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179778/
https://www.ncbi.nlm.nih.gov/pubmed/34136574
http://dx.doi.org/10.1155/2021/8852574
_version_ 1783703859946848256
author Qin, Hanjun
Zhao, Xingqi
Hu, Yan Jun
Wang, Shengnan
Ma, Yunfei
He, Siying
Shen, Ke
Wan, Haoyang
Cui, Zhuang
Yu, Bin
author_facet Qin, Hanjun
Zhao, Xingqi
Hu, Yan Jun
Wang, Shengnan
Ma, Yunfei
He, Siying
Shen, Ke
Wan, Haoyang
Cui, Zhuang
Yu, Bin
author_sort Qin, Hanjun
collection PubMed
description The pathogenesis of the osteoarthritis (OA) is complex. Abnormal subchondral bone metabolism is an important cause of this disease. Further understanding on the pathology of the subchondral bone in OA may provide a new therapy. This research is about to investigate the role of SDF-1 in the subchondral bone during the pathological process of OA. In vitro, Transwell was used to test the migratory ability of bone marrow mesenchymal stem cells (BMSCs) and human umbilical vein endothelial cells (HUVECs). Western blot presented the protein level after SDF-1 treatment in BMSCs and HUVESs. Alizarin red was used to assess the ability of osteogenic differentiation. To inhibit SDF-1 signaling pathway in vivo, AMD3100 (SDF-1 receptor blocker) was continuously delivered via miniosmotic pump for 4 weeks in mice after performing anterior cruciate ligament transaction surgery. Micro-CT, histology staining, immunofluorescence, immunohistochemistry, and TRAP staining were used to assess the role of SDF-1 on osteogenesis and angiogenesis in the subchondral bone. Our results showed that SDF-1 could recruit BMSCs, activate the p-ERK pathway, and enhance osteogenic differentiation. SDF-1 promoted the ability of proliferation, migration and tube formation of HUVECs by activating the ERK and AKT signaling pathways. In an animal study, inhibition of SDF-1/CXCR4 axis could significantly reduce subchondral osteogenesis differentiation and H-type vessel formation. Furthermore, the AMD3100-treated group showed less cartilage destruction and bone resorption. Our research shows that SDF-1 alters the microenvironment of the subchondral bone by promoting osteoid islet formation and abnormal H-type angiogenesis in the subchondral bone, resulting in articular cartilage degeneration.
format Online
Article
Text
id pubmed-8179778
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-81797782021-06-15 Inhibition of SDF-1/CXCR4 Axis to Alleviate Abnormal Bone Formation and Angiogenesis Could Improve the Subchondral Bone Microenvironment in Osteoarthritis Qin, Hanjun Zhao, Xingqi Hu, Yan Jun Wang, Shengnan Ma, Yunfei He, Siying Shen, Ke Wan, Haoyang Cui, Zhuang Yu, Bin Biomed Res Int Research Article The pathogenesis of the osteoarthritis (OA) is complex. Abnormal subchondral bone metabolism is an important cause of this disease. Further understanding on the pathology of the subchondral bone in OA may provide a new therapy. This research is about to investigate the role of SDF-1 in the subchondral bone during the pathological process of OA. In vitro, Transwell was used to test the migratory ability of bone marrow mesenchymal stem cells (BMSCs) and human umbilical vein endothelial cells (HUVECs). Western blot presented the protein level after SDF-1 treatment in BMSCs and HUVESs. Alizarin red was used to assess the ability of osteogenic differentiation. To inhibit SDF-1 signaling pathway in vivo, AMD3100 (SDF-1 receptor blocker) was continuously delivered via miniosmotic pump for 4 weeks in mice after performing anterior cruciate ligament transaction surgery. Micro-CT, histology staining, immunofluorescence, immunohistochemistry, and TRAP staining were used to assess the role of SDF-1 on osteogenesis and angiogenesis in the subchondral bone. Our results showed that SDF-1 could recruit BMSCs, activate the p-ERK pathway, and enhance osteogenic differentiation. SDF-1 promoted the ability of proliferation, migration and tube formation of HUVECs by activating the ERK and AKT signaling pathways. In an animal study, inhibition of SDF-1/CXCR4 axis could significantly reduce subchondral osteogenesis differentiation and H-type vessel formation. Furthermore, the AMD3100-treated group showed less cartilage destruction and bone resorption. Our research shows that SDF-1 alters the microenvironment of the subchondral bone by promoting osteoid islet formation and abnormal H-type angiogenesis in the subchondral bone, resulting in articular cartilage degeneration. Hindawi 2021-05-28 /pmc/articles/PMC8179778/ /pubmed/34136574 http://dx.doi.org/10.1155/2021/8852574 Text en Copyright © 2021 Hanjun Qin et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Qin, Hanjun
Zhao, Xingqi
Hu, Yan Jun
Wang, Shengnan
Ma, Yunfei
He, Siying
Shen, Ke
Wan, Haoyang
Cui, Zhuang
Yu, Bin
Inhibition of SDF-1/CXCR4 Axis to Alleviate Abnormal Bone Formation and Angiogenesis Could Improve the Subchondral Bone Microenvironment in Osteoarthritis
title Inhibition of SDF-1/CXCR4 Axis to Alleviate Abnormal Bone Formation and Angiogenesis Could Improve the Subchondral Bone Microenvironment in Osteoarthritis
title_full Inhibition of SDF-1/CXCR4 Axis to Alleviate Abnormal Bone Formation and Angiogenesis Could Improve the Subchondral Bone Microenvironment in Osteoarthritis
title_fullStr Inhibition of SDF-1/CXCR4 Axis to Alleviate Abnormal Bone Formation and Angiogenesis Could Improve the Subchondral Bone Microenvironment in Osteoarthritis
title_full_unstemmed Inhibition of SDF-1/CXCR4 Axis to Alleviate Abnormal Bone Formation and Angiogenesis Could Improve the Subchondral Bone Microenvironment in Osteoarthritis
title_short Inhibition of SDF-1/CXCR4 Axis to Alleviate Abnormal Bone Formation and Angiogenesis Could Improve the Subchondral Bone Microenvironment in Osteoarthritis
title_sort inhibition of sdf-1/cxcr4 axis to alleviate abnormal bone formation and angiogenesis could improve the subchondral bone microenvironment in osteoarthritis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179778/
https://www.ncbi.nlm.nih.gov/pubmed/34136574
http://dx.doi.org/10.1155/2021/8852574
work_keys_str_mv AT qinhanjun inhibitionofsdf1cxcr4axistoalleviateabnormalboneformationandangiogenesiscouldimprovethesubchondralbonemicroenvironmentinosteoarthritis
AT zhaoxingqi inhibitionofsdf1cxcr4axistoalleviateabnormalboneformationandangiogenesiscouldimprovethesubchondralbonemicroenvironmentinosteoarthritis
AT huyanjun inhibitionofsdf1cxcr4axistoalleviateabnormalboneformationandangiogenesiscouldimprovethesubchondralbonemicroenvironmentinosteoarthritis
AT wangshengnan inhibitionofsdf1cxcr4axistoalleviateabnormalboneformationandangiogenesiscouldimprovethesubchondralbonemicroenvironmentinosteoarthritis
AT mayunfei inhibitionofsdf1cxcr4axistoalleviateabnormalboneformationandangiogenesiscouldimprovethesubchondralbonemicroenvironmentinosteoarthritis
AT hesiying inhibitionofsdf1cxcr4axistoalleviateabnormalboneformationandangiogenesiscouldimprovethesubchondralbonemicroenvironmentinosteoarthritis
AT shenke inhibitionofsdf1cxcr4axistoalleviateabnormalboneformationandangiogenesiscouldimprovethesubchondralbonemicroenvironmentinosteoarthritis
AT wanhaoyang inhibitionofsdf1cxcr4axistoalleviateabnormalboneformationandangiogenesiscouldimprovethesubchondralbonemicroenvironmentinosteoarthritis
AT cuizhuang inhibitionofsdf1cxcr4axistoalleviateabnormalboneformationandangiogenesiscouldimprovethesubchondralbonemicroenvironmentinosteoarthritis
AT yubin inhibitionofsdf1cxcr4axistoalleviateabnormalboneformationandangiogenesiscouldimprovethesubchondralbonemicroenvironmentinosteoarthritis