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The Recombinant Protein EphB4-Fc Changes the Ti Particle-Mediated Imbalance of OPG/RANKL via EphrinB2/EphB4 Signaling Pathway and Inhibits the Release of Proinflammatory Factors In Vivo

Aseptic loosening caused by wear particles is one of the common complications after total hip arthroplasty. We investigated the effect of the recombinant protein ephB4-Fc (erythropoietin-producing human hepatocellular receptor 4) on wear particle-mediated inflammatory response. In vitro, ephrinB2 ex...

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Autores principales: Ge, Yu-Wei, Feng, Kai, Liu, Xiao-Liang, Chen, Hong-Fang, Sun, Zhen-Yu, Wang, Cai-Feng, Liu, Zhi-Qing, Wang, Hao-Wei, Zhang, Jing-Wei, Yu, De-Gang, Mao, Yuan-Qing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7294355/
https://www.ncbi.nlm.nih.gov/pubmed/32587656
http://dx.doi.org/10.1155/2020/1404915
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author Ge, Yu-Wei
Feng, Kai
Liu, Xiao-Liang
Chen, Hong-Fang
Sun, Zhen-Yu
Wang, Cai-Feng
Liu, Zhi-Qing
Wang, Hao-Wei
Zhang, Jing-Wei
Yu, De-Gang
Mao, Yuan-Qing
author_facet Ge, Yu-Wei
Feng, Kai
Liu, Xiao-Liang
Chen, Hong-Fang
Sun, Zhen-Yu
Wang, Cai-Feng
Liu, Zhi-Qing
Wang, Hao-Wei
Zhang, Jing-Wei
Yu, De-Gang
Mao, Yuan-Qing
author_sort Ge, Yu-Wei
collection PubMed
description Aseptic loosening caused by wear particles is one of the common complications after total hip arthroplasty. We investigated the effect of the recombinant protein ephB4-Fc (erythropoietin-producing human hepatocellular receptor 4) on wear particle-mediated inflammatory response. In vitro, ephrinB2 expression was analyzed using siRNA-NFATc1 (nuclear factor of activated T-cells 1) and siRNA-c-Fos. Additionally, we used Tartrate-resistant acid phosphatase (TRAP) staining, bone pit resorption, Enzyme-linked immunosorbent assay (ELISA), as well as ephrinB2 overexpression and knockdown experiments to verify the effect of ephB4-Fc on osteoclast differentiation and function. In vivo, a mouse skull model was constructed to test whether the ephB4-Fc inhibits osteolysis and inhibits inflammation by micro-CT, H&E staining, immunohistochemistry, and immunofluorescence. The gene expression of ephrinB2 was regulated by c-Fos/NFATc1. Titanium wear particles activated this signaling pathway to the promoted expression of the ephrinB2 gene. However, ephrinB2 protein can be activated by osteoblast membrane receptor ephB4 to inhibit osteoclast differentiation. In in vivo experiments, we found that ephB4 could regulate Ti particle-mediated imbalance of OPG/RANKL, and the most important finding was that ephB4 relieved the release of proinflammatory factors. The ephB4-Fc inhibits wear particle-mediated osteolysis and inflammatory response through the ephrinB2/EphB4 bidirectional signaling pathway, and ephrinB2 ligand is expected to become a new clinical drug therapeutic target.
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spelling pubmed-72943552020-06-24 The Recombinant Protein EphB4-Fc Changes the Ti Particle-Mediated Imbalance of OPG/RANKL via EphrinB2/EphB4 Signaling Pathway and Inhibits the Release of Proinflammatory Factors In Vivo Ge, Yu-Wei Feng, Kai Liu, Xiao-Liang Chen, Hong-Fang Sun, Zhen-Yu Wang, Cai-Feng Liu, Zhi-Qing Wang, Hao-Wei Zhang, Jing-Wei Yu, De-Gang Mao, Yuan-Qing Oxid Med Cell Longev Research Article Aseptic loosening caused by wear particles is one of the common complications after total hip arthroplasty. We investigated the effect of the recombinant protein ephB4-Fc (erythropoietin-producing human hepatocellular receptor 4) on wear particle-mediated inflammatory response. In vitro, ephrinB2 expression was analyzed using siRNA-NFATc1 (nuclear factor of activated T-cells 1) and siRNA-c-Fos. Additionally, we used Tartrate-resistant acid phosphatase (TRAP) staining, bone pit resorption, Enzyme-linked immunosorbent assay (ELISA), as well as ephrinB2 overexpression and knockdown experiments to verify the effect of ephB4-Fc on osteoclast differentiation and function. In vivo, a mouse skull model was constructed to test whether the ephB4-Fc inhibits osteolysis and inhibits inflammation by micro-CT, H&E staining, immunohistochemistry, and immunofluorescence. The gene expression of ephrinB2 was regulated by c-Fos/NFATc1. Titanium wear particles activated this signaling pathway to the promoted expression of the ephrinB2 gene. However, ephrinB2 protein can be activated by osteoblast membrane receptor ephB4 to inhibit osteoclast differentiation. In in vivo experiments, we found that ephB4 could regulate Ti particle-mediated imbalance of OPG/RANKL, and the most important finding was that ephB4 relieved the release of proinflammatory factors. The ephB4-Fc inhibits wear particle-mediated osteolysis and inflammatory response through the ephrinB2/EphB4 bidirectional signaling pathway, and ephrinB2 ligand is expected to become a new clinical drug therapeutic target. Hindawi 2020-06-05 /pmc/articles/PMC7294355/ /pubmed/32587656 http://dx.doi.org/10.1155/2020/1404915 Text en Copyright © 2020 Yu-Wei Ge et al. http://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
Ge, Yu-Wei
Feng, Kai
Liu, Xiao-Liang
Chen, Hong-Fang
Sun, Zhen-Yu
Wang, Cai-Feng
Liu, Zhi-Qing
Wang, Hao-Wei
Zhang, Jing-Wei
Yu, De-Gang
Mao, Yuan-Qing
The Recombinant Protein EphB4-Fc Changes the Ti Particle-Mediated Imbalance of OPG/RANKL via EphrinB2/EphB4 Signaling Pathway and Inhibits the Release of Proinflammatory Factors In Vivo
title The Recombinant Protein EphB4-Fc Changes the Ti Particle-Mediated Imbalance of OPG/RANKL via EphrinB2/EphB4 Signaling Pathway and Inhibits the Release of Proinflammatory Factors In Vivo
title_full The Recombinant Protein EphB4-Fc Changes the Ti Particle-Mediated Imbalance of OPG/RANKL via EphrinB2/EphB4 Signaling Pathway and Inhibits the Release of Proinflammatory Factors In Vivo
title_fullStr The Recombinant Protein EphB4-Fc Changes the Ti Particle-Mediated Imbalance of OPG/RANKL via EphrinB2/EphB4 Signaling Pathway and Inhibits the Release of Proinflammatory Factors In Vivo
title_full_unstemmed The Recombinant Protein EphB4-Fc Changes the Ti Particle-Mediated Imbalance of OPG/RANKL via EphrinB2/EphB4 Signaling Pathway and Inhibits the Release of Proinflammatory Factors In Vivo
title_short The Recombinant Protein EphB4-Fc Changes the Ti Particle-Mediated Imbalance of OPG/RANKL via EphrinB2/EphB4 Signaling Pathway and Inhibits the Release of Proinflammatory Factors In Vivo
title_sort recombinant protein ephb4-fc changes the ti particle-mediated imbalance of opg/rankl via ephrinb2/ephb4 signaling pathway and inhibits the release of proinflammatory factors in vivo
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7294355/
https://www.ncbi.nlm.nih.gov/pubmed/32587656
http://dx.doi.org/10.1155/2020/1404915
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