The Auxiliary Role of Heparin in Bone Regeneration and its Application in Bone Substitute Materials.

bone morphogenic protein-2 bone morphogenic protein-4 bone regeneration heparan sulfate heparin nanomaterial osteogenic

Journal

Frontiers in bioengineering and biotechnology
ISSN: 2296-4185
Titre abrégé: Front Bioeng Biotechnol
Pays: Switzerland
ID NLM: 101632513

Informations de publication

Date de publication:
2022
Historique:
received: 16 12 2021
accepted: 13 04 2022
entrez: 1 6 2022
pubmed: 2 6 2022
medline: 2 6 2022
Statut: epublish

Résumé

Bone regeneration in large segmental defects depends on the action of osteoblasts and the ingrowth of new blood vessels. Therefore, it is important to promote the release of osteogenic/angiogenic growth factors. Since the discovery of heparin, its anticoagulant, anti-inflammatory, and anticancer functions have been extensively studied for over a century. Although the application of heparin is widely used in the orthopedic field, its auxiliary effect on bone regeneration is yet to be unveiled. Specifically, approximately one-third of the transforming growth factor (TGF) superfamily is bound to heparin and heparan sulfate, among which TGF-β1, TGF-β2, and bone morphogenetic protein (BMP) are the most common growth factors used. In addition, heparin can also improve the delivery and retention of BMP-2

Identifiants

pubmed: 35646879
doi: 10.3389/fbioe.2022.837172
pii: 837172
pmc: PMC9133562
doi:

Types de publication

Journal Article Review

Langues

eng

Pagination

837172

Informations de copyright

Copyright © 2022 Wang, Xiao, Wang, Zhang, Ma, Zhang and Wang.

Déclaration de conflit d'intérêts

The authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest.

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Auteurs

Jing Wang (J)

Department of Orthopaedic Surgery, Affiliated Hospital of Zunyi Medical University, Zunyi, China.

Lan Xiao (L)

Centre for Biomedical Technologies, School of Mechanical, Medical and Process Engineering, Queensland University of Technology, Brisbane, Australia.
Australia-China Centre for Tissue Engineering and Regenerative Medicine, Brisbane, Australia.

Weiqun Wang (W)

Department of Orthopaedic Surgery, Affiliated Hospital of Zunyi Medical University, Zunyi, China.

Dingmei Zhang (D)

Department of Orthopaedic Surgery, Affiliated Hospital of Zunyi Medical University, Zunyi, China.

Yaping Ma (Y)

Department of Orthopaedic Surgery, Affiliated Hospital of Zunyi Medical University, Zunyi, China.

Yi Zhang (Y)

Department of Hygiene Toxicology, School of Public Health, Zunyi Medical University, Zunyi, China.

Xin Wang (X)

Department of Orthopaedic Surgery, Affiliated Hospital of Zunyi Medical University, Zunyi, China.
Centre for Biomedical Technologies, School of Mechanical, Medical and Process Engineering, Queensland University of Technology, Brisbane, Australia.
Australia-China Centre for Tissue Engineering and Regenerative Medicine, Brisbane, Australia.

Classifications MeSH