Literature DB >> 33677160

Cryptic ligand on collagen matrix unveiled by MMP13 accelerates bone tissue regeneration via MMP13/Integrin α3/RUNX2 feedback loop.

Yoshie Arai1, Bogyu Choi2, Byoung Ju Kim1, Sunghyun Park2, Hyoeun Park1, James J Moon3, Soo-Hong Lee4.   

Abstract

Extracellular matrix (ECM) remodeling is necessary for the development and self-healing of tissue, and the process is tissue specific. Matrix metalloproteinases (MMPs) play a role in ECM remodeling by unwinding and cleaving ECM. We hypothesized that ECM remodeling by MMPs is involved in the differentiation of stem cells into specific lineages during self-healing. To prove the hypothesis, we investigated which MMPs are involved in the osteogenic differentiation of human mesenchymal stem cells (hMSCs) grown on a type I collagen (Col I) matrix, and we found that specifically high expression of MMP13 in hMSCs grown on a Col I matirx during osteogenic differentiation. Moreover, knocking down of MMP13 decreased the osteogenic differentiation of hMSCs grown on a Col I matrix. In addition, pre-treatment of recombinant human MMP13 lead to remodeling of Col I matrix and increased the osteogenic differentiation of hMSCs and in vivo bone formation following the upregulation of the expression of runt-related transcription factor 2 (RUNX2), integrin α3 (ITGA3), and focal adhesion kinase. Furthermore, the transcription factor RUNX2 bound to the MMP13 promoter. These results suggest that growth on a remodeled Col I matrix by MMP13 stimulates osteogenic differentiation of hMSCs and self-healing of bone tissue via an MMP13/ITGA3/RUNX2 positive feedback loop. STATEMENT OF SIGNIFICANCE: Self-healing of tissue could be the key to treating diseases that cannot be overcome by present technology. We investigated the mechanism underlying the self-healing of tissue and we found that the osteogenic differentiation was increased in hMSCs grown on a remodeled Col I matrix by the optimized concentration of MMP13 not in hMSCs grown on a Col I fragments cleaved by a high concentration of MMP13. In addition, we found the remodeled Col I matrix by MMP13 increased the osteogenic capacity through a MMP13/integrin α3/RUNX2 positive feedback loop. This result would be able to not only provide a strategy for bone tissue-specific functional materials following strong evidence about the self-healing mechanism of bone through the interaction between stem cells and the ECM matrix. As such, we strongly believe our finding will be of interest to researchers studying biomaterials, stem cell biology and matrix interaction for regenerative medicine and therapy.
Copyright © 2021 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Bond tissue regeneration; ECM remodeling; Matrix metalloproteinases; Mesenchymal stem cells; Self-healing

Mesh:

Substances:

Year:  2021        PMID: 33677160     DOI: 10.1016/j.actbio.2021.02.042

Source DB:  PubMed          Journal:  Acta Biomater        ISSN: 1742-7061            Impact factor:   8.947


  5 in total

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Authors:  Genfa Du; Xinyuan Cheng; Zhen Zhang; Linjing Han; Keliang Wu; Yongjun Li; Xiaosheng Lin
Journal:  Front Genet       Date:  2021-11-25       Impact factor: 4.599

2.  The biological effect of recombinant humanized collagen on damaged skin induced by UV-photoaging: An in vivo study.

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Journal:  Bioact Mater       Date:  2021-10-22

3.  RNAseq of Osteoarthritic Synovial Tissues: Systematic Literary Review.

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Journal:  Front Aging       Date:  2022-05-25

4.  Effect of Puerarin on Osteogenic Differentiation in vitro and on New Bone Formation in vivo.

Authors:  Yanran Yang; Daiyun Chen; Yilin Li; Jinghua Zou; Ruiqi Han; Hongkun Li; Jun Zhang
Journal:  Drug Des Devel Ther       Date:  2022-08-27       Impact factor: 4.319

5.  Three-Dimensional Osteogenic Differentiation of Bone Marrow Mesenchymal Stem Cells Promotes Matrix Metallopeptidase 13 (MMP13) Expression in Type I Collagen Hydrogels.

Authors:  Luis Oliveros Anerillas; Paul J Kingham; Mikko J Lammi; Mikael Wiberg; Peyman Kelk
Journal:  Int J Mol Sci       Date:  2021-12-18       Impact factor: 5.923

  5 in total

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