Literature DB >> 24662023

Bone morphogenetic protein-12 induces tenogenic differentiation of mesenchymal stem cells derived from equine amniotic fluid.

Baldev R Gulati1, Rajesh Kumar, Niharika Mohanty, Pawan Kumar, Rajesh K Somasundaram, Prem S Yadav.   

Abstract

Tendon injuries are common in race horses, and mesenchymal stem cells (MSCs) isolated from adult and foetal tissue have been used for tendon regeneration. In the present study, we evaluated equine amniotic fluid (AF) as a source of MSCs and standardised methodology and markers for their in vitro tenogenic differentiation. Plastic-adherent colonies were isolated from 12 of 20 AF samples by day 6 after seeding and 70-80% cell confluency was reached by day 17. These cells expressed mesenchymal surface markers [cluster of differentiation (CD)73, CD90 and CD105] by reverse transcription (RT)-polymerase chain reaction (PCR) and immunocytochemistry, but did not express haematopoietic markers (CD34, CD45 and CD14). In flow cytometry, the expression of CD29, CD44, CD73 and CD90 was observed in 68.83 ± 1.27, 93.66 ± 1.80, 96.96 ± 0.44 and 93.7 ± 1.89% of AF-MSCs, respectively. Osteogenic, chondrogenic and adipogenic differentiation of MSCs was confirmed by von Kossa and Alizarin red S, Alcian blue and oil red O staining, respectively. Upon supplementation of MSC growth media with 50 ng/ml bone morphogenetic protein (BMP)-12, AF-MSCs differentiated to tenocytes within 14 days. The differentiated cells were more slender, elongated and spindle shaped with thinner and longer cytoplasmic processes and showed expression of tenomodulin and decorin by RT-PCR and immunocytochemistry. In flow cytometry, 96.7 ± 1.90 and 80.9 ± 6.4% of differentiated cells expressed tenomodulin and decorin in comparison to 1.6 and 3.1% in undifferentiated control cells, respectively. Our results suggest that AF is an easily accessible and effective source of MSCs. On BMP-12 supplementation, AF-MSCs can be differentiated to tenocytes, which could be exploited for regeneration of ruptured or damaged tendon in race horses.

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Year:  2014        PMID: 24662023     DOI: 10.1159/000358231

Source DB:  PubMed          Journal:  Cells Tissues Organs        ISSN: 1422-6405            Impact factor:   2.481


  11 in total

1.  Mesenchymal Stem Cells Anti-Inflammatory Activity in Rats: Proinflammatory Cytokines.

Authors:  Nataliia Petryk; Oleksandr Shevchenko
Journal:  J Inflamm Res       Date:  2020-07-07

2.  Anti-inflammatory Activity of Mesenchymal Stem Cells in λ-Carrageenan-Induced Chronic Inflammation in Rats: Reactions of the Blood System, Leukocyte-Monocyte Ratio.

Authors:  Nataliia Petryk; Oleksandr Shevchenko
Journal:  Inflammation       Date:  2020-10       Impact factor: 4.092

3.  Phenotypical and functional characteristics of mesenchymal stem cells derived from equine umbilical cord blood.

Authors:  N Mohanty; B R Gulati; R Kumar; S Gera; S Kumar; P Kumar; P S Yadav
Journal:  Cytotechnology       Date:  2014-12-09       Impact factor: 2.058

Review 4.  In Vitro Innovation of Tendon Tissue Engineering Strategies.

Authors:  Maria Rita Citeroni; Maria Camilla Ciardulli; Valentina Russo; Giovanna Della Porta; Annunziata Mauro; Mohammad El Khatib; Miriam Di Mattia; Devis Galesso; Carlo Barbera; Nicholas R Forsyth; Nicola Maffulli; Barbara Barboni
Journal:  Int J Mol Sci       Date:  2020-09-14       Impact factor: 5.923

Review 5.  Tenogenic modulating insider factor: Systematic assessment on the functions of tenomodulin gene.

Authors:  Sarah Dex; Dasheng Lin; Chisa Shukunami; Denitsa Docheva
Journal:  Gene       Date:  2016-04-26       Impact factor: 3.688

6.  Can a Biodegradable Implanted Bilayered Drug Delivery System Loaded with BMP-2/BMP-12 Take an Effective Role in the Biological Repair Process of Bone-Tendon Injuries? A Preliminary Report.

Authors:  Baran Komur; Yener Akyuva; Numan Karaslan; Mehmet Isyar; Seyit Ali Gumustas; Ibrahim Yilmaz; Semih Akkaya; Duygu Yasar Sirin; Cagri Ata Mutlu; Ahmet Guray Batmaz; Olcay Guler; Mahir Mahirogullari
Journal:  J Pharm (Cairo)       Date:  2017-06-04

Review 7.  Strategies of tenogenic differentiation of equine stem cells for tendon repair: current status and challenges.

Authors:  Asiyeh Shojaee; Abbas Parham
Journal:  Stem Cell Res Ther       Date:  2019-06-18       Impact factor: 6.832

8.  Comparative Analysis of Tenogenic Gene Expression in Tenocyte-Derived Induced Pluripotent Stem Cells and Bone Marrow-Derived Mesenchymal Stem Cells in Response to Biochemical and Biomechanical Stimuli.

Authors:  Feikun Yang; Dean W Richardson
Journal:  Stem Cells Int       Date:  2021-01-13       Impact factor: 5.443

9.  Tendon Reattachment to Bone in an Ovine Tendon Defect Model of Retraction Using Allogenic and Xenogenic Demineralised Bone Matrix Incorporated with Mesenchymal Stem Cells.

Authors:  Tanujan Thangarajah; Shirin Shahbazi; Catherine J Pendegrass; Simon Lambert; Susan Alexander; Gordon W Blunn
Journal:  PLoS One       Date:  2016-09-08       Impact factor: 3.240

10.  Bone marrow mesenchymal stem cells protect against n-hexane-induced neuropathy through beclin 1-independent inhibition of autophagy.

Authors:  Jie Hao; Shuangyue Li; Xiaoxia Shi; Zhiqiang Qian; Yijie Sun; Dunjia Wang; Xueying Zhou; Hongxin Qu; Shuhai Hu; Enjun Zuo; Cong Zhang; Liyan Hou; Qingshan Wang; Fengyuan Piao
Journal:  Sci Rep       Date:  2018-03-14       Impact factor: 4.379

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