Immunophenotypic characterization and tenogenic differentiation of mesenchymal stromal cells isolated from equine umbilical cord blood

被引:0
作者
Niharika Mohanty
Baldev R. Gulati
Rajesh Kumar
Sandeep Gera
Pawan Kumar
Rajesh K. Somasundaram
Sandeep Kumar
机构
[1] LLR University of Veterinary & Animal Sciences,Department of Veterinary Physiology and Biochemistry, College of Veterinary Sciences
[2] National Research Centre on Equines,Department of Veterinary Anatomy, College of Veterinary Sciences
[3] LLR University of Veterinary & Animal Sciences,undefined
[4] Equine Breeding Stud,undefined
来源
In Vitro Cellular & Developmental Biology - Animal | 2014年 / 50卷
关键词
Umbilical cord blood; Horse mesenchymal stromal cell; Pluripotency; Tenogenic differentiation;
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学科分类号
摘要
Mesenchymal stem cells (MSCs) isolated from umbilical cord blood (UCB) in equines have not been well characterized with respect to the expression of pluripotency and mesenchymal markers and for tenogenic differentiation potential in vitro. The plastic adherent fibroblast-like cells isolated from 13 out of 20 UCB samples could proliferate till passage 20. The cells expressed pluripotency markers (OCT4, NANOG, and SOX2) and MSC surface markers (CD90, CD73, and CD105) by RT-PCR, but did not express CD34, CD45, and CD14. On immunocytochemistry, the isolated cells showed expression of CD90 and CD73 proteins, but tested negative for CD34 and CD45. In flow cytometry, CD29, CD44, CD73, and CD90 were expressed by 96.36  ± 1.28%, 93.40  ± 0.70%, 73.23  ± 1.29% and 46.75  ± 3.95% cells, respectively. The UCB-MSCs could be differentiated to tenocytes by culturing in growth medium supplemented with 50 ng/ml of BMP-12 by day 10. The differentiated cells showed the expression of mohawk homeobox (Mkx), collagen type I alpha 1 (Col1α1), scleraxis (Scx), tenomodulin (Tnmd) and decorin (Dcn) by RT-PCR. In addition, flow cytometry detected tenomodulin and decorin protein in 95.65 ± 2.15% and 96.30 ± 1.00% of differentiated cells in comparison to 11.30 ± 0.10% and 19.45 ± 0.55% cells, respectively in undifferentiated control cells. The findings support the observation that these cells may be suitable for therapeutic applications, including ruptured tendons in racehorses.
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页码:538 / 548
页数:10
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共 309 条
[1]  
Avilion AA(2003)Multipotent cell lineages in early mouse development depend on SOX2 function Genes Dev. 17 126-140
[2]  
Nicolis SK(2011)The regenerative medicine laboratory: facilitating stem cell therapy for equine disease Clin. Lab. Med. 31 109-123
[3]  
Pevny LH(2010)Evaluation of the osteogenic and chondrogenic differentiation of capacities of equine adipose tissue derived mesenchymal stem cells Am. J. Vet. Res. 71 1228-1236
[4]  
Perez L(2012)Ribitsch I Stem cell-based tissue engineering in veterinary orthopaedics Cell Tissue Res. 347 677-688
[5]  
Vivian N(2013)Growth and differentiation characteristics of equine mesenchymal stromal cells derived from different sources Vet. J. 195 98-106
[6]  
Lovell-Badge R(2011)Intradermal injections of equine allogeneic umbilical cord-derived mesenchymal stem cells are well tolerated and do not elicit immediate or delayed hypersensitivity reactions Cytotherapy 13 1180-1192
[7]  
Borjesson DL(2011b)Clinicopathologic findings following intra-articular injection of autologous and allogeneic placentally derived equine mesenchymal stem cells in horses Cytotherapy 13 419-430
[8]  
Peroni JF(2003)Functional expression cloning of Nanog, a pluripotency sustaining factor in embryonic stem cells Cell 113 643-655
[9]  
Braun J(2011)Fetal adnexa derived stem cells from domestic animal: progress and perspectives Theriogenology 75 1400-1415
[10]  
Hack A(2009)Isolation and immunophenotypic characterization of mesenchymal stem cells derived from equine species adipose tissue Vet. Immunol. Immunopathol. 132 303-306