Barsby Tom, Bavin Emma P, Guest Debbie J
Animal Health Trust, Centre for Preventive Medicine , Newmarket, Suffolk, United Kingdom .
Tissue Eng Part A. 2014 Oct;20(19-20):2604-13. doi: 10.1089/ten.TEA.2013.0457. Epub 2014 Apr 21.
The natural reparative mechanisms triggered by tendon damage often lead to the formation of biomechanically inferior scar tissue that is prone to re-injury. Before the efficient application of stem cell-based regenerative therapies, the processes regulating tenocyte differentiation should first be better understood. Three-dimensional (3D) growth environments under strain and the exogenous addition of transforming growth factor beta3 (TGF-β3) have separately been shown to promote tendon differentiation. The aim of this study was to determine the ability of both of these factors to induce tendon differentiation of equine embryo-derived stem cells (ESCs). ESCs seeded into 3D collagen constructs can contract the matrix to a similar degree to that of tenocyte-seeded constructs and histologically appear nearly identical, with no areas of cartilage or bone tissue deposition. Tendon-associated genes and proteins Tenascin-C, Collagen Type I, and COMP are significantly up-regulated in the 3D ESC constructs compared with tenogenic induction in monolayer ESC cultures. The addition of TGF-β3 to the 3D cultures further up-regulates the expression of these genes and also induces the expression of mature tenocyte markers Tenomodulin and Thrombospondin-4. Our results show that when ESCs are exposed to the intrinsic forces exerted by a 3D culture environment, they express tendon-associated genes and proteins which are indicative of tenocyte lineage differentiation and that this effect is synergistically enhanced and accelerated by the addition of TGF-β3.
肌腱损伤引发的自然修复机制常常会导致形成生物力学性能较差的瘢痕组织,这种组织容易再次受伤。在有效应用基于干细胞的再生疗法之前,首先应更好地了解调节肌腱细胞分化的过程。已经分别证明,应变条件下的三维(3D)生长环境和外源性添加转化生长因子β3(TGF-β3)可促进肌腱分化。本研究的目的是确定这两种因素诱导马胚胎来源干细胞(ESC)向肌腱分化的能力。接种到3D胶原蛋白构建体中的ESC能够使基质收缩到与接种肌腱细胞的构建体相似的程度,并且在组织学上几乎相同,没有软骨或骨组织沉积区域。与单层ESC培养中的肌腱诱导相比,3D ESC构建体中肌腱相关基因和蛋白腱生蛋白-C、I型胶原蛋白和软骨寡聚基质蛋白显著上调。向3D培养物中添加TGF-β3进一步上调了这些基因的表达,还诱导了成熟肌腱细胞标志物肌腱调节蛋白和血小板反应蛋白-4的表达。我们的结果表明,当ESC暴露于3D培养环境施加的内在力时,它们会表达肌腱相关基因和蛋白,这表明肌腱细胞谱系分化,并且添加TGF-β3会协同增强和加速这种效应。