Parmar Nina, Ahmadi Raheleh, Day Richard M
Applied Biomedical Engineering Group, Division of Medicine, University College London , London, United Kingdom .
Tissue Eng Part C Methods. 2015 Apr;21(4):404-12. doi: 10.1089/ten.TEC.2014.0431. Epub 2014 Oct 14.
Muscle degeneration is a prevalent disease, particularly in aging societies where it has a huge impact on quality of life and incurs colossal health costs. Suitable donor sources of smooth muscle cells are limited and minimally invasive therapeutic approaches are sought that will augment muscle volume by delivering cells to damaged or degenerated areas of muscle. For the first time, we report the use of highly porous microcarriers produced using thermally induced phase separation (TIPS) to expand and differentiate adipose-derived mesenchymal stem cells (AdMSCs) into smooth muscle-like cells in a format that requires minimal manipulation before clinical delivery. AdMSCs readily attached to the surface of TIPS microcarriers and proliferated while maintained in suspension culture for 12 days. Switching the incubation medium to a differentiation medium containing 2 ng/mL transforming growth factor beta-1 resulted in a significant increase in both the mRNA and protein expression of cell contractile apparatus components caldesmon, calponin, and myosin heavy chains, indicative of a smooth muscle cell-like phenotype. Growth of smooth muscle cells on the surface of the microcarriers caused no change to the integrity of the polymer microspheres making them suitable for a cell-delivery vehicle. Our results indicate that TIPS microspheres provide an ideal substrate for the expansion and differentiation of AdMSCs into smooth muscle-like cells as well as a microcarrier delivery vehicle for the attached cells ready for therapeutic applications.
肌肉退化是一种普遍存在的疾病,尤其是在老龄化社会中,它对生活质量有巨大影响,并产生巨大的医疗成本。合适的平滑肌细胞供体来源有限,人们正在寻求微创治疗方法,通过将细胞输送到受损或退化的肌肉区域来增加肌肉体积。我们首次报告了使用热致相分离(TIPS)制备的高度多孔微载体,以一种在临床递送前需要最少操作的形式,将脂肪来源的间充质干细胞(AdMSCs)扩增并分化为平滑肌样细胞。AdMSCs很容易附着在TIPS微载体表面,并在悬浮培养12天的过程中增殖。将培养介质换成含有2 ng/mL转化生长因子β-1的分化培养基后,细胞收缩装置成分钙调蛋白、钙结合蛋白和肌球蛋白重链的mRNA和蛋白表达均显著增加,表明呈现出平滑肌细胞样表型。平滑肌细胞在微载体表面生长并未改变聚合物微球的完整性,使其适合作为细胞递送载体。我们的结果表明,TIPS微球为AdMSCs扩增并分化为平滑肌样细胞提供了理想的基质,同时也为附着细胞提供了适合治疗应用的微载体递送载体。