University of Surrey, Guildford GU2 7XH, UK.
J Tissue Eng Regen Med. 2011 Aug;5(8):629-35. doi: 10.1002/term.355. Epub 2010 Dec 10.
Both chemical and physical stimuli can influence the fate of precursor cell populations. Therefore, the impact they have on promoting unwanted differentiation events must be understood to improve the yield and purity of therapeutic cells for regenerative medicine approaches. Capillary shear forces, similar to those encountered during cell processing, can impact upon production of regenerative cell populations. As shear stress can promote osteogenic differentiation in adhered bone marrow-derived stromal cells, we sought to determine whether the same is true for populations of muscle-derived precursor cells (MDPCs) that were isolated from a muscle niche environment. We isolated MDPCs from craniofacial muscle of 5 day-old Royal College of Surgeons rats and subjected them to capillary shear events similar to those encountered during manual bioprocessing of cells. We then assessed whether viability and ectopic osteogenic differentiation of MDPCs was affected. We found that whilst immediate recovery of MDPCs was not significantly affected by shear, viability after 24 h was reduced in comparison to non-sheared MDPCs. By 48 h, sheared MDPCs had all recovered and had similar viability to non-sheared MDPCs. Ostegenic differentiation was enhanced following exposure to capillary shear in both osteogenic and myogenic medium. This indicates that shear forces similar to those encountered during the bioprocessing of cell populations for therapy can have a significant influence on the fate of MDPCs.
化学和物理刺激都可以影响前体细胞群的命运。因此,为了提高再生医学方法中治疗细胞的产量和纯度,必须了解它们对促进不必要的分化事件的影响。类似于细胞处理过程中遇到的毛细血管剪切力会影响再生细胞群体的产生。由于剪切应力可以促进黏附的骨髓基质细胞的成骨分化,我们试图确定对于从肌肉龛环境中分离出来的肌肉来源前体细胞(MDPCs)群体是否也是如此。我们从 5 天大的皇家外科学院大鼠颅面肌肉中分离出 MDPCs,并使其经历类似于手动细胞生物处理过程中遇到的毛细血管剪切事件。然后,我们评估了 MDPCs 的活力和异位成骨分化是否受到影响。我们发现,尽管 MDPCs 的即时恢复不受剪切的显著影响,但与未剪切的 MDPCs 相比,24 小时后的活力降低。48 小时后,剪切的 MDPCs 已经全部恢复,与未剪切的 MDPCs 具有相似的活力。在成骨和肌性培养基中暴露于毛细血管剪切后,成骨分化增强。这表明,在治疗细胞群体的生物处理过程中遇到的剪切力可以对 MDPCs 的命运产生重大影响。