Hanga Mariana P, Murasiewicz Halina, Pacek Andrzej W, Nienow Alvin W, Coopman Karen, Hewitt Christopher J
Centre for Biological EngineeringLoughborough UniversityLoughboroughUK.
Aston Medical Research InstituteAston UniversityBirminghamUK.
J Chem Technol Biotechnol. 2017 Jul;92(7):1577-1589. doi: 10.1002/jctb.5279. Epub 2017 Apr 24.
Human mesenchymal stem/stromal cells (hMSCs) are at the forefront of regenerative medicine applications due to their relatively easy isolation and availability in adults, potential to differentiate and to secrete a range of trophic factors that could determine specialised tissue regeneration. To date, hMSCs have been successfully cultured in vitro on substrates such as polystyrene dishes (TCPS) or microcarriers. However, hMSC sub-cultivation and harvest typically employs proteolytic enzymes that act by cleaving important cell membrane proteins resulting in long-term cell damage. In a process where the cells themselves are the product, a non-enzymatic and non-damaging harvesting approach is desirable.
An alternative system for hMSC expansion and subsequent non-enzymatic harvest was investigated here. A liquid/liquid two-phase system was proposed, comprising a selected perfluorocarbon (FC40) and growth medium (DMEM). The cells exhibited similar cell morphologies compared with TCPS. Moreover, they retained their identity and differentiation potential post-expansion and post-harvest. Further, no significant difference was found when culturing hMSCs in the culture systems prepared with either fresh or recycled FC40 perfluorocarbon.
These findings make the FC40/DMEM system an attractive alternative for traditional cell culture substrates due to their ease of cell recovery and recyclability, the latter impacting on overall process costs. © 2017 The Authors. published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.
人间充质干/基质细胞(hMSCs)因其在成人中相对容易分离且可得,具有分化潜力以及分泌一系列可决定特定组织再生的营养因子的能力,处于再生医学应用的前沿。迄今为止,hMSCs已在聚苯乙烯培养皿(TCPS)或微载体等基质上成功进行体外培养。然而,hMSC的传代培养和收获通常采用蛋白水解酶,这些酶通过切割重要的细胞膜蛋白起作用,从而导致长期的细胞损伤。在细胞本身就是产品的过程中,需要一种非酶促且无损伤的收获方法。
本文研究了一种用于hMSC扩增及后续非酶促收获的替代系统。提出了一种液/液两相系统,该系统由选定的全氟碳化合物(FC40)和生长培养基(DMEM)组成。与TCPS相比,细胞表现出相似的细胞形态。此外,它们在扩增和收获后保留了自身特性和分化潜力。此外,在用新鲜或回收的FC40全氟碳化合物制备的培养系统中培养hMSCs时,未发现显著差异。
这些发现使FC40/DMEM系统成为传统细胞培养基质的一个有吸引力的替代选择,因为其细胞回收容易且可回收利用,后者会影响总体工艺成本。© 2017作者。由John Wiley & Sons Ltd代表化学工业协会出版。