Petry Florian, Weidner Tobias, Czermak Peter, Salzig Denise
Institute of Bioprocess Engineering and Pharmaceutical Technology, University of Applied Sciences Mittelhessen, Wiesenstraße 14, 35390 Giessen, Germany.
Department of Chemical Engineering, Kansas State University, Manhattan, KS, USA.
Stem Cells Int. 2018 Mar 14;2018:2547098. doi: 10.1155/2018/2547098. eCollection 2018.
Diabetes is a prominent health problem caused by the failure of pancreatic beta cells. One therapeutic approach is the transplantation of functional beta cells, but it is difficult to generate sufficient beta cells and to ensure these cells remain viable at the transplantation site. Beta cells suffer from hypoxia, undergo apoptosis, or are attacked by the host immune system. Human mesenchymal stem/stromal cells (hMSCs) can improve the functionality and survival of beta cells and due to direct cell contact or the secretion of trophic factors. Current cocultivation concepts with beta cells are simple and cannot exploit the favorable properties of hMSCs. Beta cells need a three-dimensional (3D) environment to function correctly, and the cocultivation setup is therefore more complex. This review discusses 3D cultivation forms (aggregates, capsules, and carriers) for hMSCs and beta cells and strategies for large-scale cultivation. We have determined process parameters that must be balanced and considered for the cocultivation of hMSCs and beta cells, and we present several bioreactor setups that are suitable for such an innovative cocultivation approach. Bioprocess engineering of the cocultivation processes is necessary to achieve successful beta cell therapy.
糖尿病是由胰腺β细胞功能衰竭引起的一个突出的健康问题。一种治疗方法是移植功能性β细胞,但难以产生足够的β细胞并确保这些细胞在移植部位保持存活。β细胞会遭受缺氧、发生凋亡或受到宿主免疫系统的攻击。人骨髓间充质干细胞(hMSCs)可通过直接细胞接触或分泌营养因子来改善β细胞的功能和存活率。当前与β细胞的共培养概念较为简单,无法充分利用hMSCs的有利特性。β细胞需要三维(3D)环境才能正常发挥功能,因此共培养设置更为复杂。本综述讨论了hMSCs和β细胞的3D培养形式(聚集体、胶囊和载体)以及大规模培养策略。我们确定了hMSCs和β细胞共培养时必须平衡和考虑的工艺参数,并展示了几种适用于这种创新共培养方法的生物反应器设置。共培养过程的生物过程工程对于实现成功的β细胞治疗是必要的。