Department of Biochemistry & Molecular Biology, University of Calgary , Calgary, Canada .
Stem Cells Dev. 2017 Dec 15;26(24):1804-1817. doi: 10.1089/scd.2017.0090. Epub 2017 Nov 21.
Human induced pluripotent stem cells (hiPSCs) hold great hopes for application in regenerative medicine due to their inherent capacity to self-renew and differentiate into cells from the three embryonic germ layers. For clinical applications, a large quantity of hiPSCs produced in standardized and scalable culture processes is required. Several groups, including ours, have developed methodologies for scaled-up hiPSC production in stirred bioreactors in chemically defined medium. In this study, we optimized the critical steps and factors that affect hiPSC expansion and yield in stirred-suspension cultures, including inoculation conditions, seeding density, aggregate size, agitation rate, and cell passaging method. After multiple passages in stirred-suspension bioreactors, hiPSCs remained pluripotent, karyotypically normal, and capable of differentiating into all three germ layers.
人诱导多能干细胞(hiPSCs)由于其自我更新和分化为三个胚胎 germ 层细胞的固有能力,在再生医学中有很大的应用希望。对于临床应用,需要在标准化和可扩展的培养过程中大量生产 hiPSCs。包括我们在内的几个小组已经开发了在搅拌生物反应器中用化学定义的培养基大规模生产 hiPSC 的方法。在这项研究中,我们优化了影响搅拌悬浮培养中 hiPSC 扩增和产量的关键步骤和因素,包括接种条件、接种密度、聚集体大小、搅拌速度和细胞传代方法。在搅拌悬浮生物反应器中多次传代后,hiPSCs 仍保持多能性、染色体核型正常,并且能够分化为所有三个 germ 层。