Wyrobnik Tom A, Miranda Laia, Lam Alan, Oh Steve, Ducci Andrea, Micheletti Martina
Department of Biochemical Engineering, UCL, London, UK.
Bioprocessing Technology Institute, A*STAR, Singapore, Singapore.
Biotechnol Bioeng. 2025 Oct;122(10):2803-2818. doi: 10.1002/bit.70025. Epub 2025 Jul 17.
This paper describes the results of process developmental experiments to achieve higher cell densities in the manufacturing of hMSCs using the novel Bach impeller in a stirred-tank bioreactor. Engineering experiments have previously shown that the Bach impeller represents an efficient mixing device that suspends particles in fluids at low power inputs. To assess the impeller during biological experiments, the growth performance of Wharton Jelly (WJ)-hMSCs in a 1 L STR equipped with the Bach impeller was evaluated at a variety of culture conditions. The cells attached to Cytodex 1 microcarriers at a concentration of 5.6 g/L and were cultured for 5-7 days. The growth phase was carried out at varying impeller speeds = 75, 115, and 150 rpm. Cell growth was additionally evaluated at a microcarrier concentration of 11.2 g/L Cytodex 1. Here, a maximum cell density of up to 1.7 × 10 cells/mL and cell viability > 90% was achieved within 5 culture days, which is amongst the highest cell densities ever attained for a hMSC batch culture. Critical cell quality attributes of the WJ-hMSCs were assessed upon completion of the growth phase, that is, FACS to identify stem cell surface markers, tri-lineage differentiation, and capacity of the cells to form colonies. In addition, informed by the previously described engineering characterization, the 1 L process at = 75 rpm was scaled up to the 5 L scale, where WJ-hMSCs were again confirmed to have retained the relevant cell quality attributes. The reported findings are important to determine the design space to which scale-ups to even larger tank sizes can adhere.
本文描述了在搅拌罐生物反应器中使用新型巴赫叶轮制造人间充质干细胞(hMSCs)以实现更高细胞密度的工艺开发实验结果。工程实验先前已表明,巴赫叶轮是一种高效的混合装置,能够在低功率输入下使颗粒悬浮在流体中。为了在生物实验中评估该叶轮,在配备巴赫叶轮的1升搅拌罐式反应器(STR)中,于多种培养条件下评估了沃顿胶(WJ)-hMSCs的生长性能。细胞以5.6 g/L的浓度附着于Cytodex 1微载体上,并培养5 - 7天。生长阶段在不同的叶轮转速(75、115和150 rpm)下进行。还在微载体浓度为11.2 g/L Cytodex 1的条件下评估了细胞生长情况。在此,在5个培养日内实现了高达1.7×10⁶个细胞/mL的最大细胞密度以及>90%的细胞活力,这是hMSC批次培养中所达到的最高细胞密度之一。在生长阶段完成后,评估了WJ-hMSCs的关键细胞质量属性,即通过荧光激活细胞分选(FACS)来鉴定干细胞表面标志物、三系分化以及细胞形成集落的能力。此外,根据先前描述的工程特性,将75 rpm下的1升工艺放大至5升规模,在此规模下再次证实WJ-hMSCs保留了相关的细胞质量属性。所报告的研究结果对于确定扩大至更大罐体尺寸时可遵循的设计空间很重要。