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一种新型搅拌式在线监测生物反应器灌流培养模式用于 WJ-MSCs 的扩增。

A new perfusion mode of culture for WJ-MSCs expansion in a stirred and online monitored bioreactor.

机构信息

Laboratoire Réactions et Génie des Procédés, Université de Lorraine, CNRS UMR 7274, Vandoeuvre les Nancy, France.

Ingénierie Moléculaire et Physiopathologie Articulaire, Université de Lorraine, CNRS UMR 7365, Vandœuvre-lès-Nancy, France.

出版信息

Biotechnol Bioeng. 2021 Nov;118(11):4453-4464. doi: 10.1002/bit.27914. Epub 2021 Aug 21.

Abstract

As a clinical dose requires a minimum of 10 cells per kilogram of patients, it is, therefore, crucial to develop a scalable method of production of Wharton Jelly mesenchymal stem cells (WJ-MSCs) with maintained inner characteristics. Scalable expansion of WJ-MSCs on microcarriers usually found in cell culture, involves specific cell detachment using trypsin and could have harmful effects on cells. In this study, the performance of batch, fed-batch, and perfused-continuous mode of culture were compared. The batch and fed-batch modes resulted in expansion factors of 5 and 43, respectively. The perfused-continuous mode strategy consisted of the implementation of a settling tube inside the bioreactor. The diameter of the tube was calculated to maintain microcarriers colonized by cells in the bioreactor whereas empty microcarriers (responsible for potentially damaging collisions) were removed, using a continuous flow rate based on MSCs physiological requirements. Thanks to this strategy, a maximal number of 800 million cells was obtained in a 1.5 L bioreactor in 10 days. Lastly, online dielectric spectroscopy was implemented in the bioreactor and indicated that cell growth could be monitored during the culture.

摘要

由于临床剂量需要每位患者至少 10 个细胞,因此,开发一种可规模化生产具有维持内在特性的牙髓间充质干细胞(WJ-MSCs)的方法至关重要。在细胞培养中通常使用微载体来规模化扩增 WJ-MSCs,涉及使用胰蛋白酶特异性细胞分离,这可能对细胞产生有害影响。在这项研究中,比较了分批、补料分批和灌注连续培养模式的性能。分批和补料分批模式分别导致扩增因子为 5 和 43。灌注连续模式策略包括在生物反应器内实施沉降管。根据 MSCs 的生理需求,基于连续流速计算出管的直径,以保持生物反应器中细胞定植的微载体,同时去除空微载体(可能导致破坏性碰撞)。得益于该策略,在 10 天内,1.5L 生物反应器中获得了多达 8 亿个细胞。最后,在生物反应器中实施了在线介电光谱法,表明可以在培养过程中监测细胞生长。

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