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微载体悬浮培养中提高人骨髓间充质干细胞的扩增。

Improved expansion of human bone marrow-derived mesenchymal stem cells in microcarrier-based suspension culture.

机构信息

Pharmaceutical Production Research Facility (PPRF), Schulich School of Engineering, University of Calgary, Calgary, Alberta, Canada.

出版信息

J Tissue Eng Regen Med. 2014 Mar;8(3):210-25. doi: 10.1002/term.1515. Epub 2012 Jun 11.

Abstract

Human bone marrow-derived mesenchymal stem cells (hBM-MSCs) have potential clinical utility in the treatment of a multitude of ailments and diseases, due to their relative ease of isolation from patients and their capacity to form many cell types. However, hBM-MSCs are sparse, and can only be isolated in very small quantities, thereby hindering the development of clinical therapies. The use of microcarrier-based stirred suspension bioreactors to expand stem cell populations offers an approach to overcome this problem. Starting with standard culture protocols commonly reported in the literature, we have successfully developed new protocols that allow for improved expansion of hBM-MSCs in stirred suspension bioreactors using CultiSpher-S microcarriers. Cell attachment was facilitated by using intermittent bioreactor agitation, removing fetal bovine serum, modifying the stirring speed and manipulating the medium pH. By manipulating these parameters, we enhanced the cell attachment efficiency in the first 8 h post-inoculation from 18% (standard protocol) to 72% (improved protocol). Following microcarrier attachment, agitation rate was found to impact cell growth kinetics, whereas feeding had no significant effect. By serially subculturing hBM-MSCs using the new suspension bioreactor protocols, we managed to obtain cell fold increases of 10³ within 30 days, which was superior to the 200-fold increase obtained using the standard protocol. The cells were found to retain their defining characteristics after several passages in suspension. This new bioprocess represents a more efficient approach for generating large numbers of hBM-MSCs in culture, which in turn should facilitate the development of new stem cell-based therapies.

摘要

人骨髓间充质干细胞(hBM-MSCs)由于其易于从患者中分离以及能够形成多种细胞类型的特性,在治疗多种疾病和病症方面具有潜在的临床应用价值。然而,hBM-MSCs 数量稀少,只能从患者中分离得到非常少量的细胞,从而阻碍了临床治疗方法的发展。使用基于微载体的搅拌悬浮生物反应器来扩增干细胞群体提供了一种克服这个问题的方法。我们从文献中常用的标准培养方案开始,成功开发了新的方案,允许使用 CultiSpher-S 微载体在搅拌悬浮生物反应器中更好地扩增 hBM-MSCs。通过间歇搅拌生物反应器、去除胎牛血清、调整搅拌速度和调节培养基 pH 值来促进细胞附着。通过操纵这些参数,我们将接种后 8 小时内的细胞附着效率从 18%(标准方案)提高到 72%(改进方案)。微载体附着后,发现搅拌速度会影响细胞生长动力学,而喂养没有显著影响。通过使用新的悬浮生物反应器方案对 hBM-MSCs 进行连续传代培养,我们设法在 30 天内获得了 10³的细胞倍增,优于使用标准方案获得的 200 倍的增加。细胞在悬浮培养中经过多次传代后仍保留其特征。这种新的生物工艺代表了一种更有效的方法,可以在培养中产生大量的 hBM-MSCs,从而促进新的基于干细胞的治疗方法的发展。

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