Mommaerts Kathleen, Okawa Satoshi, Schmitt Margaux, Kofanova Olga, Turner Tracey R, Ben Robert N, Del Sol Antonio, Mathieson William, Schwamborn Jens C, Acker Jason P, Betsou Fay
Integrated Biobank of Luxembourg, Luxembourg Institute of Health, 1 rue Louis Rech, L-3555 Dudelange, Luxembourg; Luxembourg Centre for Systems Biomedicine (LCSB), University of Luxembourg, 2 avenue de Université, L-4365 Esch-sur-Alzette, Luxembourg.
Luxembourg Centre for Systems Biomedicine (LCSB), University of Luxembourg, 2 avenue de Université, L-4365 Esch-sur-Alzette, Luxembourg.
Stem Cell Res. 2024 Dec;81:103583. doi: 10.1016/j.scr.2024.103583. Epub 2024 Oct 18.
The successful use of human induced pluripotent stem cells (iPSCs) for research or clinical applications requires the development of robust, efficient, and reproducible cryopreservation protocols. After cryopreservation, the survival rate of iPSCs is suboptimal and cell line-dependent. We assessed the use of ice recrystallization inhibitors (IRIs) for cryopreservation of human iPSCs. A toxicity screening study was performed to assess specific small-molecule carbohydrate-based IRIs and concentrations for further evaluation. Then, a cryopreservation study compared the cryoprotective efficiency of 15 mM IRIs in 5 % or 10 % DMSO-containing solutions and with CryoStor® CS10. Three iPSC lines were cryopreserved as single-cell suspensions in the cryopreservation solutions and post-thaw characteristics, including pluripotency and differential gene expression were assessed. We demonstrate the fitness-for-purpose of 15 mM IRI in 5 % DMSO as an efficient cryoprotective solution for iPSCs in terms of post-thaw recovery, viability, pluripotency, and transcriptomic changes. This mRNA sequencing dataset has the potential to be used for molecular mechanism analysis relating to cryopreservation. Use of IRIs can reduce DMSO concentrations and its associated toxicities, thereby improving the utility, effectiveness, and efficiency of cryopreservation.
将人类诱导多能干细胞(iPSC)成功用于研究或临床应用需要开发强大、高效且可重复的冷冻保存方案。冷冻保存后,iPSC的存活率并不理想,且依赖于细胞系。我们评估了使用重结晶抑制剂(IRI)对人类iPSC进行冷冻保存的效果。进行了一项毒性筛选研究,以评估特定的基于小分子碳水化合物的IRI及其浓度,以便进一步评估。然后,一项冷冻保存研究比较了15 mM IRI在含5%或10%二甲基亚砜(DMSO)的溶液中以及与CryoStor® CS10的冷冻保护效率。将三个iPSC系作为单细胞悬液保存在冷冻保存溶液中,并评估解冻后的特性,包括多能性和差异基因表达。我们证明了在5% DMSO中使用15 mM IRI作为iPSC的有效冷冻保护溶液在解冻后恢复、活力、多能性和转录组变化方面的适用性。这个mRNA测序数据集有潜力用于与冷冻保存相关的分子机制分析。使用IRI可以降低DMSO浓度及其相关毒性,从而提高冷冻保存的实用性、有效性和效率。