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工程化微流控平台冷冻保存干细胞:一种无 DMSO 的可持续方法。

Engineering a Microfluidic Platform to Cryopreserve Stem Cells: A DMSO-Free Sustainable Approach.

机构信息

Department of Chemical and Petroleum Engineering, Bioengineering Graduate Program, School of Engineering, The University of Kansas, Lawrence, KS, 66045, USA.

Department of Biomedical Engineering, Illinois Institute of Technology, Chicago, IL, 60616, USA.

出版信息

Adv Healthc Mater. 2024 Nov;13(29):e2401264. doi: 10.1002/adhm.202401264. Epub 2024 Aug 17.

Abstract

Human adipose-derived stem cells (hASCs) are cryopreserved traditionally using dimethyl sulfoxide (DMSO) as the cryoprotectant agent. DMSO penetrates cell membranes and prevents cellular damage during cryopreservation. However, DMSO is not inert to cells, inducing cytotoxic effects by causing mitochondrial dysfunction, reduced cell proliferation, and impaired hASCs transplantation. Additionally, large-scale production of DMSO and contamination can adversely impact the environment. A sustainable, green alternative to DMSO is trehalose, a natural disaccharide cryoprotectant agent that does not pose any risk of cytotoxicity. However, the cellular permeability of trehalose is less compared to DMSO. Here, a microfluidic chip is developed for the intracellular delivery of trehalose in hASCs. The chip is designed for mechanoporation, which creates transient pores in cell membranes by mechanical deformation. Mechanoporation allows the sparingly permeable trehalose to be internalized within the cell cytosol. The amount of trehalose delivered intracellularly is quantified and optimized based on cellular compatibility and functionality. Furthermore, whole-transcriptome sequencing confirms that less than 1% of all target genes display at least a twofold change in expression when cells are passed through the chip compared to untreated cells. Overall, the results confirm the feasibility and effectiveness of using this microfluidic chip for DMSO-free cryopreservation of hASCs.

摘要

人脂肪来源的干细胞(hASCs)传统上使用二甲基亚砜(DMSO)作为冷冻保护剂进行冷冻保存。DMSO 穿透细胞膜,防止细胞在冷冻保存过程中受损。然而,DMSO 对细胞并非惰性,它会导致线粒体功能障碍、细胞增殖减少和 hASCs 移植受损,从而产生细胞毒性作用。此外,DMSO 的大规模生产和污染会对环境产生不利影响。DMSO 的一种可持续、绿色替代品是海藻糖,它是一种天然的二糖冷冻保护剂,不会产生任何细胞毒性风险。然而,与 DMSO 相比,海藻糖的细胞通透性较低。在这里,开发了一种用于 hASCs 细胞内海藻糖输送的微流控芯片。该芯片专为机械穿孔而设计,通过机械变形在细胞膜上产生瞬时孔。机械穿孔允许渗透能力较差的海藻糖在细胞胞质溶胶中被内化。根据细胞相容性和功能,对细胞内输送的海藻糖的量进行定量和优化。此外,全转录组测序证实,与未经处理的细胞相比,当细胞通过芯片传递时,所有靶基因中只有不到 1%的基因表达至少增加了两倍。总的来说,这些结果证实了使用这种微流控芯片进行无 DMSO 的 hASCs 冷冻保存的可行性和有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/106d/11582517/87292dc95839/ADHM-13-0-g003.jpg

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