Patel Madhumita, Vernon Brent, Jeong Byeongmoon
Department of Chemistry and Nanoscience, Ewha Womans University, 52 Ewhayeodae-gil, Seodaemun-gu, Seoul 03760, Republic of Korea.
School of Biological and Health Systems Engineering, Arizona State University, Tempe, AZ 85287-9709, USA.
Biomater Res. 2024 Jun 6;28:0037. doi: 10.34133/bmr.0037. eCollection 2024.
Stem cell spheroids (SCSs) are a valuable tool in stem cell research and regenerative medicine. SCSs provide a platform for stem cell behavior in a more biologically relevant context with enhanced cell-cell communications. In this study, we investigated the recovery of SCSs after cryopreservation at -196 °C for 7 days. Prior to cryopreservation, the SCSs were preincubated for 0 h (no preincubation), 2 h, 4 h, and 6 h at 37 °C in the presence of low-molecular-weight poly(ethylene glycol) (PEG) with molecular weights of 200, 400, and 600 Da. The recovery rate of SCSs was markedly affected by both the PEG molecular weight and the preincubation time. Specifically, when SCSs were preincubated with a PEG200 solution for 2 to 6 h, it significantly enhanced the recovery rate of the SCSs. Internalization of PEG200 through simple diffusion into the SCSs may be the cryoprotective mechanism. The PEG200 diffuses into the SCSs, which not only suppresses osmotic pressure development inside the cell but also inhibits ice formation. The recovered SCSs demonstrated both fusibility and capabilities for proliferation and differentiation comparable to SCSs recovered after dimethyl sulfoxide 10% cryopreservation. This study indicates that PEG200 serves as an effective cryoprotectant for SCSs. A simple preincubation procedure in the presence of the polymer greatly improves the recovery rate of SCSs from cryopreservation.
干细胞球状体(SCSs)是干细胞研究和再生医学中的一种宝贵工具。SCSs为干细胞行为提供了一个更具生物学相关性的平台,增强了细胞间通讯。在本研究中,我们调查了SCSs在-196°C冷冻保存7天后的恢复情况。在冷冻保存前,将SCSs在37°C下分别在分子量为200、400和600 Da的低分子量聚乙二醇(PEG)存在下预孵育0小时(无预孵育)、2小时、4小时和6小时。SCSs的恢复率受到PEG分子量和预孵育时间的显著影响。具体而言,当SCSs与PEG200溶液预孵育2至6小时时,它显著提高了SCSs的恢复率。PEG200通过简单扩散内化到SCSs中可能是其冷冻保护机制。PEG200扩散到SCSs中,这不仅抑制了细胞内渗透压的形成,还抑制了冰的形成。恢复后的SCSs表现出与10%二甲基亚砜冷冻保存后恢复的SCSs相当的融合性以及增殖和分化能力。本研究表明,PEG200可作为SCSs的有效冷冻保护剂。在聚合物存在下进行简单的预孵育程序可大大提高SCSs冷冻保存后的恢复率。