Liu Min, Chen Changhong, Liang Lei, Yu Chaojie, Guo Bingyan, Zhang Haitao, Qiu Yuwei, Zhang Hong, Yao Fanglian, Li Junjie
Department of Polymer Science, School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, China.
Haihe Laboratory of Sustainable Chemical Transformations, Tianjin, 300192, China.
J Mater Chem B. 2023 Mar 15;11(11):2504-2517. doi: 10.1039/d3tb00005b.
The preservation of cells at cryogenic temperatures requires the presence of cryoprotectants (CPAs). Dimethyl sulfoxide (DMSO), as a state-of-the-art CPA, is widely used for the storage of many types of cells. However, its intrinsic toxicity is still an obstacle for its applications in clinical practice. Herein, we report a DMSO analogue, L-methionine sulfoxide (Met(O)-OH), as a CPA for cell cryopreservation. The molecular-level cryopreservation roles of Met(O)-OH were investigated by experiments and molecular dynamics simulations. The results also found that Met(O)-OH showed high ice recrystallization inhibition (IRI) activity and the ice crystals in Met(O)-OH solution tend to be relatively round and smooth; moreover, the ice size was significantly reduced to 30.26 μm compared with pure water (135.87 μm) or DMSO solution (45.08 μm). At the molecular level, Met(O)-OH could stably bind the surface of the ice crystals and form more stable hydrogen bonds with ice compared with L-methionine. Moreover, Met(O)-OH could significantly reduce the damage to cells caused by osmotic shock and did not change the cell viability even at high concentration (4%). Based on these results, nucleated L929 cells and anuclear sheep red blood cells (SRBCs) were used as cell models to investigate the cryopreservation activity of Met(O)-OH. The results suggested that, under the optimum protocol, Met(O)-OH showed an effective post-thaw survival efficiency with ultrarapid freezing, and the post-thaw survival efficiency of L929 cells reached 84.0%. This work opens up the possibility for an alternative to traditional toxic CPA DMSO, and provides insights for the development of DMSO analogues with non-toxic/low toxicity for cell cryoprotection applications.
在低温下保存细胞需要使用冷冻保护剂(CPA)。二甲基亚砜(DMSO)作为一种先进的CPA,被广泛用于多种类型细胞的储存。然而,其固有的毒性仍然是其在临床实践中应用的障碍。在此,我们报道了一种DMSO类似物,L-甲硫氨酸亚砜(Met(O)-OH),作为一种用于细胞冷冻保存的CPA。通过实验和分子动力学模拟研究了Met(O)-OH在分子水平上的冷冻保存作用。结果还发现,Met(O)-OH表现出高的抑制冰重结晶(IRI)活性,并且Met(O)-OH溶液中的冰晶倾向于相对圆润光滑;此外,与纯水(135.87μm)或DMSO溶液(45.08μm)相比,冰尺寸显著减小至30.26μm。在分子水平上,与L-甲硫氨酸相比,Met(O)-OH可以稳定地结合在冰晶表面并与冰形成更稳定的氢键。此外,Met(O)-OH可以显著降低渗透休克对细胞造成的损伤,即使在高浓度(4%)下也不会改变细胞活力。基于这些结果,以有核L929细胞和无核绵羊红细胞(SRBC)作为细胞模型研究了Met(O)-OH的冷冻保存活性。结果表明,在最佳方案下,Met(O)-OH在超快速冷冻时表现出有效的解冻后存活效率,L929细胞的解冻后存活效率达到84.0%。这项工作为替代传统有毒的CPA DMSO开辟了可能性,并为开发用于细胞冷冻保护应用的无毒/低毒DMSO类似物提供了见解。