Kato Yui, Uto Takuya, Tanaka Daisuke, Ishibashi Kojiro, Kobayashi Akiko, Hazawa Masaharu, Wong Richard W, Ninomiya Kazuaki, Takahashi Kenji, Hirata Eishu, Kuroda Kosuke
Faculty of Biological Science and Technology, Institute of Science and Engineering, Kanazawa University, Kakuma-machi, Kanazawa, 920-1192, Japan.
Organization for Promotion of Tenure Track, University of Miyazaki, Nishi 1-1 Gakuen-Kibanadai, Miyazaki, 889-2192, Japan.
Commun Chem. 2021 Oct 28;4(1):151. doi: 10.1038/s42004-021-00588-x.
Cryopreservation of cells is necessary for long periods of storage. However, some cell lines cannot be efficiently cryopreserved, even when optimized commercial cryoprotectants are employed. Previously, we found that a low-toxic synthetic zwitterion aqueous solution enabled good cryopreservation. However, this zwitterion solution could not cryopreserve some cells, such as human kidney BOSC cells, with good efficiency. Therefore, details of the cryoprotective effect of the zwitterions and optimization based on its mechanisms are required. Herein, we synthesized 18 zwitterion species and assessed the effects of the physical properties of water/zwitterion mixtures. Non-cell-permeable zwitterions can inhibit ice crystal formation extracellularly via direct interaction with water and intracellularly via dehydration of cells. However, cells that could not be cryopreserved by zwitterions were insufficiently dehydrated in the zwitterion solution. Dimethyl sulfoxide (DMSO) was combined as a cell-permeable cryoprotectant to compensate for the shortcomings of non-cell-permeable zwitterions. The water/zwitterion/DMSO (90/10/15, v/w/w) could cryopreserve different cells, for example freezing-vulnerable K562 and OVMANA cells; yielding ~1.8-fold cell viability compared to the case using a commercial cryoprotectant. Furthermore, molecular dynamics simulation indicated that the zwitterions protected the cell membrane from the collapse induced by DMSO.
细胞的冷冻保存对于长期储存是必要的。然而,即使使用经过优化的商业冷冻保护剂,一些细胞系也无法有效地进行冷冻保存。此前,我们发现一种低毒的合成两性离子水溶液能够实现良好的冷冻保存效果。然而,这种两性离子溶液无法高效地冷冻保存某些细胞,比如人肾BOSC细胞。因此,需要了解两性离子的冷冻保护作用细节并基于其机制进行优化。在此,我们合成了18种两性离子,并评估了水/两性离子混合物物理性质的影响。非细胞渗透性两性离子可通过与水的直接相互作用在细胞外抑制冰晶形成,并通过细胞脱水在细胞内抑制冰晶形成。然而,无法用两性离子冷冻保存的细胞在两性离子溶液中脱水不充分。将二甲基亚砜(DMSO)作为细胞渗透性冷冻保护剂联合使用,以弥补非细胞渗透性两性离子的不足。水/两性离子/DMSO(90/10/15,v/w/w)能够冷冻保存不同的细胞,例如对冷冻敏感的K562和OVMANA细胞;与使用商业冷冻保护剂的情况相比,细胞活力提高了约1.8倍。此外,分子动力学模拟表明,两性离子可保护细胞膜免受DMSO诱导的破坏。