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Synthetic zwitterions as efficient non-permeable cryoprotectants

Biology

Synthetic zwitterions as efficient non-permeable cryoprotectants

Y. Kato, T. Uto, et al.

Discover how synthetic zwitterions can revolutionize cryopreservation techniques for cells. This research, conducted by Yui Kato, Takuya Uto, Daisuke Tanaka, and their colleagues, reveals that combining zwitterions with DMSO enhances cell viability beyond traditional cryoprotectants, particularly for cells vulnerable to freezing damage.... show more
Abstract
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 approximately 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.
Publisher
Communications Chemistry
Published On
Oct 28, 2021
Authors
Yui Kato, Takuya Uto, Daisuke Tanaka, Kojiro Ishibashi, Akiko Kobayashi, Masaharu Hazawa, Richard W. Wong, Kazuaki Ninomiya, Kenji Takahashi, Eishu Hirata, Kosuke Kuroda
Tags
synthetic zwitterions
cryoprotectants
cell viability
DMSO
cryopreservation
ice crystal formation
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