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用于冷冻保存的冰抑制:材料、策略与挑战

Ice Inhibition for Cryopreservation: Materials, Strategies, and Challenges.

作者信息

Chang Tie, Zhao Gang

机构信息

Department of Electronic Science and Technology University of Science and Technology of China Hefei Anhui 230027 China.

出版信息

Adv Sci (Weinh). 2021 Feb 1;8(6):2002425. doi: 10.1002/advs.202002425. eCollection 2021 Mar.

Abstract

Cryopreservation technology has developed into a fundamental and important supporting method for biomedical applications such as cell-based therapeutics, tissue engineering, assisted reproduction, and vaccine storage. The formation, growth, and recrystallization of ice crystals are the major limitations in cell/tissue/organ cryopreservation, and cause fatal cryoinjury to cryopreserved biological samples. Flourishing anti-icing materials and strategies can effectively regulate and suppress ice crystals, thus reducing ice damage and promoting cryopreservation efficiency. This review first describes the basic ice cryodamage mechanisms in the cryopreservation process. The recent development of chemical ice-inhibition molecules, including cryoprotectant, antifreeze protein, synthetic polymer, nanomaterial, and hydrogel, and their applications in cryopreservation are summarized. The advanced engineering strategies, including trehalose delivery, cell encapsulation, and bioinspired structure design for ice inhibition, are further discussed. Furthermore, external physical field technologies used for inhibiting ice crystals in both the cooling and thawing processes are systematically reviewed. Finally, the current challenges and future perspectives in the field of ice inhibition for high-efficiency cryopreservation are proposed.

摘要

冷冻保存技术已发展成为细胞治疗、组织工程、辅助生殖和疫苗储存等生物医学应用的一种基本且重要的支撑方法。冰晶的形成、生长和重结晶是细胞/组织/器官冷冻保存的主要限制因素,并会对冷冻保存的生物样本造成致命的冷冻损伤。蓬勃发展的抗冻材料和策略可以有效地调节和抑制冰晶,从而减少冰损伤并提高冷冻保存效率。本文综述首先描述了冷冻保存过程中基本的冰冷冻损伤机制。总结了化学抑冰分子(包括冷冻保护剂、抗冻蛋白、合成聚合物、纳米材料和水凝胶)的最新进展及其在冷冻保存中的应用。进一步讨论了先进的工程策略,包括海藻糖递送、细胞封装和受生物启发的抑冰结构设计。此外,还系统综述了在冷却和解冻过程中用于抑制冰晶的外部物理场技术。最后,提出了高效冷冻保存领域中冰抑制方面当前面临的挑战和未来展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3b1/7967093/cc7db8f2d7ce/ADVS-8-2002425-g017.jpg

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