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仿生材料与技术在先进低温保存中的应用

Bioinspired materials and technology for advanced cryopreservation.

机构信息

Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, 100190, China; School of Engineering Science, University of Chinese Academy of Sciences, Beijing, 100049, China; Beijing Key Laboratory of Cryo-Biomedical Engineering, Beijing, 100190, China.

Key Laboratory of Cryogenics, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing, 100190, China; Beijing Key Laboratory of Cryo-Biomedical Engineering, Beijing, 100190, China; School of Future Technology, University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Trends Biotechnol. 2022 Jan;40(1):93-106. doi: 10.1016/j.tibtech.2021.06.004. Epub 2021 Jul 5.

Abstract

Cryopreservation can help to meet the demand for biosamples of high medical value. However, it remains difficult to effectively cryopreserve some sensitive cells, tissues, and reproductive organs. A coordinated effort from the perspective of the whole frozen biological system is necessary to advance cryopreservation technology. Animals that survive in cold temperatures, such as hibernators and cold-tolerant insects, offer excellent natural models. Their anti-cold strategies, such as programmed suppression of metabolism and the synthesis of cryoprotectants (CPAs), warrant systematic study. Furthermore, the discovery and synthesis of metabolism-regulating and cryoprotective biomaterials, combined with biotechnological breakthroughs, can also promote the development of cryopreservation. Further advances in the quality and duration of biosample storage inspired by nature will promote the application of cryopreserved biosamples in clinical therapy.

摘要

冷冻保存有助于满足具有高医学价值的生物样本的需求。然而,要有效地冷冻保存一些敏感的细胞、组织和生殖器官仍然很困难。需要从整个冷冻生物系统的角度进行协调努力,以推进冷冻保存技术。在低温环境中生存的动物,如冬眠动物和耐寒昆虫,提供了极好的天然模型。它们的抗冷策略,如代谢的程序性抑制和冷冻保护剂 (CPAs) 的合成,值得系统研究。此外,代谢调节和冷冻保护生物材料的发现和合成,结合生物技术的突破,也可以促进冷冻保存的发展。受自然启发的生物样本存储质量和持续时间的进一步提高将促进冷冻保存生物样本在临床治疗中的应用。

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