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Winter is coming: the future of cryopreservation

机译:冬天即将到来:冷冻保存的未来

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摘要

An overview of the mechanisms of cryopreservation and CPAs. Cryopreservation utilises either slow cooling, in which the sample is frozen at a controlled rate to allow water to flow out of the cell and prevent intracellular ice formation, or vitrification in which a high freezing rate and/or high CPA concentration prevents ice formation in the sample. Ice growth can be further controlled by ice nucleation inhibitors, controlled ice nucleation, ice growth inhibitors or ice recrystallization inhibitors. Devitrification occurs when a vitrified sample is warmed too slowly, resulting in ice formation. Apoptosis inhibitors may also be utilised to prevent cells from dying after cryopreservation from stress-induced apoptosis
机译:冷冻保存和CPA机制概述。冷冻保存利用缓慢冷却,以控制速率冷冻样品以使水从细胞流出并防止细胞内冰形成,或者玻璃化,其中高冰速和/或高CPA浓度可防止冰形成样本。可以通过冰成核抑制剂,受控冰核,冰流量抑制剂或冰重结晶抑制剂进一步控制冰增长。当玻璃化样品温热太慢时,发生缺失,导致冰形成。凋亡抑制剂也可用于防止细胞在冷冻保存后从胁迫诱导的细胞凋亡后死亡

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