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EVALUATION OF THE CRYOPROTECTIVE EFFECT OF SUGARS ON SURVIVAL OF HUMAN ERYTHROCYTES CRYOPRESERVED AT -80°C

机译:糖对-80°C低温保存的人类红细胞存活的低温保护作用的评估

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Sugars can be loaded into erythrocyte cytoplasma by simple incubation, which makes cryopreservation of human erythrocytes without glycerol feasible. The cryoprotective effect of sugars on human erythrocytes was evaluated in this study. Erythrocytes loaded with sugars were frozen in a formulation of polyvinylpyrrolidone, human serum albumin, and corresponding sugars. The data showed the efficiency of sugar loading was dependent on extracellular sugar concentration, incubation temperature and time. Sugars can decrease hemolysis and protect metabolic function of cryopreserved erythrocytes, especially for glucose. However, compared with glucose, trehalose can maintain phosphatidylserine distribution of cryopreserved erythrocytes. Finally, sugars can protect integrity of membrane morphology after freezing, but some cell shape appeared spherocytic or echinocytic. In conclusion, sugar loading benefits the survival of cryopreserved erythrocytes. But trehalose loading causes more cell injuries compared with glucose, and these injuries in turn manifest themselves during subsequent freezing and thawing.
机译:可以通过简单的孵育将糖装载到红细胞胞浆中,这使得在不使用甘油的情况下冷冻保存人红细胞成为可能。在这项研究中评估了糖对人红细胞的冷冻保护作用。将载有糖的红细胞冷冻在聚乙烯吡咯烷酮,人血清白蛋白和相应糖的制剂中。数据显示糖装载的效率取决于细胞外糖浓度,孵育温度和时间。糖可以减少溶血并保护冷冻保存的红细胞的代谢功能,尤其是葡萄糖。然而,与葡萄糖相比,海藻糖可以维持冷冻保存的红细胞的磷脂酰丝氨酸分布。最后,糖可以在冷冻后保护膜形态的完整性,但是一些细胞形状出现了球细胞或单核细胞。总之,糖负荷有益于冷冻保存的红细胞的存活。但是,与葡萄糖相比,海藻糖负荷会导致更多的细胞损伤,而这些损伤又会在随后的冷冻和解冻过程中表现出来。

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