首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Trapped water of human erythrocytes and its application in cryopreservation.
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Trapped water of human erythrocytes and its application in cryopreservation.

机译:人红细胞的滞留水及其在冷冻保存中的应用。

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The novel differential scanning calorimetry method as a technique for determining human red cell volume during freezing process has been reexamined and has been shown to provide a final erythrocyte volume to be 53% of its isotonic value after freezing from 0 to -40 degrees C. A new type of electronic particle counter (Multisizer trade mark 3, Beckman Coulter Inc., USA) was used to measure cell volume changes in response to equilibration in anisotonic media, and which gave out an equilibrated volume to be 57% of cell isotonic value in solution of 3186 mOsm. Both of these results indicate that 34-40% of intracellular water is trapped and is unavailable for participation in osmotic shifts. These findings are consistent with the published data that at least 20-32% (v/v) of the isotonic cell water is retained within RBCs. Then the application of trapped water in both simulation of freezing models and freezing-drying control was pointed out.
机译:作为在冷冻过程中确定人类红细胞体积的一种技术,新型的差示扫描量热法已经过重新检查,并显示从0到-40摄氏度冷冻后,最终的红细胞体积为其等渗值的53%。新型电子粒子计数器(Multisizer商标3,美国贝克曼库尔特公司(Beckman Coulter Inc.),美国)用于测量细胞体积变化,以响应等渗介质中的平衡,得出的平衡体积为细胞等渗值的57%。 3186 mOsm的溶液。这两个结果都表明,有34-40%的细胞内水被捕获,无法参与渗透运动。这些发现与已发表的数据一致,即至少20-32%(v / v)的等渗细胞水保留在RBC中。然后指出了截留水在冻结模型模拟和冻结干燥控制中的应用。

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