Suppr超能文献

基于羟乙基化甲基溶纤剂的培养基的冷冻保护特性与物理化学性质之间的关系。

The relation between cryoprotective and physicochemical properties of oxyethylated methyl cellosolve-based media.

作者信息

Nikolenko A V, Chekanova V V, Schetinsky M I, Vyazovska O V

机构信息

Institute for Problems of Cryobiology and Cryomedicine, National Academy of Sciences of Ukraine, Kharkov, Ukraine.

出版信息

Cryo Letters. 2013 Sep-Oct;34(5):527-34.

Abstract

Oxyethyl derivatives of polyol class members such as glycerol and ethylene glycol with various polymerization degrees possess low toxicity and cryoprotective properties via an exocellular mechanism. To develop the cryoprotective media based on non-penetrating cryoprotectants, we studied cryoprotective and physico-chemical properties of oxyethylated methyl cellosolve (OEMC)-based media. Media containing 20% and 30% OEMC were prepared with 50 mmol/l and 150 mmol/l NaCl. In some media, NaCl content was reduced, and sucrose, mannitol or glucose was added to attain the isotonic media. Cryopreservation of red blood cells depends on the media composition and physico-chemical properties. The increases in dynamic viscosity due to higher OEMC concentration and in ionic strength resulted from higher NaCl concentration lead to greater erythrocytes dehydration prior to freezing, and lower red blood cell preservation upon freezing. Salt substitution with carbohydrates in 20% OEMC media reduces ionic strength and increases OEMC distribution coefficient. The correlation of red blood cell protection upon freezing is discussed in terms of the media physico-chemical properties (ionic strength, viscosity and surface tension), cryoprotectant distribution coefficient, and cell dehydration.

摘要

多元醇类成员(如甘油和乙二醇)的不同聚合度的氧乙基衍生物通过细胞外机制具有低毒性和冷冻保护特性。为了开发基于非渗透性冷冻保护剂的冷冻保护介质,我们研究了基于氧乙基化甲基溶纤剂(OEMC)的介质的冷冻保护和物理化学性质。含有20%和30% OEMC的介质分别用50 mmol/l和150 mmol/l NaCl制备。在一些介质中,降低了NaCl含量,并添加了蔗糖、甘露醇或葡萄糖以达到等渗介质。红细胞的冷冻保存取决于介质组成和物理化学性质。较高的OEMC浓度导致动态粘度增加,较高的NaCl浓度导致离子强度增加,这会导致冷冻前红细胞脱水加剧,以及冷冻后红细胞保存率降低。在20% OEMC介质中用碳水化合物替代盐会降低离子强度并增加OEMC分配系数。从介质的物理化学性质(离子强度、粘度和表面张力)、冷冻保护剂分配系数和细胞脱水方面讨论了冷冻时红细胞保护的相关性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验