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膜热致性对人红细胞低渗溶血和高渗冷冻溶血的作用

Role of membrane thermotropic properties on hypotonic hemolysis and hypertonic cryohemolysis of human red blood cells.

作者信息

Minetti M, Ceccarini M, Di Stasi A M

出版信息

J Cell Biochem. 1984;25(2):61-72. doi: 10.1002/jcb.240250202.

Abstract

The hypothesis of a correlation between the effects of temperature on red blood cells hypotonic hemolysis and hypertonic cryohemolysis and two thermotropic structural transitions evidenced by EPR studies has been tested. Hypertonic cryohemolysis of red blood cells shows critical temperatures at 7 degrees C and 19 degrees C. In hypotonic solution, the osmotic resistance increases near 10 degrees C and levels off above 20 degrees C. EPR studies of red blood cell membrane of a 16-dinyloxyl stearic acid spin label show, in the 0-50 degrees C range, the presence of three thermotropic transitions at 8, 20, and 40 degrees C. Treatments of red blood cells with acidic or alkaline pH, glutaraldehyde, and chlorpromazine abolish hypertonic cryohemolysis and reduce the effect of temperature on hypotonic hemolysis. 16-Dinyloxyl stearic acid spectra of red blood cells treated with glutaraldehyde and chlorpromazine show the disappearance of the 8 degrees C transition. Both the 8 degrees C and the 20 degrees C transitions were abolished by acidic pH treatment. The correlation between the temperature dependence of red blood cell lysis and thermotropic breaks might be indicative of the presence of structural transitions producing areas of mismatching between differently ordered membrane components where the osmotic resistance is decreased.

摘要

温度对红细胞低渗溶血和高渗冷冻溶血的影响与电子顺磁共振(EPR)研究证明的两个热致结构转变之间存在相关性这一假说已得到验证。红细胞的高渗冷冻溶血在7℃和19℃时显示出临界温度。在低渗溶液中,渗透压抗性在10℃附近增加,并在20℃以上趋于平稳。对16 - 二甲基氧化硬脂酸自旋标记的红细胞膜进行的EPR研究表明,在0 - 50℃范围内,在8℃、20℃和40℃存在三个热致转变。用酸性或碱性pH值、戊二醛和氯丙嗪处理红细胞可消除高渗冷冻溶血,并降低温度对低渗溶血的影响。用戊二醛和氯丙嗪处理的红细胞的16 - 二甲基氧化硬脂酸光谱显示8℃转变消失。酸性pH处理消除了8℃和20℃的转变。红细胞裂解的温度依赖性与热致断裂之间的相关性可能表明存在结构转变,从而导致不同有序膜成分之间出现不匹配区域,进而降低渗透压抗性。

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