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糖尿病患者红细胞膜的流动性梯度:间苯二酚亚甲基氨基胍的作用

Fluidity gradient of erythrocyte membranes in diabetics: the effect of resorcylidene aminoguanidine.

作者信息

Waczulíková Iveta, Sikurová Libusa, Cársky Jozef

机构信息

Department of Biophysics and Chemical Physics, Faculty of Mathematics and Physics, Comenius University, Mlynská dolina F1, 842 48 Bratislava SK, Slovak Republic.

出版信息

Bioelectrochemistry. 2002 Jan;55(1-2):53-5. doi: 10.1016/s1567-5394(01)00134-7.

Abstract

We estimated in vitro membrane fluidity gradient in erythrocytes (RBC) from diabetic patients, using a fluorescent dye 1,6-diphenyl-1,3,5-hexatriene (DPH). The rate constant of DPH incorporation (k) into the membranes was determined by fitting experimental data to an exponential equation. Four important findings were made. First, membrane fluidity in the hydrocarbon region of RBC from diabetic patients is decreased compared with control cells (P<0.01). Second, the rate constant k of DPH incorporation into the membranes of RBC from diabetic patients was lower (P<0.01), which indicates an altered fluidity gradient in the membranes. Third, resorcylidene aminoguanidine (RAG) decreased significantly (P<0.001) the anisotropy values in RBC membranes from diabetic patients, which means that it apparently acted as a fluidizing agent. Lastly, no significant differences in the rate constants k were found between the control membranes (from RAG untreated RBC) and the membranes isolated from RAG pretreated blood from diabetic patients, as well as between the control membranes and those from RAG pretreated control blood. In conclusion, RAG affects lipid-protein interactions in RBC membranes, which results in membrane lipid bilayer fluidization and leads to the restoration of natural physiological membrane dynamic parameters in RBC from diabetic patients.

摘要

我们使用荧光染料1,6-二苯基-1,3,5-己三烯(DPH)估算了糖尿病患者红细胞(RBC)的体外膜流动性梯度。通过将实验数据拟合到指数方程来确定DPH掺入膜中的速率常数(k)。得出了四个重要发现。第一,与对照细胞相比,糖尿病患者红细胞烃区域的膜流动性降低(P<0.01)。第二,糖尿病患者红细胞膜中DPH掺入的速率常数k较低(P<0.01),这表明膜中的流动性梯度发生了改变。第三,间苯二酚亚甲基氨基胍(RAG)显著降低(P<0.001)了糖尿病患者红细胞膜中的各向异性值,这意味着它显然起到了流化剂的作用。最后,在对照膜(来自未用RAG处理的红细胞)与从糖尿病患者经RAG预处理的血液中分离出的膜之间,以及在对照膜与来自经RAG预处理的对照血液的膜之间,未发现速率常数k有显著差异。总之,RAG影响红细胞膜中的脂-蛋白相互作用,这导致膜脂质双分子层流化,并使糖尿病患者红细胞的天然生理膜动态参数得以恢复。

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