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马、牛和人类物种的膜流动性及红细胞聚集研究。

Study on membrane fluidity and erythrocyte aggregation in equine, bovine and human species.

作者信息

Spengler M I, Bertoluzzo S M, Catalani G, Rasia M L

机构信息

Departamento de Ciencias Fisiológicas, Cátedra de Física Biológica, Facultad de Ciencias Médicas, Universidad Nacional de Rosario, Santa Fe 3100, CP 2000, Rosario, Argentina.

出版信息

Clin Hemorheol Microcirc. 2008;38(3):171-6.

Abstract

The aim of the present paper is to analyze whether membrane fluidity can be predicted from its lipid composition and to assay the possible relationship between such variable and the aggregating properties of erythrocytes from equine, bovine and human species due to the widely acknowledged differences in their tendency to form aggregates. The main difference between phospholipids from plasma membrane in these species lies in the concentration levels of sphyngomyelin (SM) and phosphatidilcoline (PC); more precisely, in the external hemilayer of the lipid bilayer. Membrane fluidity was estimated by the fluorescence polarization method, while erythrocyte aggregation was assessed by an optical method. According to our results, bovine erythrocytes containing high SM and low PC levels, presented the highest anisotropy value as well as an imperceptible aggregation value. Equine erythrocytes, which contain a considerable PC percentage and scarce SM levels, showed the lowest anisotropy value and the highest values of the aggregation parameters. Human erythrocytes presented intermediate values for both properties. Our hypothesis claims that the phospholipid composition would constitute one of the factors determining erythrocyte membrane fluidity and also taking part in the different aggregation tendency shown by equine, bovine and human species.

摘要

本文的目的是分析膜流动性是否可以从其脂质组成中预测出来,并测定这种变量与马、牛和人类红细胞聚集特性之间的可能关系,因为它们在形成聚集体的倾向方面存在广泛认可的差异。这些物种质膜中的磷脂之间的主要差异在于鞘磷脂(SM)和磷脂酰胆碱(PC)的浓度水平;更确切地说,在于脂质双层的外部半层。通过荧光偏振法估计膜流动性,而通过光学方法评估红细胞聚集。根据我们的结果,含有高SM和低PC水平的牛红细胞呈现出最高的各向异性值以及难以察觉的聚集值。含有相当比例PC和低SM水平的马红细胞显示出最低的各向异性值和最高的聚集参数值。人类红细胞在这两种特性方面呈现出中间值。我们的假设认为,磷脂组成将构成决定红细胞膜流动性的因素之一,并且也参与马、牛和人类物种所表现出的不同聚集倾向。

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