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人类红细胞糖萼的拓扑光学研究——与年龄相关的变化

Topo-optical investigations of the human erythrocyte glycocalyx-age related changes.

作者信息

Halbhuber K J, Gliesing M, Stibenz D, Makovitzky J

出版信息

Histochemistry. 1984;81(2):187-93. doi: 10.1007/BF00490116.

Abstract

The conformational state of the glycocalyx of the intact and altered erythrocyte membrane was studied by means of the topo-optical toluidine blue reaction, i.e. induced membrane birefringence. High membrane anisotropy represents the normal glycocalyx structure and its decline represents their perturbation. The results show that the glycocalyx structure is changed during ageing of the erythrocytes in vivo as well as in vitro. During fluid preservation, in vitro ageing and vesiculation of cells in vitro, a subpopulation of cells showed a decline of membrane anisotropy, but other cells demonstrated abnormally high values. In the latter cases, there is usually a correlation to spherocytes. From this point of view, it is to be assumed that spherogenesis during cell ageing is induced by cell vesiculation. This leads to a remodelling of an intact plasmalemma. In contrast, the cell fractions which are probably non-vesiculating seem to be more or less damaged by membrane and/or plasmic hydrolases. This can be mimicked by neuraminidase and protease treatment of erythrocytes in vitro. Membrane lesions caused by freeze preservation of red blood cells are rare. The topo-optical results are interpreted according to the assumptions of the theory of membrane anisotropy, i.e. the formation of dye-stuff micelles at distinct, clustered, sialylated carbohydrate chains of the glycophorin A.

摘要

通过拓扑光学甲苯胺蓝反应,即诱导膜双折射,研究了完整和改变的红细胞膜糖萼的构象状态。高膜各向异性代表正常的糖萼结构,其下降代表其受到扰动。结果表明,红细胞在体内和体外老化过程中糖萼结构都会发生变化。在液体保存、体外老化和细胞体外形成囊泡的过程中,一部分细胞显示膜各向异性下降,但其他细胞表现出异常高的值。在后一种情况下,通常与球形红细胞有关。从这个角度来看,可以假定细胞老化过程中的球形化是由细胞形成囊泡诱导的。这导致完整质膜的重塑。相反,可能不形成囊泡的细胞部分似乎或多或少受到膜和/或细胞质水解酶的损伤。这可以通过体外对红细胞进行神经氨酸酶和蛋白酶处理来模拟。冷冻保存红细胞引起的膜损伤很少见。根据膜各向异性理论的假设对拓扑光学结果进行了解释,即在糖蛋白A不同的、聚集的、唾液酸化的碳水化合物链上形成染料微团。

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