红细胞在预热正常血清中的形成:白蛋白聚合物和溶血磷脂酰胆碱的作用。

D R Forsdyke, R G Palfree, A Takeda
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摘要

在一个简单的模型系统中研究了体液因子在细胞-细胞相互作用中的作用:红细胞悬浮在62℃预热20分钟的正常血清中聚集成圆柱形的rouleaux。加热血清的roulegenic活性与白蛋白聚合物浓度的增加有关。当加热到62摄氏度以上时,白蛋白释放配体,如溶血磷脂酰胆碱,其数量足以将红细胞转化为棘细胞。后者没有参加轮盘队形。因此,正常血清只有在狭窄的温度范围内加热时才会产生轮状色素。血清的这些特性在仅由红细胞、加热白蛋白和溶血磷脂胆碱组成的系统中重现。随着白蛋白聚合物粒径的增大,鲁洛形成量增加。未加热的正常血清也可以仅仅通过浓缩到高于正常生理浓度而产生轮状色素。已知来自各种疾病患者的未加热、未浓缩的血清是发色性的,但聚合白蛋白很少出现在这种血清中;通常有大球蛋白的增加,大球蛋白是小血清蛋白的大聚合形式。目前的证据与假设一致,即这些大分子中的一种或多种浓度超过临界值的微小变化促进红细胞的相分离,红细胞自发聚集形成rouleaux。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formation of erythrocyte rouleaux in preheated normal serum: roles of albumin polymers and lysophosphatidylcholine.

The role of humoral factors in cell-cell interactions was studied in a simple model system: the aggregation of erythrocytes into cylindrical rouleaux when suspended in normal serum preheated at 62 degree C for 20 min. The rouleaugenic activity of heated serum was associated with an increased concentration of albumin polymers. On heating above 62 degree C, albumin released ligands, such as lysophosphatidylcholine, in quantities sufficient to convert erythrocytes to acanthocytes. The latter did not participate in rouleaux formation. Thus normal serum only became rouleaugenic when heated over a narrow range of temperatures. These properties of serum were reproduced in a system consisting only of erythrocytes, heated albumin, and lysophosphatidylcholine. Rouleau formation increased as albumin polymer size increased. Unheated normal serum could also be made rouleaugenic merely by concentrating to above normal physiological concentrations. Unheated, unconcentrated, sera from patients with various diseases are known to be rouleaugenic, but polymeric albumin appears infrequently in such sera; usually there are increases in macroglobulins are large polymeric forms of smaller serum proteins. Current evidence is consistent with the hypothesis that a small shift in the concentration of one or more of these macromolecules above a critical value promotes a phase separation of erythrocytes which spontaneously aggregate to form rouleaux.

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