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巨噬细胞的结合与支持脂质双分子层中的磷脂翻转

Binding of macrophages and phospholipid flip-flop in supported lipid bilayers.

作者信息

Nakanishi M, Matsumoto K, Takahashi S

出版信息

FEBS Lett. 1985 Nov 11;192(1):66-70. doi: 10.1016/0014-5793(85)80044-2.

Abstract

Subclass-specific antibody-dependent interactions (binding and triggering) between macrophages and supported lipid bilayers have been studied. Percentages of mouse macrophage binding (J774 cell line) to the lipid bilayers were dependent on mouse monoclonal IgG subclasses. The efficiencies were as follows: IgG1 = IgG2a greater than IgG2b greater than IgG3. Furthermore, macrophage triggering (spreading) was more efficient on IgG2a- or IgG1-coated lipid bilayers than on IgG2a, IgG3, or non-specific rabbit IgG. The present experiments show also that phospholipid molecules are able to flip-flop from one side of a supported planar bilayer membrane to the other with a half-life of 10 h-1 day at 25 degrees C.

摘要

已经研究了巨噬细胞与支持的脂质双层之间特定亚类的抗体依赖性相互作用(结合和触发)。小鼠巨噬细胞(J774细胞系)与脂质双层的结合百分比取决于小鼠单克隆IgG亚类。效率如下:IgG1 = IgG2a大于IgG2b大于IgG3。此外,在IgG2a或IgG1包被的脂质双层上,巨噬细胞触发(铺展)比在IgG2b、IgG3或非特异性兔IgG上更有效。目前的实验还表明,磷脂分子能够在25℃下以10小时至1天的半衰期从支持的平面双层膜的一侧翻转到另一侧。

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