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血流诱导通过特异性抗原-抗体键黏附于表面的红细胞分离。

Flow-induced detachment of red blood cells adhering to surfaces by specific antigen-antibody bonds.

作者信息

Xia Z, Goldsmith H L, van de Ven T G

机构信息

Department of Chemistry, McGill University, Montreal, Canada.

出版信息

Biophys J. 1994 Apr;66(4):1222-30. doi: 10.1016/S0006-3495(94)80906-3.

Abstract

Fixed spherical swollen human red blood cells of blood type B adhering on a glass surface through antigen-antibody bonds to monoclonal mouse antihuman IgM, adsorbed or covalently linked on the surface, were detached by known hydrodynamic forces created in an impinging jet. The dynamic process of detachment of the specifically bound cells was recorded and analyzed. The fraction of adherent cells remaining on the surface decreased with increasing hydrodynamic force. For an IgM coverage of 0.26%, a tangential force on the order of 100 pN was able to detach almost all of the cells from the surface within 20 min. After a given time of exposure to hydrodynamic force, the fraction of adherent cells remaining increased with time, reflecting an increase in adhesion strength. The characteristic time for effective aging was approximately 4 h. Results from experiments in which the adsorbed antibody molecules were immobilized through covalent coupling and from evanescent wave light scattering of adherent cells, imply that deformation of red cells at the contact area was the principal cause for aging, rather than local clustering of the antibody through surface diffusion. Experiments with latex beads specifically bound to red blood cells suggest that, instead of breaking the antigen-antibody bonds, antigen molecules were extracted from the cell membrane during detachment.

摘要

通过抗原 - 抗体键与吸附或共价连接在玻璃表面的单克隆小鼠抗人IgM结合的B型人固定球形肿胀红细胞,在冲击射流中产生的已知流体动力作用下从玻璃表面脱离。记录并分析了特异性结合细胞脱离的动态过程。随着流体动力的增加,表面上残留的贴壁细胞比例下降。对于0.26%的IgM覆盖度,约100 pN的切向力能够在20分钟内将几乎所有细胞从表面脱离。在暴露于流体动力的给定时间后,残留贴壁细胞的比例随时间增加,这反映了粘附强度的增加。有效老化的特征时间约为4小时。通过共价偶联固定吸附抗体分子的实验结果以及贴壁细胞的倏逝波光散射结果表明,红细胞在接触区域的变形是老化的主要原因,而不是抗体通过表面扩散的局部聚集。用特异性结合红细胞的乳胶珠进行的实验表明,在脱离过程中,抗原分子是从细胞膜中被提取出来的,而不是抗原 - 抗体键被破坏。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28ee/1275830/44fefec5c821/biophysj00076-0297-a.jpg

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