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流速和细胞浓度对红细胞与玻璃表面动态黏附的影响。

Influence of flow velocity and cell concentration on dynamic adhesion of erythrocytes to glass surface.

作者信息

Kowalczynska H M

出版信息

J Cell Physiol. 1977 Jun;91(3):417-28. doi: 10.1002/jcp.1040910312.

Abstract

Comparative studies were carried out on dynamic adhesion of 51Cr-labelled erythrocytes to the surface of glass beads in the presence of serum in the medium (50 microng of protein/ml) and in protein-free medium. The influence of cell concentration (within the range 4 X 10(5) to 8 X 10(6)/ml) and of cellular flow velocity (within the range 1.5-0.4 cm/min) on the value of adhesion was investigated. It was found that when serum was present in the medium, the decisive influence on erythrocyte adhesion was exerted by the velocity with which the cells pass though the glass bead layer. Cell concentration under these conditions has only a very slight effect. When the medium does not contain serum, erythrocyte adhesion to the bead layer seems to depend on both cell concentration and flow velocity. Preliminary data were obtained concerning the release of 51Cr from the bead layer after erythrocyte adhesion.

摘要

在含有血清(50微克蛋白质/毫升)的培养基中和无蛋白质培养基中,对51Cr标记的红细胞与玻璃珠表面的动态黏附进行了比较研究。研究了细胞浓度(4×10⁵至8×10⁶/毫升范围内)和细胞流速(1.5 - 0.4厘米/分钟范围内)对黏附值的影响。结果发现,当培养基中存在血清时,对红细胞黏附起决定性作用的是细胞穿过玻璃珠层的速度。在这些条件下,细胞浓度的影响非常小。当培养基中不含血清时,红细胞与珠层的黏附似乎取决于细胞浓度和流速。获得了关于红细胞黏附后51Cr从珠层释放的初步数据。

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