Maeda N, Imaizumi K, Sekiya M, Shiga T
Biochim Biophys Acta. 1984 Sep 19;776(1):151-8. doi: 10.1016/0005-2736(84)90261-x.
The effect of fibrinogen and sialic acid content of erythrocytes on the aggregation of erythrocytes was quantitatively examined by using a rheoscope combined with a television image analyzer and a computer. (1) The electrophoretic mobility of erythrocytes was proportional to the sialic acid content of erythrocytes (the surface potential of erythrocytes could be expressed by the sialic acid content). (2) The aggregation of erythrocytes was accelerated by increasing fibrinogen concentration in the medium (due to the increased bridging force among erythrocytes) or by decreasing the sialic acid content (due to the reduction of the electrostatic repulsive force among erythrocytes). (3) An empirical equation expressing the velocity of aggregate formation (v, in micron2/min) by the concentration of fibrinogen (F, in g/dl) and the sialic acid content (S, in mumol/ml red blood cells), log v = -0.065 F-1.2S + 2.2 F0.35, was deduced. (4) The contribution of the bridging force of fibrinogen to the erythrocyte aggregation was much greater than that of the electrostatic repulsive force produced by sialic acid on the surface of erythrocytes.
采用血流仪结合电视图像分析仪及计算机,对红细胞纤维蛋白原和唾液酸含量对红细胞聚集的影响进行了定量研究。(1)红细胞的电泳迁移率与红细胞唾液酸含量成正比(红细胞表面电位可用唾液酸含量表示)。(2)通过增加培养基中纤维蛋白原浓度(由于红细胞间桥连力增加)或降低唾液酸含量(由于红细胞间静电排斥力降低)可加速红细胞聚集。(3)推导得出一个经验方程,该方程通过纤维蛋白原浓度(F,单位为g/dl)和唾液酸含量(S,单位为μmol/ml红细胞)来表示聚集体形成速度(v,单位为μm²/min),即log v = -0.065F - 1.2S + 2.2F⁰.³⁵。(4)纤维蛋白原的桥连力对红细胞聚集的贡献远大于红细胞表面唾液酸产生的静电排斥力。