Lipowsky H H, House S D, Firrell J C
Department of Physiology and Cellular Biophysics, College of Physicians and Surgeons, Columbia University, New York, NY 10032.
Adv Exp Med Biol. 1988;242:85-93. doi: 10.1007/978-1-4684-8935-4_10.
In the present study we have attempted to provide quantitative details of hemodynamic determinants of leukocyte to endothelium adhesion in the microvasculature. To this end, several hypotheses have been advanced to suggest that the preferential adhesion of leukocytes in the larger venules (30-50 microns diameter) rests upon the inherent ability of the microvasculature to compensate for small perturbations in resistance and that WBC deformability may play a significant role in this process. Flow redistribution and attendant arteriolar vasomotor adjustments may forestall LEA in the larger collecting venules of the network, where venous obstruction may be countered by bringing the full weight of the arteriovenous pressure gradient to oppose WBC adhesion. Direct measurements of the force of adhesion suggest that with diminishing vessel diameter, as for example in the immediate post-capillary venules, WBC dispersal forces will be greatest due to dramatic increases in the proportionality between force and wall shear stress. This event would tend to preclude adhesion in the smallest venular microvessels. It has also been shown that there is a strong potential for WBC deformability to affect the adhesion process by modification of the shear stresses acting on the WBC surface, as evidenced by an inverse relationship between force and wall shear stress and direct observations of WBC shape changes with increasing shear.
在本研究中,我们试图提供微血管中白细胞与内皮细胞黏附的血流动力学决定因素的定量细节。为此,已经提出了几种假说,表明白细胞在较大微静脉(直径30 - 50微米)中的优先黏附取决于微血管补偿阻力微小扰动的固有能力,并且白细胞变形性可能在这一过程中起重要作用。血流重新分布以及随之而来的小动脉血管舒缩调节可能会在网络中较大的集合微静脉中阻止白细胞 - 内皮细胞黏附(LEA),在那里静脉阻塞可通过使动静脉压力梯度的全部力量来对抗白细胞黏附而得到应对。对黏附力的直接测量表明,随着血管直径减小,例如在紧邻毛细血管后的微静脉中,由于力与壁面剪切应力之间的比例急剧增加,白细胞分散力将最大。这一情况往往会阻止在最小的微静脉微血管中的黏附。研究还表明,白细胞变形性很有可能通过改变作用于白细胞表面的剪切应力来影响黏附过程,这一点可从力与壁面剪切应力之间的反比关系以及随着剪切增加白细胞形状变化的直接观察中得到证明。