首页> 外文期刊>Acta physiologica Scandinavica >Influence of local haemodynamics on leucocyte rolling and chemoattractant-induced firm adhesion in microvessels of the rat mesentery.
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Influence of local haemodynamics on leucocyte rolling and chemoattractant-induced firm adhesion in microvessels of the rat mesentery.

机译:局部血流动力学对大鼠肠系膜微血管中白细胞滚动和趋化因子诱导的牢固粘附的影响。

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摘要

Tissue hyperaemia, oedema formation and leucocyte accumulation are characteristic features of the inflammatory process referable to changes at the microcirculatory level. Here, we used intravital fluorescence video microscopy to assess relationships among haemodynamical parameters, leucocyte rolling, and chemoattractant-induced firm adhesion in small venules (13-24 microM) of the rat mesentery. The rolling leucocyte flux in these vessels was directly proportional to the total leucocyte flux (r = 0.76, P < 0.001), which in turn closely correlated to the venular blood flow (r = 0.77, P < 0.001). Consequently, the rolling to total leucocyte flux fraction, averaging 39 +/- 15%, did not vary with the blood flow and showed no correlation to either blood flow velocity (r = -0.15, P = 0.42) or wall shear rate (r = -0.06, P = 0.77), indicating that the extent of leucocyte rolling is not primarily dependent on the fluid viscous drag at physiological blood flow rates in vivo. Stimulation of the mesentery with the chemoattractant fMLP (10(-6) M) induced firm adhesion of rolling leucocytes. It was found that the number of adherent leucocytes in individual vessels was directly related to the rolling leucocyte flux (r = 0.78, P < 0.001) and hence to the venular blood flow (r = 0.47, P < 0.05), while there was no correlation to the wall shear rate (r = 0.27, P = 0.24). The dependence of the firm adhesive response on the blood flow level and the delivery rate of leucocytes was confirmed at the whole organ level. Thus, leucocyte accumulation in rat skin lesions was markedly enhanced when a vasodilator was co-administered with the chemotactic stimulus compared with chemotactic stimulation alone. The data indicate that, within a physiological blood flow range, the leucocyte response to chemotactic stimulation is largely independent of the prevailing hydrodynamic shear forces. Instead, manifestation of the firm adhesive response, because of its dependence on the preceding rolling interaction, is clearly related to the blood flow level in the microvessels, which emphasizes the significance of tissue hyperaemia in inflammation.
机译:组织充血,水肿形成和白细胞积聚是炎症过程的特征,可称为微循环水平的改变。在这里,我们使用了活体内荧光视频显微镜来评估大鼠肠系膜小静脉(13-24 microM)的血液动力学参数,白细胞滚动和趋化因子诱导的牢固粘附之间的关系。这些血管中的滚动白细胞通量与总白细胞通量成正比(r = 0.76,P <0.001),而后者又与静脉血流密切相关(r = 0.77,P <0.001)。因此,滚动至总白细胞通量分数(平均39 +/- 15%)不会随血流变化,并且与血流速度(r = -0.15,P = 0.42)或壁剪切率(r = -0.06,P = 0.77),表明在体内生理血流速率下白细胞滚动的程度不主要取决于流体粘性阻力。用化学引诱剂fMLP(10(-6)M)刺激肠系膜可诱导滚动白细胞牢固粘附。发现单个血管中粘附的白细胞数量与滚动白细胞通量直接相关(r = 0.78,P <0.001),因此与静脉血流量有关(r = 0.47,P <0.05),而没有与壁面剪切速率的相关性(r = 0.27,P = 0.24)。在整个器官水平上证实了牢固的粘附反应对血流水平和白细胞递送速率的依赖性。因此,与单独的趋化刺激相比,当将血管扩张剂与趋化刺激共同施用时,大鼠皮肤损伤中的白细胞积累显着增强。数据表明,在生理血流范围内,白细胞对趋化刺激的反应在很大程度上与主要的流体动力剪切力无关。相反,由于其依赖于先前的滚动相互作用,因此牢固粘附反应的表现显然与微血管中的血流水平有关,这强调了组织充血在炎症中的重要性。

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