首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >TNF-α ACTIVATION OF ARTERIOLES AND VENULES ALTERS THE DISTRIBUTION AND LEVELS OF ICAM-1 AND AFFECTS LEUKOCYTE-ENDOTHELIAL CELL INTERACTIONS
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TNF-α ACTIVATION OF ARTERIOLES AND VENULES ALTERS THE DISTRIBUTION AND LEVELS OF ICAM-1 AND AFFECTS LEUKOCYTE-ENDOTHELIAL CELL INTERACTIONS

机译:TNF-α激活小动脉和静脉改变ICAM-1的水平和水平影响白细胞与内皮细胞的相互作用

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摘要

The observation that leukocyte-endothelial cell (EC) interactions are localized to specific regions on the microvessel wall suggests that adhesion molecule distribution is not uniform. We investigated ICAM-1 distribution and leukocyte-EC interactions in blood perfused microvessels (< 80 μm) in cremaster muscle of anesthetized mice, using intravital confocal microscopy and immunofluorescent labeling. Variability of ICAM-1 expression directly determines leukocyte adhesion distribution within the venular microcirculation, and contributes to leukocyte rolling in arterioles during inflammation. The number of rolling interactions increased with ICAM-1 intensity (r2=0.69, p<0.05) and rolling velocity was lower in regions of higher ICAM-1 intensity. In controls, venular ICAM-1 expression was approximately two fold higher than in arterioles. Following TNF-α treatment, ICAM-1 expression was significantly increased, 2.8±0.2 fold in arterioles and 1.7±0.2 fold in venules (P<0.05). ICAM-1 expression on activated arteriolar ECs only reached the level of control venular ICAM-1. Arteriolar but not venular ECs underwent redistribution of ICAM-1 among cells; some cells increased and some decreased ICAM-1 expression, magnifying the variability of ICAM-1. TNF-α treatment increased the length of bright fluorescent regions per unit vessel length (42%, control; 70%, TNF-α) along the arteriolar wall, whereas no significant change was observed in venules (60%, control; 63%, TNF-α). The spatial distribution and expression levels of adhesion molecules in the microcirculation determine the timing and placement of leukocyte interactions, hence significantly impact the inflammatory response. That arteriolar ECs respond to TNF-α by upregulation of ICAM-1, although in a different way compared to venules, suggests an explicit role for arterioles in inflammatory responses.
机译:白细胞-内皮细胞(EC)相互作用位于微血管壁上的特定区域的观察结果表明粘附分子分布不均匀。我们使用活体共聚焦显微镜和免疫荧光标记法研究了麻醉小鼠的提睾肌中血液灌注的微血管(<80μm)中的ICAM-1分布和白细胞-EC相互作用。 ICAM-1表达的可变性直接决定了静脉微循环内白细胞的黏附分布,并有助于炎症过程中小动脉中白细胞的滚动。随着ICAM-1强度的增加,滚动相互作用的次数增加(r 2 = 0.69,p <0.05),而在ICAM-1强度较高的区域滚动速度较低。在对照中,静脉ICAM-1表达比小动脉高约两倍。 TNF-α处理后,ICAM-1表达显着增加,在小动脉中为2.8±0.2倍,在小静脉中为1.7±0.2倍(P <0.05)。激活的小动脉EC上的ICAM-1表达仅达到对照小静脉ICAM-1的水平。小动脉而非静脉内皮细胞在细胞间进行了ICAM-1的重新分布;一些细胞增加而某些细胞减少了ICAM-1的表达,从而放大了ICAM-1的变异性。 TNF-α处理增加了沿小动脉壁每单位血管长度的明亮荧光区域的长度(42%,对照; 70%,TNF-α),而在小静脉中未观察到明显变化(60%,对照; 63%, TNF-α)。微循环中粘附分子的空间分布和表达水平决定了白细胞相互作用的时机和位置,从而显着影响炎症反应。尽管与小静脉相比,小动脉EC通过上调ICAM-1对TNF-α的反应,但提示小动脉在炎症反应中具有明确的作用。

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