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首页> 外文期刊>American Journal of Physiology >Leukocyte-platelet aggregate adhesion and vascular permeability in intact microvessels: role of activated endothelial cells.
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Leukocyte-platelet aggregate adhesion and vascular permeability in intact microvessels: role of activated endothelial cells.

机译:完整微血管中的白细胞-血小板聚集体粘附和血管通透性:激活的内皮细胞的作用。

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Leukocyte-platelet aggregation and aggregate adhesion have been indicated as biomarkers of the severity of tissue injury during inflammation or ischemic reperfusion. The objective of this study is to investigate the mechanisms of the aggregate adhesion and quantitatively evaluate its relationship with microvessel permeability. A combined autologous blood perfusion with single microvessel perfusion technique was employed in rat mesenteric venular microvessels. The aggregate adhesion was induced by systemic application of TNF-alpha plus local application of platelet-activating factor (PAF). Changes in permeability were determined by measurements of hydraulic conductivity (Lp) before and after aggregate adhesion in the same individually perfused microvessels. The compositions of the adherent aggregates were identified with fluorescent labeling and confocal imaging. In contrast to leukocyte adhesion as single cells resulting in no increase in microvessel permeability, aggregate adhesion induced prolonged increases in microvessel Lp (6.1 +/- 0.9 times the control, n = 9) indicated by the initial Lp measurements after 3 h of blood perfusion, which is distinct from the transient Lp increase caused by PAF-induced endothelial activation in the absence of blood. Isoproteronol (Iso) attenuated aggregate adhesion-mediated Lp increases if applied after autologous blood perfusion and prevented the aggregate adhesion if the initial endothelial activation is inhibited by applying Iso before PAF administration but showed less effect on single leukocyte adhesion. This study demonstrated that leukocyte-platelet aggregate adhesion via a mechanism different from that of single leukocyte adhesion caused a prolonged increase in microvessel permeability. Our results also indicate that the initial activation of endothelial cells by PAF plays a crucial role in the initiation of leukocyte-platelet aggregate adhesion.
机译:已经表明白细胞-血小板聚集和聚集粘附是炎症或局部缺血再灌注过程中组织损伤严重程度的生物标志。这项研究的目的是调查聚集体粘附的机制,并定量评估其与微血管渗透性的关系。在大鼠肠系膜静脉微血管中采用了自体血液灌注与单微血管灌注技术相结合的方法。通过全身性应用TNF-α加上局部应用血小板活化因子(PAF)诱导聚集粘附。渗透率的变化是通过测量在相同的单个灌注微血管中聚集之前和之后的水力传导率(Lp)来确定的。通过荧光标记和共聚焦成像鉴定粘附的聚集体的组成。与白细胞粘附(单个细胞不会导致微血管通透性增加)相反,血液灌注3小时后的初始Lp测量表明,聚集粘附诱导的微血管Lp延长增加(对照的6.1 +/- 0.9倍,n = 9)。 ,这与在无血的情况下由PAF诱导的内皮激活引起的短暂Lp升高不同。如果在自体血液灌流后施用,异丙肾上腺素(Iso)会减弱聚集粘附介导的Lp的增加,如果在PAF施用前应用Iso抑制了最初的内皮细胞活化,则阻止了聚集粘附的发生,但对单白细胞粘附的影响较小。这项研究表明,白细胞-血小板聚集体粘附的机制不同于单白细胞粘附的机制,导致微血管通透性的延长。我们的结果还表明,PAF对内皮细胞的初始激活在白细胞-血小板聚集体粘附的启动中起关键作用。

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