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Modeling FMLP-induced capillary filtration: potential role of oxidatively activated leukocytes

机译:建模FMLP诱导的毛细血管过滤:氧化激活的白细胞的潜在作用

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Microvascular arterioles and venules are typically found in a closely paired countercurrent arrangement that allows diffusional communication. Increases in capillary fluid filtration rate due to acute inflammation appear to utilize this structural arrangement, and are dependent on leukocytes accumulating at arteriovenular pairing sites (Microcirculation 7:259-268, 2000). We have preliminary evidence that following exposure of the rat mesentery to the leukcoyte chemoattractant formyl-met-leu-phe (FMLP), leukocytes that extravasate from postcapillary venules release a signal that is delivered by nearby arterioles to downstream branching capillaries. We hypothesize that such a mechanism can be described in a mathematical model that relates the diffusion distance from a tissue leukocyte to the nearest arteriole, and also the transit time in the bloodstream from the arteriole to capillary. We also hypothesize that leukocytes that are oxidatively activated are the most likely to participate in this mechanism. Following localized FMLP exposure at arteriovenular pairing sites, /spl sim/30-50% of tissue leukocytes were oxidativley activated, as defined by cellular fluorescence of the oxidant-sensitive dye dihydrorhodamine 123. However, when we measured diffusion distances from those cells to the nearby arteriole, we found no correlation between the estimated effect on capillary filtration (using our mathematical model) and the actual measured effect.
机译:微血管小动脉和小静脉通常以紧密配对的逆流排列形式存在,允许扩散通讯。由于急性炎症引起的毛细血管滤过率的增加似乎利用了这种结构安排,并且依赖于在动静脉配对位点积聚的白细胞(Microcirculation 7:259-268,2000)。我们有初步证据表明,在大鼠肠系膜暴露于白细胞趋化性甲酰-met-leu-phe(FMLP)后,从毛细血管后小静脉渗出的白细胞释放出信号,该信号由附近的小动脉传递至下游分支的毛细血管。我们假设这种机制可以用数学模型来描述,该模型将组织白细胞到最近的小动脉的扩散距离,以及从小动脉到毛细血管的血流传播时间联系起来。我们还假设氧化激活的白细胞最有可能参与该机制。在动静脉配对位点进行局部FMLP暴露后,/ spl sim / 30-50%的组织白细胞被氧化激活,这是由氧化剂敏感染料dihydrorhodamine 123的细胞荧光所定义的。在附近的小动脉中,我们发现毛细管过滤的估计效果(使用我们的数学模型)与实际测量的效果之间没有相关性。

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