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肺泡毛细血管中的白细胞靠边:与功能性毛细血管几何形状和微观血流动力学的相互关系。

Leukocyte margination in alveolar capillaries: interrelationship with functional capillary geometry and microhemodynamics.

作者信息

Kuebler W M, Kuhnle G E, Goetz A E

机构信息

Institute for Surgical Research, University of Munich, Germany.

出版信息

J Vasc Res. 1999 Jul-Aug;36(4):282-8. doi: 10.1159/000025656.

Abstract

The pulmonary capillary microvasculature harbors a large pool of intravascularly marginated leukocytes. In this study, we investigated the interrelationship of leukocyte margination with characteristics of functional capillary geometry and microhemodynamics in alveolar capillary networks. In 22 anesthetized rabbits we assessed functional capillary density, average capillary length, red blood cell velocity and leukocyte kinetics in alveolar capillary networks in vivo by intravital fluorescence microscopy. In alveolar wall areas of 12,800 +/- 1,800 microm(2), we detected 3.6 +/- 0.5 sticking leukocytes and 21.0 +/- 1.9 functional capillary segments with an average capillary length of 35.7 +/- 2.1 microm. We calculated that approximately 15% of functional capillary segments are blocked by marginated leukocytes. Leukocyte margination was predominantly observed in capillary networks characterized by a high functional capillary density, short capillary segments and low red blood cell velocities. The multitude of interconnected capillary channels in these networks may allow alveolar blood flow to bypass marginated leukocytes. Hence, this interrelationship may be relevant for maintenance of adequate alveolar perfusion and low capillary network resistance despite excessive leukocyte margination in the pulmonary microvasculature. Local microhemodynamic factors may play a regulatory role in the spatial distribution of leukocyte margination.

摘要

肺毛细血管微脉管系统中存在大量血管内边缘化的白细胞。在本研究中,我们调查了肺泡毛细血管网络中白细胞边缘化与功能性毛细血管几何形状及微循环动力学特征之间的相互关系。我们通过活体荧光显微镜对22只麻醉兔的肺泡毛细血管网络中的功能性毛细血管密度、平均毛细血管长度、红细胞速度和白细胞动力学进行了体内评估。在面积为12,800±1,800平方微米的肺泡壁区域,我们检测到3.6±0.5个黏附的白细胞和21.0±1.9个功能性毛细血管段,平均毛细血管长度为35.7±2.1微米。我们计算得出,约15%的功能性毛细血管段被边缘化的白细胞阻塞。白细胞边缘化主要出现在功能性毛细血管密度高、毛细血管段短且红细胞速度低的毛细血管网络中。这些网络中众多相互连接的毛细血管通道可能使肺泡血流绕过边缘化的白细胞。因此,尽管肺微血管中存在过多的白细胞边缘化,这种相互关系可能与维持充足的肺泡灌注和低毛细血管网络阻力有关。局部微循环动力学因素可能在白细胞边缘化的空间分布中起调节作用。

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