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毛细血管通路大小和中性粒细胞可变形性对兔肺中性粒细胞转运的作用。

Contributions of capillary pathway size and neutrophil deformability to neutrophil transit through rabbit lungs.

作者信息

Wiggs B R, English D, Quinlan W M, Doyle N A, Hogg J C, Doerschuk C M

机构信息

University of British Columbia Pulmonary Research Laboratory, St. Paul's Hospital, Vancouver, Canada.

出版信息

J Appl Physiol (1985). 1994 Jul;77(1):463-70. doi: 10.1152/jappl.1994.77.1.463.

Abstract

Neutrophil margination within the pulmonary capillary is due to a delay in their transit compared with that of red blood cells (RBC). This delay has been attributed to the large fraction of capillary segments that are narrower than spherical neutrophils and differences between the time required for deformation of neutrophils and that required for deformation of RBC. This study investigated the characteristics of neutrophil deformation in vivo and the perfusion patterns of segments within capillary pathways. Studies comparing the extraction of neutrophils with that of nondeformable microspheres in one transit through the pulmonary circulation suggest that neutrophils can undergo a rapid deformation from 6.4 to 5.0-5.1 microns, whereas larger deformations require a delay. Effective diameters of the perfused capillary pathways were larger than expected for a random distribution of capillary segment diameters within these pathways. The longer transit times of neutrophils in the upper regions of the lung were associated with a greater fraction of pathways containing narrow segments. These studies suggest that neutrophil deformability and capillary pathway diameters are important in determining the size of the marginated pool of neutrophils within the pulmonary capillaries.

摘要

肺毛细血管内的中性粒细胞边缘化是由于与红细胞(RBC)相比,它们在血管内的运输延迟。这种延迟归因于大部分毛细血管段比球形中性粒细胞窄,以及中性粒细胞变形所需时间与红细胞变形所需时间的差异。本研究调查了中性粒细胞在体内的变形特征以及毛细血管通路内各段的灌注模式。在一次通过肺循环的过程中,将中性粒细胞与不可变形微球的摄取情况进行比较的研究表明,中性粒细胞可迅速从6.4微米变形为5.0 - 5.1微米,而更大程度的变形则需要延迟。灌注的毛细血管通路的有效直径大于这些通路内毛细血管段直径随机分布时的预期值。中性粒细胞在肺上部区域较长的运输时间与含有狭窄段的通路比例较高有关。这些研究表明,中性粒细胞的可变形性和毛细血管通路直径对于确定肺毛细血管内边缘池中性粒细胞的大小很重要。

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