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定量大鼠肺血管内单核吞噬细胞。

Quantifying rat pulmonary intravascular mononuclear phagocytes.

作者信息

Niehaus G D, Mehendale S R

机构信息

Department of Physiology, Northeastern Ohio Universities College of Medicine, Rootstown 60612, USA.

出版信息

Anat Rec. 1998 Dec;252(4):626-36. doi: 10.1002/(SICI)1097-0185(199812)252:4<626::AID-AR13>3.0.CO;2-M.

Abstract

Cells of the mononuclear phagocyte system (MPS) protect the host by clearing effete and foreign particulates from the circulation. The current study was designed to identify, quantify, harvest, and provide a partial functional characterization of the systemic host-defense cell located in the pulmonary microvasculature of the rat. Critical colloid doses of test particulates (monastral blue B [MBB] or polystyrene beads) were infused intra-arterially into anesthetized rats so that phagocytically active pulmonary intravascular phagocytes could be identified. Morphologic characterization of in situ phagocytes was performed using electron microscopy. The number of active phagocytes was then determined using tissue samples processed for light microscopy. Finally, sequential perfusion of the pulmonary vasculature with buffer, chelating agent, and collagenase allowed elution and preliminary functional characterization of the pulmonary intravascular mononuclear phagocyte (PIMP). Electron microscopy demonstrated that both mononuclear phagocytes and neutrophils contributed to pulmonary sequestration of circulating particulates. Light microscopy showed that the microvasculature of each alveolus contained 0.50+/-0.19 active mononuclear phagocytes and 0.14+/-0.12 active neutrophils. A chelation/collagenase elution technique was then used to harvest the PIMP. Histologic evaluation of the postperfusion lungs indicated that 80% of the active phagocytes were removed by the technique. In total, the elution fluids contained 2.63+/-1.04 x 10(7) cells, with 1.60+/-0.78 x 10(7), 0.49+/-0.17 x 10(7), and 0.54+/-0.26 x 10(7) of those cells being mononuclear phagocytes, neutrophils, and lymphocytes, respectively. Functionally, the mononuclear phagocyte population exhibited a spectrum of phagocytic activities, with 51.5+/-19.5% of the cells being inactive, 33.9+/-13.4% exhibiting moderate phagocytic activity, and 14.6+/-9.8% demonstrating intensive phagocytic capacity. The current study provides the first quantified demonstration that mononuclear phagocytes are primarily responsible for sequestering blood-borne foreign particulates in the pulmonary circulation of the rat. Approximately 2 x 10(7) PIMP existed in the lungs of 300 gram rats. The functionally heterogeneous mononuclear phagocytes exhibited phagocytic capacities ranging from avidly phagocytic (14.6+/-9.8%) through moderately active (33.9+/-13.4%) to inactive. The lung microvasculature's large pool of inactive mononuclear phagocytes may provide a recruitable mechanism to allow significant increases in clearance of circulating particulates. A resident pool of activatable mononuclear phagocytes might explain previous clinical observations of increased particulate localization in the lung microvasculature of septic patients.

摘要

单核吞噬细胞系统(MPS)的细胞通过清除循环中的衰老和外来颗粒来保护宿主。本研究旨在鉴定、定量、收获位于大鼠肺微血管中的全身宿主防御细胞,并对其进行部分功能表征。将临界胶体剂量的测试颗粒(单星蓝B [MBB]或聚苯乙烯珠)动脉内注入麻醉的大鼠,以便识别具有吞噬活性的肺血管内吞噬细胞。使用电子显微镜对原位吞噬细胞进行形态学表征。然后使用经处理用于光学显微镜检查的组织样本确定活性吞噬细胞的数量。最后,用缓冲液、螯合剂和胶原酶对肺血管进行顺序灌注,以洗脱并初步表征肺血管内单核吞噬细胞(PIMP)的功能。电子显微镜显示单核吞噬细胞和中性粒细胞均参与了循环颗粒的肺内隔离。光学显微镜显示每个肺泡的微血管中含有0.50±0.19个活性单核吞噬细胞和0.14±0.12个活性中性粒细胞。然后使用螯合/胶原酶洗脱技术收获PIMP。灌注后肺的组织学评估表明,该技术去除了80%的活性吞噬细胞。洗脱液中总共含有2.63±1.04×10⁷个细胞,其中单核吞噬细胞、中性粒细胞和淋巴细胞分别为1.60±0.78×10⁷、0.49±0.17×10⁷和0.54±0.26×10⁷个。在功能上,单核吞噬细胞群体表现出一系列吞噬活性,51.5±19.5%的细胞无活性,33.9±13.4%表现出中等吞噬活性,14.6±9.8%表现出强烈吞噬能力。本研究首次进行了定量证明,即单核吞噬细胞主要负责在大鼠肺循环中隔离血源性外来颗粒。300克大鼠的肺中约存在2×10⁷个PIMP。功能异质性的单核吞噬细胞表现出从强烈吞噬(14.6±9.8%)到中等活性(33.9±13.4%)再到无活性的吞噬能力。肺微血管中大量无活性的单核吞噬细胞可能提供一种可招募的机制,使循环颗粒的清除显著增加。可激活单核吞噬细胞的常驻库可能解释了先前关于脓毒症患者肺微血管中颗粒定位增加的临床观察结果。

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