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活体动物炎症血管中血管通透性的传感

Sensing of Vascular Permeability in Inflamed Vessel of Live Animal.

作者信息

Park Sang A, Jeong Soi, Choe Young Ho, Hyun Young-Min

机构信息

Department of Anatomy and Brain Korea 21 PLUS Project for Medical Science, Yonsei University College of Medicine, Seoul 03722, Republic of Korea.

出版信息

J Anal Methods Chem. 2018 May 15;2018:5797152. doi: 10.1155/2018/5797152. eCollection 2018.

Abstract

Increase in vascular permeability is a conclusive response in the progress of inflammation. Under controlled conditions, leukocytes are known to migrate across the vascular barriers to the sites of inflammation without severe vascular rupture. However, when inflammatory state becomes excessive, the leakage of blood components may occur and can be lethal. Basically, vascular permeability can be analyzed based on the intensity of blood outflow. To evaluate the amount and rate of leakage in live mice, we performed cremaster muscle exteriorization to visualize blood flow and neutrophil migration. Using two-photon intravital microscopy of the exteriorized cremaster muscle venules, we found that vascular barrier function is transiently and locally disrupted in the early stage of inflammatory condition induced by N-formylmethionyl-leucyl-phenylalanine (fMLP). Measurement of the concentration of intravenously (i.v.) injected Texas Red dextran inside and outside the vessels resulted in clear visualization of real-time increases in transient and local vascular permeability increase in real-time manner. We successfully demonstrated repeated leakage from a target site on a blood vessel in association with increasing severity of inflammation. Therefore, compared to other methods, two-photon intravital microscopy more accurately visualizes and quantifies vascular permeability even in a small part of blood vessels in live animals in real time.

摘要

血管通透性增加是炎症进展过程中的一种决定性反应。在可控条件下,已知白细胞可穿越血管屏障迁移至炎症部位,而不会导致严重的血管破裂。然而,当炎症状态过度时,血液成分可能会发生渗漏,这可能是致命的。基本上,血管通透性可根据血液流出的强度进行分析。为了评估活体小鼠的渗漏量和速率,我们进行了提睾肌外置手术以观察血流和中性粒细胞迁移。通过对外置提睾肌小静脉进行双光子活体显微镜观察,我们发现,在由N-甲酰甲硫氨酰-亮氨酰-苯丙氨酸(fMLP)诱导的炎症状态早期,血管屏障功能会出现短暂的局部破坏。对静脉注射的德州红葡聚糖在血管内外的浓度进行测量,能够实时清晰地观察到血管通透性的短暂局部增加。我们成功证明了随着炎症严重程度的增加,血管上的目标部位会反复出现渗漏。因此,与其他方法相比,双光子活体显微镜能够更准确地实时观察和量化活体动物小部分血管中的血管通透性。

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