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在离体血液灌注大鼠肺制备中量化单个微血管通透性。

Quantifying single microvessel permeability in isolated blood-perfused rat lung preparation.

作者信息

Kandasamy Kathirvel, Parthasarathi Kaushik

机构信息

Department of Physiology, The University of Tennessee Health Science Center.

Department of Physiology, The University of Tennessee Health Science Center; Department of Orthopedic Surgery and Biomedical Engineering, The University of Tennessee Health Science Center;

出版信息

J Vis Exp. 2014 Jun 30(88):e51552. doi: 10.3791/51552.

Abstract

The isolated blood-perfused lung preparation is widely used to visualize and define signaling in single microvessels. By coupling this preparation with real time imaging, it becomes feasible to determine permeability changes in individual pulmonary microvessels. Herein we describe steps to isolate rat lungs and perfuse them with autologous blood. Then, we outline steps to infuse fluorophores or agents via a microcatheter into a small lung region. Using these procedures described, we determined permeability increases in rat lung microvessels in response to infusions of bacterial lipopolysaccharide. The data revealed that lipopolysaccharide increased fluid leak across both venular and capillary microvessel segments. Thus, this method makes it possible to compare permeability responses among vascular segments and thus, define any heterogeneity in the response. While commonly used methods to define lung permeability require postprocessing of lung tissue samples, the use of real time imaging obviates this requirement as evident from the present method. Thus, the isolated lung preparation combined with real time imaging offers several advantages over traditional methods to determine lung microvascular permeability, yet is a straightforward method to develop and implement.

摘要

离体血液灌注肺标本被广泛用于观察和确定单个微血管中的信号传导。通过将该标本与实时成像相结合,确定单个肺微血管的通透性变化变得可行。在此,我们描述了分离大鼠肺并用自体血液灌注的步骤。然后,我们概述了通过微导管将荧光团或试剂注入小肺区域的步骤。使用所述的这些程序,我们确定了大鼠肺微血管在输注细菌脂多糖后通透性增加。数据显示脂多糖增加了小静脉和毛细血管微血管段的液体渗漏。因此,该方法使得比较血管段之间的通透性反应成为可能,从而确定反应中的任何异质性。虽然常用的定义肺通透性的方法需要对肺组织样本进行后处理,但如本方法所示,实时成像的使用避免了这一要求。因此,与传统方法相比,离体肺标本与实时成像相结合在确定肺微血管通透性方面具有几个优点,而且是一种易于开发和实施的方法。

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