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[用于评估肺微血管通透性的离体大鼠肺脏滤过变量的测定]

[Estimation of filtration variables in isolated rat lungs for evaluation of pulmonary microvascular permeability].

作者信息

Tanita T, Funata J, Ono S, Nasu G, Ashino Y, Kubo H, Fujimura S, Koike K

机构信息

Department of Surgery, Tohoku University, Sendai, Japan.

出版信息

Nihon Kyobu Shikkan Gakkai Zasshi. 1993 Apr;31(4):441-6.

PMID:8515615
Abstract

In order to evaluate the microvascular permeability of donor lungs, we calculated the filtration variables; K (reflection coefficient), simultaneously. For the calculation of filtration variables, the isolated rat lungs were kept in zone three conditions (pulmonary arterial pressure > pulmonary venous pressure > alveolar pressure). We used Krebs-Henseleit solution (K-H) with 6% bovine serum albumin for the perfusate, and maintained perfusion using a constant pressure circuit system. The pulmonary venous and alveolar pressures were maintained at 2.5 and 2.0 cmH2O, respectively, and pulmonary arterial pressure was set so that change in lung weight occurred. We increased both pulmonary arterial and venous pressures by 3 cmH2O simultaneously, and obtained the initial filtration rate. Then we diluted the perfusate with K-H to about half concentration, and obtained the initial filtration rate. We obtained values of filtration variables of K=4.55 mg.min-1.cm H2O-1.g-1], Ppmv=0.59 cmH2O, and sigma =0.617. These values agree with values from previous reports. Since these three filtration variables are interrelated, this method for simultaneous measurement is more accurate than independent measurements. The chief advantages of this method are that it does not require direct measurement of interstitial pressure or collection of lymph fluid, and all variables are obtained simultaneously. Using this method, the vascular permeability of isolated rat lungs, can be estimated.

摘要

为了评估供体肺的微血管通透性,我们同时计算了滤过变量;K(反射系数)。为了计算滤过变量,将分离的大鼠肺保持在三区条件下(肺动脉压>肺静脉压>肺泡压)。我们使用含有6%牛血清白蛋白的 Krebs-Henseleit 溶液(K-H)作为灌注液,并使用恒压循环系统维持灌注。肺静脉压和肺泡压分别维持在2.5和2.0 cmH₂O,设置肺动脉压以使肺重量发生变化。我们同时将肺动脉压和静脉压提高3 cmH₂O,并获得初始滤过率。然后用K-H将灌注液稀释至约一半浓度,并获得初始滤过率。我们获得的滤过变量值为K = 4.55 mg·min⁻¹·cm H₂O⁻¹·g⁻¹],Ppmv = 0.59 cmH₂O,σ = 0.617。这些值与先前报告的值一致。由于这三个滤过变量相互关联,这种同时测量的方法比单独测量更准确。该方法的主要优点是不需要直接测量间质压力或收集淋巴液,并且所有变量都是同时获得的。使用这种方法,可以估计分离的大鼠肺的血管通透性。

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