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灌注兔耳中131I-白蛋白的组织对血浆的毛细血管通透性

Tissue to plasma capillary permeability of 131I-albumin in the perfused rabbit ear.

作者信息

Bent-Hansen L, Svendsen J H

机构信息

Department of Medicine B, Rigshospitalet, University of Copenhagen, Denmark.

出版信息

Microvasc Res. 1991 Mar;41(2):141-8. doi: 10.1016/0026-2862(91)90016-5.

Abstract

The tissue to plasma transfer of 131I-albumin was recorded in perfused rabbit ears (n = 6) following equilibration for 24 hr. 125I-fibrinogen served as the plasma marker, and was introduced intravenously 15 min before clamping. The ears were rollerpump perfused with isotonic diluted plasma at a constant rate of (mean +/- SD) 5.1 +/- 1.5 ml (min.100 g)-1. The mean extravascular albumin distribution volume was 12.4 +/- 1.1 ml.100 g-1, and the fibrinogen volume (plasma volume in tissue) was 3.1 +/- 0.4 ml.100 g-1 as determined from biopsies of the contralateral ear. The initial transfer of albumin was marked, and occurred at rates corresponding to a unidirectional clearance (Cl(0)) of 0.068 +/- 0.012 ml (min.100 g)-1. However, with a reduction of mean interstitial albumin tracer content of no more than 4%, net transport decreased to reach slowly declining levels 5 to 10 times lower within 10 min of continued perfusion. The decrease was considered due to rapid exhaustion of a small interstitial pool of tracer immediately adjacent to the exchange vessel membrane, followed by an increasingly retarded outwash from more distant areas. The results suggest a bimodal structural resistance to albumin movement: a relatively low resistance in the capillary membrane, and a considerable restriction to albumin transport located within the interstitial space.

摘要

在24小时平衡后,记录灌注兔耳(n = 6)中131I-白蛋白从组织到血浆的转运情况。125I-纤维蛋白原作为血浆标志物,在夹闭前15分钟静脉注射。兔耳用等渗稀释血浆通过滚柱泵以(平均±标准差)5.1±1.5 ml·(min·100 g)-1的恒定速率进行灌注。通过对侧耳活检确定,平均血管外白蛋白分布容积为12.4±1.1 ml·100 g-1,纤维蛋白原容积(组织中的血浆容积)为3.1±0.4 ml·100 g-1。白蛋白的初始转运明显,其转运速率对应于单向清除率(Cl(0))为0.068±0.012 ml·(min·100 g)-1。然而,随着平均间质白蛋白示踪剂含量降低不超过4%,净转运减少,在持续灌注10分钟内缓慢下降至低5到10倍的水平。这种下降被认为是由于紧邻交换血管膜的少量间质示踪剂池迅速耗尽,随后来自更远区域的洗脱越来越缓慢。结果表明白蛋白移动存在双峰结构阻力:毛细血管膜中的阻力相对较低,而间质空间内对白蛋白转运有相当大的限制。

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