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骨骼肌中的高渗状态以及跨毛细血管的液体和蛋白质移动

Hyperosmolality and transcapillary fluid and protein movement in skeletal muscle.

作者信息

Friedman J J

出版信息

Microvasc Res. 1985 May;29(3):340-9. doi: 10.1016/0026-2862(85)90023-8.

Abstract

The effect of hyperosmolal glucose infusion on the transcapillary transport of fluid and protein was examined in the isolated gracilis muscle of the dog. Volumes of 18, 36, and 72 microliter/min of 30% glucose were infused intraarterially for 30 min into blood flow held constant at 3-4 ml/min X 100 g, thereby increasing plasma osmolality from 21 to 126 mOsm/liter. Transcapillary fluid movement (Jv) was assessed plethysmographically and protein transport (Js) by direct monitoring of the rate of increase of tissue 125I-albumin radioactivity. Hyperosmolal perfusion reduced vascular resistance. Initially tissue volume declined and then while the infusion continued, reversed direction and rose, occasionally exceeding control volume within the 30-min infusion period. Js also declined transiently, then increased during infusion. The reversal of Js led the reversal of Jv, therefore the reversal of Jv during hyperosmolal infusion was attributed to development of a sufficient change in the oncotic gradient due to the increased Js. These changes were significantly dose dependent. Stopping the hyperosmolal infusion resulted in a marked increase in Jv at all dose levels and, except for the low dose, a maintained rate of increase of Js. Thus early during hyperosmolal exposure protein transport was enhanced by either diffusion or vesicular transport. During recovery, the maintained increase in Js was probably due to increased convection.

摘要

在犬的离体股薄肌中研究了高渗葡萄糖输注对液体和蛋白质跨毛细血管转运的影响。将体积分别为18、36和72微升/分钟的30%葡萄糖经动脉输注30分钟,同时将血流量维持在3 - 4毫升/分钟×100克不变,从而使血浆渗透压从21毫渗摩尔/升增至126毫渗摩尔/升。通过体积描记法评估跨毛细血管液体移动(Jv),并通过直接监测组织125I - 白蛋白放射性的增加速率来评估蛋白质转运(Js)。高渗灌注降低了血管阻力。最初组织体积下降,然后在输注持续过程中,其方向逆转并上升,在30分钟输注期内偶尔超过对照体积。Js也短暂下降,然后在输注期间增加。Js的逆转先于Jv的逆转,因此高渗输注期间Jv的逆转归因于Js增加导致的胶体渗透压梯度发生了足够的变化。这些变化具有显著的剂量依赖性。停止高渗输注导致所有剂量水平的Jv显著增加,并且除低剂量外,Js维持增加速率。因此,在高渗暴露早期,蛋白质转运通过扩散或囊泡转运增强。在恢复过程中,Js维持增加可能是由于对流增加。

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