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骨组织工程:组织液流动的作用

Bone tissue engineering: the role of interstitial fluid flow.

作者信息

Hillsley M V, Frangos J A

机构信息

Department of Chemical Engineering, The Pennsylvania State University, University Park 16802, USA.

出版信息

Biotechnol Bioeng. 1994 Mar 25;43(7):573-81. doi: 10.1002/bit.260430706.

Abstract

It is well established that vascularization is required for effective bone healing. This implies that blood flow and interstitial fluid (ISF) flow are required for healing and maintenance of bone. The fact that changes in bone blood flow and ISF flow are associated with changes in bone remodeling and formation support this theory. ISF flow in bone results from transcortical pressure gradients produced by vascular and hydrostatic pressure, and mechanical loading. Conditions observed to alter flow rates include increases in venous pressure in hypertension, fluid shifts occurring in bedrest and microgravity, increases in vascularization during the injury-healing response, and mechanical compression and bending of bone during exercise. These conditions also induce changes in bone remodeling. Previously, we hypothesized that interstitial fluid flow in bone, and in particular fluid shear stress, serves to mediate signal transduction in mechanical loading- and injury-induced remodeling. In addition, we proposed that a lack or decrease of ISF flow results in the bone loss observed in disuse and microgravity. The purpose of this article is to review ISF flow in bone and its role in osteogenesis.

摘要

众所周知,血管化是有效骨愈合所必需的。这意味着血流和组织液(ISF)流动对于骨的愈合和维持是必需的。骨血流和ISF流动的变化与骨重塑和形成的变化相关这一事实支持了这一理论。骨中的ISF流动是由血管和流体静压以及机械负荷产生的跨皮质压力梯度引起的。观察到会改变流速的情况包括高血压时静脉压升高、卧床休息和微重力状态下发生的体液转移、损伤愈合反应期间血管化增加以及运动期间骨的机械压缩和弯曲。这些情况也会引起骨重塑的变化。此前,我们假设骨中的组织液流动,特别是流体剪切应力,在机械负荷和损伤诱导的重塑中起到介导信号转导的作用。此外,我们提出ISF流动的缺乏或减少会导致在废用和微重力状态下观察到的骨质流失。本文的目的是综述骨中的ISF流动及其在骨生成中的作用。

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