首页> 外文期刊>Microcirculation: The official journal of the Microcirculatory Society >The role of the extracellular matrix in tissue distribution of macromolecules in normal and pathological tissues: potential therapeutic consequences.
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The role of the extracellular matrix in tissue distribution of macromolecules in normal and pathological tissues: potential therapeutic consequences.

机译:细胞外基质在正常和病理组织中大分子组织分布中的作用:潜在的治疗效果。

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摘要

The interstitial space is a dynamic microenvironment that consists of interstitial fluid and structural molecules of the extracellular matrix, such as glycosaminoglycans (hyaluronan and proteoglycans) and collagen. Macromolecules can distribute in the interstitium only in those spaces unoccupied by structural components, a phenomenon called interstitial exclusion. The exclusion phenomenon has direct consequences for plasma volume regulation. Early studies have assigned a major role to collagen as an excluding agent that accounts for the sterical (geometrical) exclusion. More recently, it has been shown that the contribution of negatively charged glycosaminoglycans might also be significant, resulting in an additional electrostatical exclusion effect. This charge effect may be of importance for drug uptake and suggests that either the glycosaminoglycans or the net charge of macromolecular substances to be delivered may be targeted to increase the available volume and uptake of macromolecular therapeuticagents in tumor tissue. Here, we provide an overview of the structural components of the interstitium and discuss the importance the sterical and electrostatical components have on the dynamics of transcapillary fluid exchange.
机译:间隙空间是一个动态的微环境,由间隙液和细胞外基质的结构分子组成,例如糖胺聚糖(透明质酸和蛋白聚糖)和胶原蛋白。大分子只能在间隙中分布在那些未被结构成分占据的空间中,这种现象被称为间隙排斥。排斥现象直接影响血浆体积调节。早期的研究已将胶原蛋白作为排除剂(占空间(几何)排斥)起了主要作用。最近,已经显示带负电荷的糖胺聚糖的贡献也可能是显着的,从而导致额外的静电排斥作用。该电荷效应对于药物吸收可能是重要的,并暗示糖胺聚糖或待输送的大分子物质的净电荷可以被靶向以增加肿瘤组织中大分子治疗剂的可利用量和吸收。在这里,我们提供了间质的结构成分的概述,并讨论了空间和静电成分对跨毛细血管流体交换动力学的重要性。

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