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首页> 外文期刊>American Journal of Physiology >The transport barrier in intraperitoneal therapy.
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The transport barrier in intraperitoneal therapy.

机译:腹膜内治疗中的运输障碍。

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摘要

The peritoneal cavity is important in clinical medicine because of its use as a portal of entry for drugs utilized in regional chemotherapy and as a means of dialysis for anephric patients. The barrier between the therapeutic solution in the cavity and the plasma does not correspond to the classic semipermeable membrane but instead is a complex structure of cells, extracellular matrix, and blood microvessels in the surrounding tissue. New research on the nature of the capillary barrier and on the orderly array of extracellular matrix molecules has provided insights into the physiological basis of osmosis and the alterations in transport that result from infusion of large volumes of fluid. The anatomic peritoneum is highly permeable to water, small solutes, and proteins and therefore is not a physical barrier. However, the cells of the mesothelium play an essential role in the immune response in the cavity and produce cytokines and chemokines in response to contact with noncompatible solutions. The process of inflammation, which depends on the interaction of mesothelial, interstitial, and endothelial cells, ultimately leads to angiogenesis and fibrosis and the functional alteration of the barrier. New animal models, such as the transgenic mouse, will accelerate the discovery of methods to preserve the functional peritoneal barrier.
机译:腹膜腔在临床医学中很重要,因为它可作为区域化学疗法中使用的药物的进入门户,并作为肾病患者的透析手段。空腔中的治疗溶液与血浆之间的屏障并不对应于经典的半透膜,而是周围组织中细胞,细胞外基质和血液微血管的复杂结构。关于毛细管屏障的性质和细胞外基质分子的有序排列的新研究为渗透的生理基础和输注大量液体导致的运输变化提供了见识。解剖性腹膜对水,小溶质和蛋白质具有很高的渗透性,因此不是物理屏障。然而,间皮细胞在腔内的免疫反应中起重要作用,并响应与不相容溶液的接触而产生细胞因子和趋化因子。炎症过程取决于间皮,间质和内皮细胞的相互作用,最终导致血管生成和纤维化以及屏障的功能改变。新的动物模型,例如转基因小鼠,将加速发现保留功能性腹膜屏障的方法的发现。

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