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内皮糖萼:健康与危重症中的结构与功能

The endothelial glycocalyx: Structure and function in health and critical illness.

作者信息

Gaudette Sarah, Hughes Dez, Boller Manuel

机构信息

U-Vet Animal Hospital, Melbourne Veterinary School, University of Melbourne, Werribee, Victoria, 3030, Australia.

Translational Research and Clinical Trials (TRACTS) Group, Faculty of Veterinary and Agricultural Sciences, University of Melbourne, Werribee, Victoria, 3030, Australia.

出版信息

J Vet Emerg Crit Care (San Antonio). 2020 Mar;30(2):117-134. doi: 10.1111/vec.12925. Epub 2020 Feb 18.

Abstract

OBJECTIVE

To conduct a narrative review of the current literature in reference to the structure and function of the endothelial glycocalyx (EG) and its contribution to the pathophysiology of conditions relevant to the veterinary emergency and critical care clinician. Novel therapies for restoring or preserving the EG will also be discussed.

DATA SOURCES

Online databases (PubMed, CAB abstracts, Scopus) were searched between January 1st 2017 and May 1st 2017 for English language articles without publication date restriction. Keywords included EG, endothelial surface layer, degradation, syndecan-1, heparan sulfate, critical illness, sepsis, trauma, and therapeutics.

DATA SYNTHESIS

The EG is a complex and important structure located on the luminal surface of all blood vessels throughout the body. It plays an important role in normal vascular homeostasis including control of fluid exchange across the vascular barrier. Loss or degradation of the EG has an impact on inflammation, coagulation, and vascular permeability and tone. These changes are essential components in the pathophysiology of many conditions including sepsis and trauma. A substantial body of experimental animal and human clinical research over the last decade has demonstrated increased circulating concentrations of EG degradation products in these conditions. However, veterinary-specific research into the EG and critical illness is currently lacking. The utility of EG degradation products as diagnostic and prognostic tools continues to be investigated and new therapies to preserve or improve EG structure and function are under development.

CONCLUSIONS

The recognition of the presence of the EG has changed our understanding of transvascular fluid flux and the pathophysiology of many conditions of critical illness. The EG is an exciting target for novel therapeutics to improve morbidity and mortality in conditions such as sepsis and trauma.

摘要

目的

对当前有关内皮糖萼(EG)的结构与功能及其在兽医急诊与重症监护临床相关疾病病理生理学中的作用的文献进行叙述性综述。还将讨论恢复或保留EG的新疗法。

数据来源

在2017年1月1日至2017年5月1日期间,检索在线数据库(PubMed、CAB文摘、Scopus),查找无出版日期限制的英文文章。关键词包括EG、内皮表面层、降解、syndecan - 1、硫酸乙酰肝素、危重病、脓毒症、创伤和治疗学。

数据综合

EG是位于全身所有血管腔表面的一种复杂且重要的结构。它在正常血管稳态中发挥重要作用,包括控制血管屏障的液体交换。EG的丢失或降解会影响炎症、凝血以及血管通透性和张力。这些变化是许多疾病(包括脓毒症和创伤)病理生理学的重要组成部分。过去十年大量的实验动物和人类临床研究表明,在这些疾病中EG降解产物的循环浓度会升高。然而,目前缺乏针对EG与危重病的兽医特异性研究。EG降解产物作为诊断和预后工具的效用仍在研究中,并且正在开发保留或改善EG结构和功能的新疗法。

结论

对EG存在的认识改变了我们对跨血管液体通量以及许多危重病病理生理学的理解。EG是新型疗法的一个令人兴奋的靶点,有望改善脓毒症和创伤等疾病的发病率和死亡率。

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