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糖萼及其在血管生理学和血管相关疾病中的作用。

The Glycocalyx and Its Role in Vascular Physiology and Vascular Related Diseases.

机构信息

Biomedical Engineering Department, The City College of New York, New York, NY, USA.

出版信息

Cardiovasc Eng Technol. 2021 Feb;12(1):37-71. doi: 10.1007/s13239-020-00485-9. Epub 2020 Sep 21.

Abstract

PURPOSE

In 2007 the two senior authors wrote a review on the structure and function of the endothelial glycocalyx layer (Weinbaum in Annu Rev Biomed Eng 9:121-167, 2007). Since then there has been an explosion of interest in this hydrated gel-like structure that coats the luminal surface of endothelial cells that line our vasculature due to its important functions in (A) basic vascular physiology and (B) vascular related diseases. This review will highlight the major advances that have occurred since our 2007 paper.

METHODS

A literature search mainly focusing on the role of the glycocalyx in the two major areas described above was performed using electronic databases.

RESULTS

In part (A) of this review, the new formulation of the century old Starling principle, now referred to as the Michel-Weinbaum glycoclayx model or revised Starling hypothesis, is described including new subtleties and physiological ramifications. New insights into mechanotransduction and release of nitric oxide due to fluid shear stress sensed by the glycocalyx are elaborated. Major advances in understanding the organization and function of glycocalyx components, and new techniques for measuring both its thickness and spatio-chemical organization based on super resolution, stochastic optical reconstruction microscopy (STORM) are presented. As discussed in part (B) of this review, it is now recognized that artery wall stiffness associated with hypertension and aging induces glycocalyx degradation, endothelial dysfunction and vascular disease. In addition to atherosclerosis and cardiovascular diseases, the glycocalyx plays an important role in lifestyle related diseases (e.g., diabetes) and cancer. Infectious diseases including sepsis, Dengue, Zika and Corona viruses, and malaria also involve the glycocalyx. Because of increasing recognition of the role of the glycocalyx in a wide range of diseases, there has been a vigorous search for methods to protect the glycocalyx from degradation or to enhance its synthesis in disease environments.

CONCLUSION

As we have seen in this review, many important developments in our basic understanding of GCX structure, function and role in diseases have been described since the 2007 paper. The future is wide open for continued GCX research.

摘要

目的

2007 年,两位资深作者撰写了一篇关于内皮糖萼层的结构和功能的综述(Weinbaum 在 Annu Rev Biomed Eng 9:121-167, 2007 年)。自那时以来,由于其在(A)基本血管生理学和(B)血管相关疾病中的重要功能,覆盖我们血管内皮细胞管腔表面的这种水合凝胶状结构引起了人们的极大兴趣。这篇综述将重点介绍自 2007 年那篇论文以来的主要进展。

方法

主要使用电子数据库对上述两个主要领域中糖萼作用的文献进行了检索。

结果

在这篇综述的 A 部分,描述了一个新的百年星龄原理的表述,现在称为 Michel-Weinbaum 糖萼模型或修正的 Starling 假说,包括新的细微差别和生理后果。阐述了由于糖萼感知流体剪切力而导致的机械转导和一氧化氮释放的新见解。深入了解糖萼成分的组织和功能的主要进展,以及基于超分辨率、随机光学重建显微镜(STORM)测量其厚度和空间化学组织的新技术。正如本综述 B 部分所讨论的,现在人们认识到,与高血压和衰老相关的动脉壁僵硬会导致糖萼降解、内皮功能障碍和血管疾病。除了动脉粥样硬化和心血管疾病外,糖萼在与生活方式相关的疾病(如糖尿病)和癌症中也发挥着重要作用。包括败血症、登革热、寨卡病毒和冠状病毒以及疟疾在内的传染病也涉及糖萼。由于人们越来越认识到糖萼在广泛疾病中的作用,因此人们一直在积极寻找保护糖萼免受降解或在疾病环境中增强其合成的方法。

结论

正如我们在这篇综述中所看到的,自 2007 年那篇论文以来,我们对 GCX 结构、功能及其在疾病中的作用的基本认识有了许多重要的发展。GCX 研究的未来前景广阔。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d2e/7505222/d289a3b02049/13239_2020_485_Fig1_HTML.jpg

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