A microscopic view on the renal endothelial glycocalyx

Author:

Dane Martijn J. C.1,van den Berg Bernard M.1,Lee Dae Hyun1,Boels Margien G. S.1,Tiemeier Gesa L.1,Avramut M. Cristina2,van Zonneveld Anton Jan1,van der Vlag Johan3,Vink Hans4,Rabelink Ton J.1

Affiliation:

1. Department of Nephrology, Einthoven laboratory for Vascular Medicine, LUMC, Leiden University Medical Center, Leiden, The Netherlands;

2. Department of Molecular Cell Biology, Section Electron Microscopy LUMC, Leiden University Medical Center, Leiden, The Netherlands;

3. Department of Nephrology, Radboud Institute for Molecular Life Sciences, Radboud University Medical Center, Nijmegen, The Netherlands; and

4. Department of Physiology, Maastricht University Medical Center, Maastricht, The Netherlands

Abstract

Endothelial cells perform key homeostatic functions such as regulating blood flow, permeability, and aiding immune surveillance for pathogens. While endothelial activation serves normal physiological adaptation, maladaptation of these endothelial functions has been identified as an important effector mechanism in the progression of renal disease as well as the associated development of cardiovascular disease. The primary interface between blood and the endothelium is the glycocalyx. This carbohydrate-rich gel-like structure with its associated proteins mediates most of the regulatory functions of the endothelium. Because the endothelial glycocalyx is a highly dynamic and fragile structure ex vivo, and traditional tissue processing for staining and perfusion-fixation usually results in a partial or complete loss of the glycocalyx, studying its dimensions and function has proven to be challenging. In this review, we will outline the core functions of the glycocalyx and focus on different techniques to study structure-function relationships in kidney and vasculature.

Publisher

American Physiological Society

Subject

Physiology

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