Department of Nutrition and Integrative Physiology, Florida State University, Tallahassee, Florida.
Department of Internal Medicine, University of Utah, Utah.
Curr Opin Clin Nutr Metab Care. 2023 Nov 1;26(6):543-550. doi: 10.1097/MCO.0000000000000973. Epub 2023 Aug 9.
This review will highlight recent studies that have examined the endothelial glycocalyx in a variety of health conditions, as well as potential glycocalyx-targeted therapies.
A degraded glycocalyx is present in individuals that consume high sodium diet or have kidney disease, diabetes, preeclampsia, coronavirus disease 2019 (COVID-19), or sepsis. Specifically, these conditions are accompanied by elevated glycocalyx components in the blood, such as syndecan-1, syndecans-4, heparin sulfate, and enhanced heparinase activity. Impaired glycocalyx barrier function is accompanied by decreased nitric oxide bioavailability, increased leukocyte adhesion to endothelial cells, and vascular permeability. Glycocalyx degradation appears to play a key role in the progression of cardiovascular complications. However, studies that have used glycocalyx-targeted therapies to treat these conditions are scarce. Various therapeutics can restore the glycocalyx in kidney disease, diabetes, COVID-19, and sepsis. Exposing endothelial cells to glycocalyx components, such as heparin sulfate and hyaluronan protects the glycocalyx.
We conclude that the glycocalyx is degraded in a variety of health conditions, although it remains to be determined whether glycocalyx degradation plays a causal role in disease progression and severity, and whether glycocalyx-targeted therapies improve patient health outcomes. Future studies are warranted to investigate therapeutic strategies that target the endothelial glycocalyx.
本文将重点介绍近期研究,这些研究考察了多种健康状况下的内皮糖萼,并探讨了潜在的糖萼靶向治疗方法。
在摄入高盐饮食或患有肾脏疾病、糖尿病、先兆子痫、COVID-19 或败血症的个体中,糖萼存在降解。具体而言,这些疾病伴有血液中糖萼成分(如 syndecan-1、syndecans-4、肝素硫酸盐和增强的肝素酶活性)升高。糖萼屏障功能受损伴随着一氧化氮生物利用度降低、白细胞与内皮细胞黏附增加和血管通透性增加。糖萼降解似乎在心血管并发症的进展中起关键作用。然而,使用糖萼靶向治疗方法治疗这些疾病的研究很少。各种治疗方法可恢复肾脏疾病、糖尿病、COVID-19 和败血症中的糖萼。使内皮细胞暴露于糖萼成分(如肝素硫酸盐和透明质酸)可保护糖萼。
我们得出结论,在多种健康状况下,糖萼会发生降解,但仍需确定糖萼降解是否在疾病进展和严重程度中起因果作用,以及糖萼靶向治疗是否改善患者的健康结局。有必要开展未来的研究来探讨针对内皮糖萼的治疗策略。