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Interleukin-6 drives endothelial glycocalyx damage in COVID-19 and bacterial sepsis

Carolin Christina Drost; Alexandros Rovas; Irina Osiaevi; Klaus Schughart; Alexander Lukasz; Wolfgang A. Linke; Hermann Pavenstädt; Philipp Kümpers
Angiogenesis · Vol. 27, Issue 3 · pp. 411-422 · 2024

Abstract

Damage of the endothelial glycocalyx (eGC) plays a central role in the development of vascular hyperpermeability and organ damage during systemic inflammation. However, the specific signalling pathways for eGC damage remain poorly defined. Aim of this study was to combine sublingual video-microscopy, plasma proteomics and live cell imaging to uncover further pathways of eGC damage in patients with coronavirus disease 2019 (COVID-19) or bacterial sepsis. This secondary analysis of the prospective multicenter MICROCODE study included 22 patients with COVID-19 and 43 patients with bacterial sepsis admitted to intermediate or intensive care units and 10 healthy controls. Interleukin-6 (IL-6) was strongly associated with damaged eGC and correlated both with eGC dimensions (r s =0.36, p = 0.0015) and circulating eGC biomarkers. In vitro, IL-6 reduced eGC height and coverage, which was inhibited by blocking IL-6 signalling with the anti-IL-6 receptor antibody tocilizumab or the Janus kinase inhibitor tofacitinib. Exposure of endothelial cells to 5% serum from COVID-19 or sepsis patients resulted in a significant decrease in eGC height, which was attenuated by co-incubation with tocilizumab. In an external COVID-19 cohort of 219 patients from Massachusetts General Hospital, a previously identified proteomic eGC signature correlated with IL-6 (r s =-0.58, p p

Bibliographic Information

JournalAngiogenesis
PublisherSpringer
Publication Date2024-08-01
Publication Year2024
Volume27
Issue3
Pages411-422
Document TypeJournal Article
eISSN1573-7209
DOI10.1007/s10456-024-09916-w

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NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10456
Publisher PageOpen Publisher Page
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