ArticleClinical science (London, England : 1979)2026
The loss of glycoprotein nonmetastatic melanoma protein B (GPNMB) alters endothelial cell permeability, metabolism, and survival during infectious challenge.
Article in Clinical science (London, England : 1979), 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 1 paper.
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
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Who cites it
1 citing paper in PubMed.
- The loss of glycoprotein nonmetastatic melanoma protein B (GPNMB) alters endothelial cell permeability, metabolism, and survival during infectious challenge.Clinical science (London, England : 1979) · 2026Article
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Authors and funding
7 authors.
Funding
Abstract
During severe systemic infections, also known as sepsis, excessive cytokines and reactive oxygen species lead to endothelial dysfunction. Glycoprotein nonmetastatic melanoma protein B (GPNMB) has been implicated in regulating cellular functions, particularly within the vasculature during inflammation, but its effect on infection-mediated endothelial injury remains unclear. Data obtained from the Gene Expression Omnibus (GEO) show that GPNMB expression is systemically reduced following an infectious challenge. Therefore, to investigate the role of GPNMB during infection-mediated endothelial inflammation, we utilized human microvascular endothelial cells (HMVECs) with or without GPNMB knockdown (siGPNMB) and exposed them to heat-killed Escherichia coli (HKEC), one of the most common pathogens associated with sepsis. Silencing GPNMB altered the expression of 1453 genes via RNA sequencing, affecting cytoskeleton function and the response to stimuli. When assessing the endothelial monolayer under basal conditions, siGPNMB cells displayed higher transendothelial electrical resistance (TEER), consistent with RNA sequencing pathway analysis, but exposure to HKEC resulted in increased barrier dysfunction compared with controls. Furthermore, compared with controls, assessments of viability, proliferation, and migration were compromised in siGPNMB cells following HKEC exposure. Exposure to HKEC decreased the oxygen consumption rate in controls and increased the extracellular acidification rate, but neither was changed in siGPNMB cells, indicating impaired metabolic adaptation and further corroborating aspects of the RNA sequencing data. Our findings demonstrate that GPNMB reduction hinders the endothelial response to infectious stimuli, resulting in decreased metabolic fluxes and dysfunctional endothelium during infectious challenges.
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