Resveratrol protects mice against SEB‐induced acute lung injury and mortality by miR‐193a modulation that targets TGF‐β signalling |
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Authors: | Hasan Alghetaa Amira Mohammed Muthanna Sultan Philip Busbee Angela Murphy Saurabh Chatterjee Mitzi Nagarkatti Prakash Nagarkatti |
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Affiliation: | 1. Department of Pathology, Microbiology and Immunology, School of Medicine, University of South Carolina, Columbia, SC, USA;2. Department of Environmental Health Sciences, Arnold School of Public Health, University of South Carolina, Columbia, SC, USA |
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Abstract: | Staphylococcal enterotoxin B (SEB) is a potent superantigen produced by Staphylococcus aureus that triggers a strong immune response, characterized by cytokine storm, multi‐organ failure, and often death. When inhaled, SEB can cause acute lung injury (ALI) and respiratory failure. In this study, we investigated the effect of resveratrol (RES), a phytoallexin, on SEB‐driven ALI and mortality in mice. We used a dual‐exposure model of SEB in C3H/HeJ mice, which caused 100% mortality within the first 5 days of exposure, and treatment with RES resulted in 100% survival of these mice up to 10 days post‐SEB exposure. RES reduced the inflammatory cytokines in the serum and lungs, as well as T cell infiltration into the lungs caused by SEB. Treatment with RES also caused increased production of transforming growth factor‐beta (TGF‐β) in the blood and lungs. RES altered the miRNA profile in the immune cells isolated from the lungs. Of these, miR‐193a was strongly induced by SEB and was down‐regulated by RES treatment. Furthermore, transfection studies and pathway analyses revealed that miR‐193a targeted several molecules involved in TGF‐β signalling (TGFβ2, TGFβR3) and activation of apoptotic pathways death receptor‐6 (DR6). Together, our studies suggest that RES can effectively neutralize SEB‐mediated lung injury and mortality through potential regulation of miRNA that promote anti‐inflammatory activities. |
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Keywords: | 3,4,5‐trihydroxy‐trans‐stilbene acute lung injury death receptor 6 microRNA (miRNA/miR) miR‐193 pulmonary disease resveratrol staphylococcal enterotoxin B transforming growth factor‐beta |
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