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Bronchoalveolar Lavage Exosomes in Lipopolysaccharide-induced Septic Lung Injury
Published on: May 21, 2018
Plant-derived exosomal microRNAs inhibit lung inflammation induced by exosomes SARS-CoV-2 Nsp12
Yun Teng1, Fangyi Xu1, Xiangcheng Zhang2
1James Graham Brown Cancer Center, University of Louisville, Louisville, KY 40202, USA.
Abstract:
Lung inflammation is a hallmark of coronavirus disease 2019 (COVID-19). In this study, we show that mice develop inflamed lung tissue after being administered exosomes released from the lung epithelial cells exposed to severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) Nsp12 and Nsp13 (exosomesNsp12Nsp13). Mechanistically, we show that exosomesNsp12Nsp13 are taken up by lung macrophages, leading to activation of nuclear factor κB (NF-κB) and the subsequent induction of an array of inflammatory cytokines. Induction of tumor necrosis factor (TNF)-α, interleukin (IL)-6, and IL-1β from exosomesNsp12Nsp13-activated lung macrophages contributes to inducing apoptosis in lung epithelial cells. Induction of exosomesNsp12Nsp13-mediated lung inflammation was abolished with ginger exosome-like nanoparticle (GELN) microRNA (miRNA aly-miR396a-5p. The role of GELNs in inhibition of the SARS-CoV-2-induced cytopathic effect (CPE) was further demonstrated via GELN aly-miR396a-5p- and rlcv-miR-rL1-28-3p-mediated inhibition of expression of Nsp12 and spike genes, respectively. Taken together, our results reveal exosomesNsp12Nsp13 as potentially important contributors to the development of lung inflammation, and GELNs are a potential therapeutic agent to treat COVID-19.
Insights
Exosomes from SARS-CoV-2 infected cells cause lung inflammation in mice. Ginger exosome-like nanoparticles (GELNs) containing specific microRNAs reversed this inflammation, showing potential as a COVID-19 therapy.
Area of Science:
- Biomedical Science
- Molecular Biology
- Immunology
Background:
- Lung inflammation is a key feature of COVID-19.
- Exosomes released from SARS-CoV-2 exposed cells can mediate inflammatory responses.
Purpose of the Study:
- To investigate the role of exosomes (exosomesNsp12Nsp13) in SARS-CoV-2-induced lung inflammation.
- To evaluate the therapeutic potential of ginger exosome-like nanoparticles (GELNs) in mitigating COVID-19 related lung inflammation.
Main Methods:
- Mice were administered exosomesNsp12Nsp13 to induce lung inflammation.
- Mechanisms of inflammation involved macrophage uptake, NF-κB activation, and cytokine induction.
- GELNs with specific miRNAs were used to inhibit inflammation and viral gene expression.
Main Results:
- ExosomesNsp12Nsp13 induced lung inflammation, macrophage activation, and epithelial cell apoptosis.
- GELN miRNA aly-miR396a-5p abolished exosomesNsp12Nsp13-mediated lung inflammation.
- GELNs inhibited SARS-CoV-2 Nsp12 and spike gene expression, reducing cytopathic effects.
Conclusions:
- ExosomesNsp12Nsp13 are significant contributors to COVID-19 lung inflammation.
- GELNs demonstrate therapeutic potential for treating COVID-19 by reducing inflammation and viral gene expression.
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