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Systemic antibiotics cause deterioration of emphysema associated with exaggerated inflammation and autophagyopen access

Authors
Kim, Na HyunChoi, Bo-YunKim, Eun SilKim, Su JungHong, Jeong YeonHeo, Sun-HeeJeong, Jin-YongKim, KyunggonYoo, Hyun JuSul, Woo JunLee, Sei Won
Issue Date
Oct-2023
Publisher
Springer Nature
Citation
Experimental and Molecular Medicine, v.55, no.10, pp 2260 - 2268
Pages
9
Journal Title
Experimental and Molecular Medicine
Volume
55
Number
10
Start Page
2260
End Page
2268
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/68566
DOI
10.1038/s12276-023-01099-6
ISSN
1226-3613
2092-6413
Abstract
The interaction between the microbial environment and the host is important for immune homeostasis. Recent research suggests that microbiota dysbiosis can be involved in respiratory diseases. Emphysema is a chronic inflammatory disease, but it is unclear whether dysbiosis caused by antibiotics can affect disease progression. Here, we tried to elucidate the effect of systemic antibiotics on smoking-exposed emphysema models. In this study, the antibiotic mixture caused more alveolar destruction and airspace expansion in the smoking group than in the smoking only or control groups. This emphysema aggravation as a result of antibiotic exposure was associated with increased levels of inflammatory cells, IL-6, IFNγ and protein concentrations in bronchoalveolar lavage fluid. Proteomics analysis indicated that autophagy could be involved in antibiotic-associated emphysema aggravation, and increased protein levels of LC3B, atg3, and atg7 were identified by Western blotting. In microbiome and metabolome analyses, the composition of the gut microbiota was different with smoking and antibiotic exposure, and the levels of short-chain fatty acids (SCFAs), including acetate and propionate, were reduced by antibiotic exposure. SCFA administration restored emphysema development with reduced inflammatory cells, IL-6, and IFNγ and decreased LC3B, atg3, and atg7 levels. In conclusion, antibiotics can aggravate emphysema, and inflammation and autophagy may be associated with this aggravation. This study provides important insight into the systemic impact of microbial dysbiosis and the therapeutic potential of utilizing the gut microbiota in emphysema. © 2023, The Author(s).
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생명공학대학 (시스템생명공학과)
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