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Arginine-mediated gut microbiome remodeling promotes host pulmonary immune defense against nontuberculous mycobacterial infection

Nontuberculous mycobacterial pulmonary diseases (NTM-PDs) are emerging as global health threats with issues of antibiotic resistance. Accumulating evidence suggests that the gut–lung axis may provide novel candidates for host-directed therapeutics against various infectious diseases. However, little...

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Autores principales: Kim, Young Jae, Lee, June-Young, Lee, Jae Jin, Jeon, Sang Min, Silwal, Prashanta, Kim, In Soo, Kim, Hyeon Ji, Park, Cho Rong, Chung, Chaeuk, Han, Jeong Eun, Choi, Jee-Won, Tak, Euon Jung, Yoo, Ji-Ho, Jeong, Su-Won, Kim, Do-Yeon, Ketphan, Warisa, Kim, Su-Young, Jhun, Byung Woo, Whang, Jake, Kim, Jin-Man, Eoh, Hyungjin, Bae, Jin-Woo, Jo, Eun-Kyeong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9116420/
https://www.ncbi.nlm.nih.gov/pubmed/35579969
http://dx.doi.org/10.1080/19490976.2022.2073132
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author Kim, Young Jae
Lee, June-Young
Lee, Jae Jin
Jeon, Sang Min
Silwal, Prashanta
Kim, In Soo
Kim, Hyeon Ji
Park, Cho Rong
Chung, Chaeuk
Han, Jeong Eun
Choi, Jee-Won
Tak, Euon Jung
Yoo, Ji-Ho
Jeong, Su-Won
Kim, Do-Yeon
Ketphan, Warisa
Kim, Su-Young
Jhun, Byung Woo
Whang, Jake
Kim, Jin-Man
Eoh, Hyungjin
Bae, Jin-Woo
Jo, Eun-Kyeong
author_facet Kim, Young Jae
Lee, June-Young
Lee, Jae Jin
Jeon, Sang Min
Silwal, Prashanta
Kim, In Soo
Kim, Hyeon Ji
Park, Cho Rong
Chung, Chaeuk
Han, Jeong Eun
Choi, Jee-Won
Tak, Euon Jung
Yoo, Ji-Ho
Jeong, Su-Won
Kim, Do-Yeon
Ketphan, Warisa
Kim, Su-Young
Jhun, Byung Woo
Whang, Jake
Kim, Jin-Man
Eoh, Hyungjin
Bae, Jin-Woo
Jo, Eun-Kyeong
author_sort Kim, Young Jae
collection PubMed
description Nontuberculous mycobacterial pulmonary diseases (NTM-PDs) are emerging as global health threats with issues of antibiotic resistance. Accumulating evidence suggests that the gut–lung axis may provide novel candidates for host-directed therapeutics against various infectious diseases. However, little is known about the gut–lung axis in the context of host protective immunity to identify new therapeutics for NTM-PDs. This study was performed to identify gut microbes and metabolites capable of conferring pulmonary immunity to NTM-PDs. Using metabolomics analysis of sera from NTM-PD patients and mouse models, we showed that the levels of l-arginine were decreased in sera from NTM-PD patients and NTM-infected mice. Oral administration of l-arginine significantly enhanced pulmonary antimicrobial activities with the expansion of IFN-γ-producing effector T cells and a shift to microbicidal (M1) macrophages in the lungs of NTM-PD model mice. Mice that received fecal microbiota transplants from l-arginine-treated mice showed increased protective host defense in the lungs against NTM-PD, whereas l-arginine-induced pulmonary host defense was attenuated in mice treated with antibiotics. Using 16S rRNA sequencing, we further showed that l-arginine administration resulted in enrichment of the gut microbiota composition with Bifidobacterium species. Notably, oral treatment with either Bifidobacterium pseudolongum or inosine enhanced antimicrobial pulmonary immune defense against NTM infection, even with multidrug-resistant clinical NTM strains. Our findings indicate that l-arginine-induced gut microbiota remodeling with enrichment of B. pseudolongum boosts pulmonary immune defense against NTM infection by driving the protective gut–lung axis in vivo.
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spelling pubmed-91164202022-05-19 Arginine-mediated gut microbiome remodeling promotes host pulmonary immune defense against nontuberculous mycobacterial infection Kim, Young Jae Lee, June-Young Lee, Jae Jin Jeon, Sang Min Silwal, Prashanta Kim, In Soo Kim, Hyeon Ji Park, Cho Rong Chung, Chaeuk Han, Jeong Eun Choi, Jee-Won Tak, Euon Jung Yoo, Ji-Ho Jeong, Su-Won Kim, Do-Yeon Ketphan, Warisa Kim, Su-Young Jhun, Byung Woo Whang, Jake Kim, Jin-Man Eoh, Hyungjin Bae, Jin-Woo Jo, Eun-Kyeong Gut Microbes Research Paper Nontuberculous mycobacterial pulmonary diseases (NTM-PDs) are emerging as global health threats with issues of antibiotic resistance. Accumulating evidence suggests that the gut–lung axis may provide novel candidates for host-directed therapeutics against various infectious diseases. However, little is known about the gut–lung axis in the context of host protective immunity to identify new therapeutics for NTM-PDs. This study was performed to identify gut microbes and metabolites capable of conferring pulmonary immunity to NTM-PDs. Using metabolomics analysis of sera from NTM-PD patients and mouse models, we showed that the levels of l-arginine were decreased in sera from NTM-PD patients and NTM-infected mice. Oral administration of l-arginine significantly enhanced pulmonary antimicrobial activities with the expansion of IFN-γ-producing effector T cells and a shift to microbicidal (M1) macrophages in the lungs of NTM-PD model mice. Mice that received fecal microbiota transplants from l-arginine-treated mice showed increased protective host defense in the lungs against NTM-PD, whereas l-arginine-induced pulmonary host defense was attenuated in mice treated with antibiotics. Using 16S rRNA sequencing, we further showed that l-arginine administration resulted in enrichment of the gut microbiota composition with Bifidobacterium species. Notably, oral treatment with either Bifidobacterium pseudolongum or inosine enhanced antimicrobial pulmonary immune defense against NTM infection, even with multidrug-resistant clinical NTM strains. Our findings indicate that l-arginine-induced gut microbiota remodeling with enrichment of B. pseudolongum boosts pulmonary immune defense against NTM infection by driving the protective gut–lung axis in vivo. Taylor & Francis 2022-05-17 /pmc/articles/PMC9116420/ /pubmed/35579969 http://dx.doi.org/10.1080/19490976.2022.2073132 Text en © 2022 The Author(s). Published with license by Taylor & Francis Group, LLC. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Kim, Young Jae
Lee, June-Young
Lee, Jae Jin
Jeon, Sang Min
Silwal, Prashanta
Kim, In Soo
Kim, Hyeon Ji
Park, Cho Rong
Chung, Chaeuk
Han, Jeong Eun
Choi, Jee-Won
Tak, Euon Jung
Yoo, Ji-Ho
Jeong, Su-Won
Kim, Do-Yeon
Ketphan, Warisa
Kim, Su-Young
Jhun, Byung Woo
Whang, Jake
Kim, Jin-Man
Eoh, Hyungjin
Bae, Jin-Woo
Jo, Eun-Kyeong
Arginine-mediated gut microbiome remodeling promotes host pulmonary immune defense against nontuberculous mycobacterial infection
title Arginine-mediated gut microbiome remodeling promotes host pulmonary immune defense against nontuberculous mycobacterial infection
title_full Arginine-mediated gut microbiome remodeling promotes host pulmonary immune defense against nontuberculous mycobacterial infection
title_fullStr Arginine-mediated gut microbiome remodeling promotes host pulmonary immune defense against nontuberculous mycobacterial infection
title_full_unstemmed Arginine-mediated gut microbiome remodeling promotes host pulmonary immune defense against nontuberculous mycobacterial infection
title_short Arginine-mediated gut microbiome remodeling promotes host pulmonary immune defense against nontuberculous mycobacterial infection
title_sort arginine-mediated gut microbiome remodeling promotes host pulmonary immune defense against nontuberculous mycobacterial infection
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9116420/
https://www.ncbi.nlm.nih.gov/pubmed/35579969
http://dx.doi.org/10.1080/19490976.2022.2073132
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