Cargando…

Integrated microbiome and metabolome analysis reveals the potential therapeutic mechanism of Qing-Fei-Pai-Du decoction in mice with coronavirus-induced pneumonia

Current studies have shown that gut microbiota may be closely related to the severity of coronavirus disease 2019 (COVID-19) by regulating the host immune response. Qing-Fei-Pai-Du decoction (QFPDD) is the recommended drug for clinical treatment of patients with COVID-19 in China, but whether it exe...

Descripción completa

Detalles Bibliográficos
Autores principales: Wu, Gaosong, Zhang, Wendan, Zheng, Ningning, Zu, Xianpeng, Tian, Saisai, Zhong, Jing, Zhang, Yuhao, Liao, Jingyu, Sheng, Lili, Ge, Guanbo, Li, Houkai, Zhang, Weidong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9461713/
https://www.ncbi.nlm.nih.gov/pubmed/36093201
http://dx.doi.org/10.3389/fcimb.2022.950983
_version_ 1784787017786195968
author Wu, Gaosong
Zhang, Wendan
Zheng, Ningning
Zu, Xianpeng
Tian, Saisai
Zhong, Jing
Zhang, Yuhao
Liao, Jingyu
Sheng, Lili
Ge, Guanbo
Li, Houkai
Zhang, Weidong
author_facet Wu, Gaosong
Zhang, Wendan
Zheng, Ningning
Zu, Xianpeng
Tian, Saisai
Zhong, Jing
Zhang, Yuhao
Liao, Jingyu
Sheng, Lili
Ge, Guanbo
Li, Houkai
Zhang, Weidong
author_sort Wu, Gaosong
collection PubMed
description Current studies have shown that gut microbiota may be closely related to the severity of coronavirus disease 2019 (COVID-19) by regulating the host immune response. Qing-Fei-Pai-Du decoction (QFPDD) is the recommended drug for clinical treatment of patients with COVID-19 in China, but whether it exerts a therapeutic effect by modulating the immune response through gut microbiota remains unclear. In this study, we evaluated the therapeutic effects of QFPDD in pneumonia model mice and performed 16S rRNA sequencing and serum and lung tissue metabolomic analysis to explore the underlying mechanisms during the treatment. Then, Spearman correlation analysis was performed on gut microbiome, serum metabolome, and immune-inflammation-related indicators. Our results suggest that QFPDD can restore the richness and diversity of gut microbiota, and multiple gut microbiota (including Alistipes, Odoribacter, Staphylococcus, Lachnospiraceae_NK4A136_group Enterorhabdus, and unclassified_f_Lachnospiraceae) are significantly associated with immune-inflammation-related indicators. In addition, various types of lipid metabolism changes were observed in serum and lung tissue metabolome, especially glycerophospholipids and fatty acids. A total of 27 differential metabolites (DMs) were significantly correlated with immune-inflammation-related indicators, including 9 glycerophospholipids, 7 fatty acids, 3 linoleic acid, 2 eicosanoids, 2 amino acids, 2 bile acids, and 2 others. Interestingly, these DMs showed a good correlation with the gut microbiota affected by QFPDD. The above results suggest that QFPDD can improve the immune function and reduce inflammation in pneumonia model mice by remodeling gut microbiota and host metabolism.
format Online
Article
Text
id pubmed-9461713
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-94617132022-09-10 Integrated microbiome and metabolome analysis reveals the potential therapeutic mechanism of Qing-Fei-Pai-Du decoction in mice with coronavirus-induced pneumonia Wu, Gaosong Zhang, Wendan Zheng, Ningning Zu, Xianpeng Tian, Saisai Zhong, Jing Zhang, Yuhao Liao, Jingyu Sheng, Lili Ge, Guanbo Li, Houkai Zhang, Weidong Front Cell Infect Microbiol Cellular and Infection Microbiology Current studies have shown that gut microbiota may be closely related to the severity of coronavirus disease 2019 (COVID-19) by regulating the host immune response. Qing-Fei-Pai-Du decoction (QFPDD) is the recommended drug for clinical treatment of patients with COVID-19 in China, but whether it exerts a therapeutic effect by modulating the immune response through gut microbiota remains unclear. In this study, we evaluated the therapeutic effects of QFPDD in pneumonia model mice and performed 16S rRNA sequencing and serum and lung tissue metabolomic analysis to explore the underlying mechanisms during the treatment. Then, Spearman correlation analysis was performed on gut microbiome, serum metabolome, and immune-inflammation-related indicators. Our results suggest that QFPDD can restore the richness and diversity of gut microbiota, and multiple gut microbiota (including Alistipes, Odoribacter, Staphylococcus, Lachnospiraceae_NK4A136_group Enterorhabdus, and unclassified_f_Lachnospiraceae) are significantly associated with immune-inflammation-related indicators. In addition, various types of lipid metabolism changes were observed in serum and lung tissue metabolome, especially glycerophospholipids and fatty acids. A total of 27 differential metabolites (DMs) were significantly correlated with immune-inflammation-related indicators, including 9 glycerophospholipids, 7 fatty acids, 3 linoleic acid, 2 eicosanoids, 2 amino acids, 2 bile acids, and 2 others. Interestingly, these DMs showed a good correlation with the gut microbiota affected by QFPDD. The above results suggest that QFPDD can improve the immune function and reduce inflammation in pneumonia model mice by remodeling gut microbiota and host metabolism. Frontiers Media S.A. 2022-08-26 /pmc/articles/PMC9461713/ /pubmed/36093201 http://dx.doi.org/10.3389/fcimb.2022.950983 Text en Copyright © 2022 Wu, Zhang, Zheng, Zu, Tian, Zhong, Zhang, Liao, Sheng, Ge, Li and Zhang https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cellular and Infection Microbiology
Wu, Gaosong
Zhang, Wendan
Zheng, Ningning
Zu, Xianpeng
Tian, Saisai
Zhong, Jing
Zhang, Yuhao
Liao, Jingyu
Sheng, Lili
Ge, Guanbo
Li, Houkai
Zhang, Weidong
Integrated microbiome and metabolome analysis reveals the potential therapeutic mechanism of Qing-Fei-Pai-Du decoction in mice with coronavirus-induced pneumonia
title Integrated microbiome and metabolome analysis reveals the potential therapeutic mechanism of Qing-Fei-Pai-Du decoction in mice with coronavirus-induced pneumonia
title_full Integrated microbiome and metabolome analysis reveals the potential therapeutic mechanism of Qing-Fei-Pai-Du decoction in mice with coronavirus-induced pneumonia
title_fullStr Integrated microbiome and metabolome analysis reveals the potential therapeutic mechanism of Qing-Fei-Pai-Du decoction in mice with coronavirus-induced pneumonia
title_full_unstemmed Integrated microbiome and metabolome analysis reveals the potential therapeutic mechanism of Qing-Fei-Pai-Du decoction in mice with coronavirus-induced pneumonia
title_short Integrated microbiome and metabolome analysis reveals the potential therapeutic mechanism of Qing-Fei-Pai-Du decoction in mice with coronavirus-induced pneumonia
title_sort integrated microbiome and metabolome analysis reveals the potential therapeutic mechanism of qing-fei-pai-du decoction in mice with coronavirus-induced pneumonia
topic Cellular and Infection Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9461713/
https://www.ncbi.nlm.nih.gov/pubmed/36093201
http://dx.doi.org/10.3389/fcimb.2022.950983
work_keys_str_mv AT wugaosong integratedmicrobiomeandmetabolomeanalysisrevealsthepotentialtherapeuticmechanismofqingfeipaidudecoctioninmicewithcoronavirusinducedpneumonia
AT zhangwendan integratedmicrobiomeandmetabolomeanalysisrevealsthepotentialtherapeuticmechanismofqingfeipaidudecoctioninmicewithcoronavirusinducedpneumonia
AT zhengningning integratedmicrobiomeandmetabolomeanalysisrevealsthepotentialtherapeuticmechanismofqingfeipaidudecoctioninmicewithcoronavirusinducedpneumonia
AT zuxianpeng integratedmicrobiomeandmetabolomeanalysisrevealsthepotentialtherapeuticmechanismofqingfeipaidudecoctioninmicewithcoronavirusinducedpneumonia
AT tiansaisai integratedmicrobiomeandmetabolomeanalysisrevealsthepotentialtherapeuticmechanismofqingfeipaidudecoctioninmicewithcoronavirusinducedpneumonia
AT zhongjing integratedmicrobiomeandmetabolomeanalysisrevealsthepotentialtherapeuticmechanismofqingfeipaidudecoctioninmicewithcoronavirusinducedpneumonia
AT zhangyuhao integratedmicrobiomeandmetabolomeanalysisrevealsthepotentialtherapeuticmechanismofqingfeipaidudecoctioninmicewithcoronavirusinducedpneumonia
AT liaojingyu integratedmicrobiomeandmetabolomeanalysisrevealsthepotentialtherapeuticmechanismofqingfeipaidudecoctioninmicewithcoronavirusinducedpneumonia
AT shenglili integratedmicrobiomeandmetabolomeanalysisrevealsthepotentialtherapeuticmechanismofqingfeipaidudecoctioninmicewithcoronavirusinducedpneumonia
AT geguanbo integratedmicrobiomeandmetabolomeanalysisrevealsthepotentialtherapeuticmechanismofqingfeipaidudecoctioninmicewithcoronavirusinducedpneumonia
AT lihoukai integratedmicrobiomeandmetabolomeanalysisrevealsthepotentialtherapeuticmechanismofqingfeipaidudecoctioninmicewithcoronavirusinducedpneumonia
AT zhangweidong integratedmicrobiomeandmetabolomeanalysisrevealsthepotentialtherapeuticmechanismofqingfeipaidudecoctioninmicewithcoronavirusinducedpneumonia