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Abundance and Metabolism Disruptions of Intratumoral Microbiota by Chemical and Physical Actions Unfreeze Tumor Treatment Resistance

Intratumoral or intestinal microbiota correlates with tumorigenesis and progression, and microbiota regulation for reinforcing various anti‐tumor approaches is of significant importance, which, however, suffers from no precise regulation method and unclear underlying mechanism. Herein, a microbiome...

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Autores principales: Kong, Fanlei, Fang, Chao, Zhang, Yan, Duan, Lixia, Du, Dou, Xu, Guang, Li, Xiaolong, Li, Hongyan, Yin, Yifei, Xu, Huixiong, Zhang, Kun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8895135/
https://www.ncbi.nlm.nih.gov/pubmed/35037431
http://dx.doi.org/10.1002/advs.202105523
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author Kong, Fanlei
Fang, Chao
Zhang, Yan
Duan, Lixia
Du, Dou
Xu, Guang
Li, Xiaolong
Li, Hongyan
Yin, Yifei
Xu, Huixiong
Zhang, Kun
author_facet Kong, Fanlei
Fang, Chao
Zhang, Yan
Duan, Lixia
Du, Dou
Xu, Guang
Li, Xiaolong
Li, Hongyan
Yin, Yifei
Xu, Huixiong
Zhang, Kun
author_sort Kong, Fanlei
collection PubMed
description Intratumoral or intestinal microbiota correlates with tumorigenesis and progression, and microbiota regulation for reinforcing various anti‐tumor approaches is of significant importance, which, however, suffers from no precise regulation method and unclear underlying mechanism. Herein, a microbiome metabolism‐engineered phototherapy strategy is established, wherein Nb(2)C/Au nanocomposite and the corresponding phototherapy are harnessed to realize “chemical” and “physical” bacterial regulations. Flora analysis and mass spectrometry (MS) and metabonomics combined tests demonstrate that the synergistic microbiota regulations can alter the abundance, diversity of intratumoral microbiome, and disrupt metabolic pathways of microbiome and tumor microenvironment, wherein the differential singling pathways and biosynthetic necessities or metabolites that can affect tumor progression are identified. As well, anti‐TNFα is introduced to unite with bacterial regulation to synergistically mitigate bacterial‐induced inflammation, which, along with the metabolism disruptions of intratumoral microbiota and tumor microenvironment, unfreezes tumor resistance and harvests significantly‐intensified phototherapy‐based anti‐tumor outcomes against 4T1 and CT26 tumors. The clear underlying principles of microbiome‐regulated tumorigenesis and the established microbiome metabolism regulation method provide distinctive insights into tumor therapy, and can be also extended to other gut microbiome‐associated lesions interference.
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spelling pubmed-88951352022-03-10 Abundance and Metabolism Disruptions of Intratumoral Microbiota by Chemical and Physical Actions Unfreeze Tumor Treatment Resistance Kong, Fanlei Fang, Chao Zhang, Yan Duan, Lixia Du, Dou Xu, Guang Li, Xiaolong Li, Hongyan Yin, Yifei Xu, Huixiong Zhang, Kun Adv Sci (Weinh) Research Articles Intratumoral or intestinal microbiota correlates with tumorigenesis and progression, and microbiota regulation for reinforcing various anti‐tumor approaches is of significant importance, which, however, suffers from no precise regulation method and unclear underlying mechanism. Herein, a microbiome metabolism‐engineered phototherapy strategy is established, wherein Nb(2)C/Au nanocomposite and the corresponding phototherapy are harnessed to realize “chemical” and “physical” bacterial regulations. Flora analysis and mass spectrometry (MS) and metabonomics combined tests demonstrate that the synergistic microbiota regulations can alter the abundance, diversity of intratumoral microbiome, and disrupt metabolic pathways of microbiome and tumor microenvironment, wherein the differential singling pathways and biosynthetic necessities or metabolites that can affect tumor progression are identified. As well, anti‐TNFα is introduced to unite with bacterial regulation to synergistically mitigate bacterial‐induced inflammation, which, along with the metabolism disruptions of intratumoral microbiota and tumor microenvironment, unfreezes tumor resistance and harvests significantly‐intensified phototherapy‐based anti‐tumor outcomes against 4T1 and CT26 tumors. The clear underlying principles of microbiome‐regulated tumorigenesis and the established microbiome metabolism regulation method provide distinctive insights into tumor therapy, and can be also extended to other gut microbiome‐associated lesions interference. John Wiley and Sons Inc. 2022-01-17 /pmc/articles/PMC8895135/ /pubmed/35037431 http://dx.doi.org/10.1002/advs.202105523 Text en © 2022 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Kong, Fanlei
Fang, Chao
Zhang, Yan
Duan, Lixia
Du, Dou
Xu, Guang
Li, Xiaolong
Li, Hongyan
Yin, Yifei
Xu, Huixiong
Zhang, Kun
Abundance and Metabolism Disruptions of Intratumoral Microbiota by Chemical and Physical Actions Unfreeze Tumor Treatment Resistance
title Abundance and Metabolism Disruptions of Intratumoral Microbiota by Chemical and Physical Actions Unfreeze Tumor Treatment Resistance
title_full Abundance and Metabolism Disruptions of Intratumoral Microbiota by Chemical and Physical Actions Unfreeze Tumor Treatment Resistance
title_fullStr Abundance and Metabolism Disruptions of Intratumoral Microbiota by Chemical and Physical Actions Unfreeze Tumor Treatment Resistance
title_full_unstemmed Abundance and Metabolism Disruptions of Intratumoral Microbiota by Chemical and Physical Actions Unfreeze Tumor Treatment Resistance
title_short Abundance and Metabolism Disruptions of Intratumoral Microbiota by Chemical and Physical Actions Unfreeze Tumor Treatment Resistance
title_sort abundance and metabolism disruptions of intratumoral microbiota by chemical and physical actions unfreeze tumor treatment resistance
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8895135/
https://www.ncbi.nlm.nih.gov/pubmed/35037431
http://dx.doi.org/10.1002/advs.202105523
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