Pathogenesis of Tobacco-Associated Lung Adenocarcinoma Is Closely Coupled with Changes in the Gut and Lung Microbiomes

dc.contributor.authorFinnicum, Casey T.
dc.contributor.authorRahal, Zahraa
dc.contributor.authorHassane, Maya
dc.contributor.authorTreekitkarnmongkol, Warapen
dc.contributor.authorSinjab, Ansam
dc.contributor.authorMorris, Rhiannon
dc.contributor.authorLiu, Yuejiang
dc.contributor.authorTang, Elizabeth L.
dc.contributor.authorViet, Sarah
dc.contributor.authorPetersen, Jason L.
dc.contributor.authorLorenzi, Philip L.
dc.contributor.authorTan, Lin
dc.contributor.authorPetrosino, Joseph F.
dc.contributor.authorHoffman, Kristi Louise
dc.contributor.authorFujimoto, Jyunya
dc.contributor.authorMoghaddam, Seyed Javad Mirhasani
dc.contributor.authorKadara, Humam N.
dc.contributor.departmentBiochemistry and Molecular Genetics
dc.contributor.facultyFaculty of Medicine (FM)
dc.contributor.institutionAmerican University of Beirut
dc.date.accessioned2025-01-24T11:38:21Z
dc.date.available2025-01-24T11:38:21Z
dc.date.issued2022
dc.description.abstractMicrobial dysbiosis has emerged as a modulator of oncogenesis and response to therapy, particularly in lung cancer. Here, we investigate the evolution of the gut and lung microbiomes following exposure to a tobacco carcinogen. We performed 16S rRNA-Seq of fecal and lung samples collected prior to and at several timepoints following (nicotine-specific nitrosamine ketone/NNK) exposure in Gprc5a−/− mice that were previously shown to exhibit accelerated lung adenocarcinoma (LUAD) development following NNK exposure. We found significant progressive changes in human-relevant gut and lung microbiome members (e.g., Odoribacter, Alistipes, Akkermansia, and Ruminococus) that are closely associated with the phenotypic development of LUAD and immunotherapeutic response in human lung cancer patients. These changes were associated with decreased short-chain fatty acids (propionic acid and butyric acid) following exposure to NNK. We next sought to study the impact of Lcn2 expression, a bacterial growth inhibitor, given our previous findings on its protective role in LUAD development. Indeed, we found that the loss of Lcn2 was associated with widespread gut and lung microbiome changes at all timepoints, distinct from those observed in our Gprc5a−/− mouse model, including a decrease in abundance and diversity. Our overall findings apprise novel cues implicating microbial phenotypes in the development of tobacco-associated LUAD. © 2022 by the authors.
dc.identifier.doihttps://doi.org/10.3390/ijms231810930
dc.identifier.eid2-s2.0-85138382080
dc.identifier.pmid36142843
dc.identifier.urihttp://hdl.handle.net/10938/29039
dc.language.isoen
dc.publisherMDPI
dc.relation.ispartofInternational Journal of Molecular Sciences
dc.sourceScopus
dc.subject16s rrna sequencing
dc.subjectLung adenocarcinoma
dc.subjectMicrobiome
dc.subjectSmoking
dc.subjectAdenocarcinoma
dc.subjectAdenocarcinoma of lung
dc.subjectAnimals
dc.subjectButyrates
dc.subjectCarcinogens
dc.subjectDysbiosis
dc.subjectGrowth inhibitors
dc.subjectHumans
dc.subjectKetones
dc.subjectLung
dc.subjectLung neoplasms
dc.subjectMice
dc.subjectMicrobiota
dc.subjectNicotine
dc.subjectNitrosamines
dc.subjectPropionates
dc.subjectReceptors, g-protein-coupled
dc.subjectRna, ribosomal, 16s
dc.subjectTobacco
dc.subjectButyric acid
dc.subjectCarcinogen
dc.subjectKetone
dc.subjectNeutrophil gelatinase associated lipocalin
dc.subjectNitrosamine
dc.subjectPropionic acid
dc.subjectRna 16s
dc.subjectButyric acid derivative
dc.subjectG protein coupled receptor
dc.subjectGprc5a protein, human
dc.subjectGrowth inhibitor
dc.subjectPropionic acid derivative
dc.subjectAdult
dc.subjectAkkermansia
dc.subjectAlistipes
dc.subjectAnimal experiment
dc.subjectAnimal model
dc.subjectArticle
dc.subjectBacteriostatic activity
dc.subjectCancer immunotherapy
dc.subjectCarcinogenesis
dc.subjectControlled study
dc.subjectEcosystem
dc.subjectEvolution
dc.subjectFemale
dc.subjectIntestine flora
dc.subjectLung microbiota
dc.subjectMale
dc.subjectMouse
dc.subjectNonhuman
dc.subjectOdoribacter
dc.subjectPathogenesis
dc.subjectPhenotype
dc.subjectProtein expression
dc.subjectRna sequencing
dc.subjectRuminococcus
dc.subjectAdverse event
dc.subjectAnimal
dc.subjectGenetics
dc.subjectHuman
dc.subjectLung tumor
dc.subjectMetabolism
dc.subjectMicrobiology
dc.subjectMicroflora
dc.subjectPathology
dc.titlePathogenesis of Tobacco-Associated Lung Adenocarcinoma Is Closely Coupled with Changes in the Gut and Lung Microbiomes
dc.typeArticle

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