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Chronic cannabis smoking-enriched oral pathobiont drives behavioral changes, macrophage infiltration, and increases β-amyloid protein production in the brain

BACKGROUND: Little is known about chronic cannabis smoking-associated oral microbiome and its effects on central nervous system (CNS) functions. METHODS: In the current study, we have analyzed the saliva microbiome in individuals who chronically smoked cannabis with cannabis use disorder (n = 16) an...

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Autores principales: Luo, Zhenwu, Fitting, Sylvia, Robinson, Catrina, Benitez, Andreana, Li, Min, Wu, Yongxia, Fu, Xiaoyu, Amato, Davide, Ning, Wangbin, Funderburg, Nicholas, Wang, Xu, Zhou, Zejun, Yu, Xuezhong, Wagner, Amanda, Cong, Xiaomei, Xu, Wanli, Maas, Kendra, Wolf, Bethany J., Huang, Lei, Yu, Jeremy, Scott, Alison, Mcrae-Clark, Aimee, Hamlett, Eric D., Jiang, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8626580/
https://www.ncbi.nlm.nih.gov/pubmed/34826801
http://dx.doi.org/10.1016/j.ebiom.2021.103701
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author Luo, Zhenwu
Fitting, Sylvia
Robinson, Catrina
Benitez, Andreana
Li, Min
Wu, Yongxia
Fu, Xiaoyu
Amato, Davide
Ning, Wangbin
Funderburg, Nicholas
Wang, Xu
Zhou, Zejun
Yu, Xuezhong
Wagner, Amanda
Cong, Xiaomei
Xu, Wanli
Maas, Kendra
Wolf, Bethany J.
Huang, Lei
Yu, Jeremy
Scott, Alison
Mcrae-Clark, Aimee
Hamlett, Eric D.
Jiang, Wei
author_facet Luo, Zhenwu
Fitting, Sylvia
Robinson, Catrina
Benitez, Andreana
Li, Min
Wu, Yongxia
Fu, Xiaoyu
Amato, Davide
Ning, Wangbin
Funderburg, Nicholas
Wang, Xu
Zhou, Zejun
Yu, Xuezhong
Wagner, Amanda
Cong, Xiaomei
Xu, Wanli
Maas, Kendra
Wolf, Bethany J.
Huang, Lei
Yu, Jeremy
Scott, Alison
Mcrae-Clark, Aimee
Hamlett, Eric D.
Jiang, Wei
author_sort Luo, Zhenwu
collection PubMed
description BACKGROUND: Little is known about chronic cannabis smoking-associated oral microbiome and its effects on central nervous system (CNS) functions. METHODS: In the current study, we have analyzed the saliva microbiome in individuals who chronically smoked cannabis with cannabis use disorder (n = 16) and in non-smoking controls (n = 27). The saliva microbiome was analyzed using microbial 16S rRNA sequencing. To investigate the function of cannabis use-associated oral microbiome, mice were orally inoculated with live Actinomyces meyeri, Actinomyces odontolyticus, or Neisseria elongata twice per week for six months, which mimicked human conditions. FINDINGS: We found that cannabis smoking in humans was associated with oral microbial dysbiosis. The most increased oral bacteria were Streptococcus and Actinomyces genus and the most decreased bacteria were Neisseria genus in chronic cannabis smokers compared to those in non-smokers. Among the distinct species bacteria in cannabis smokers, the enrichment of Actinomyces meyeri was inversely associated with the age of first cannabis smoking. Strikingly, oral exposure of Actinomyces meyeri, an oral pathobiont, but not the other two control bacteria, decreased global activity, increased macrophage infiltration, and increased β-amyloid 42 protein production in the mouse brains. INTERPRETATION: This is the first study to reveal that long-term oral cannabis exposure is associated oral enrichment of Actinomyces meyeri and its contributions to CNS abnormalities.
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spelling pubmed-86265802021-12-02 Chronic cannabis smoking-enriched oral pathobiont drives behavioral changes, macrophage infiltration, and increases β-amyloid protein production in the brain Luo, Zhenwu Fitting, Sylvia Robinson, Catrina Benitez, Andreana Li, Min Wu, Yongxia Fu, Xiaoyu Amato, Davide Ning, Wangbin Funderburg, Nicholas Wang, Xu Zhou, Zejun Yu, Xuezhong Wagner, Amanda Cong, Xiaomei Xu, Wanli Maas, Kendra Wolf, Bethany J. Huang, Lei Yu, Jeremy Scott, Alison Mcrae-Clark, Aimee Hamlett, Eric D. Jiang, Wei EBioMedicine Research paper BACKGROUND: Little is known about chronic cannabis smoking-associated oral microbiome and its effects on central nervous system (CNS) functions. METHODS: In the current study, we have analyzed the saliva microbiome in individuals who chronically smoked cannabis with cannabis use disorder (n = 16) and in non-smoking controls (n = 27). The saliva microbiome was analyzed using microbial 16S rRNA sequencing. To investigate the function of cannabis use-associated oral microbiome, mice were orally inoculated with live Actinomyces meyeri, Actinomyces odontolyticus, or Neisseria elongata twice per week for six months, which mimicked human conditions. FINDINGS: We found that cannabis smoking in humans was associated with oral microbial dysbiosis. The most increased oral bacteria were Streptococcus and Actinomyces genus and the most decreased bacteria were Neisseria genus in chronic cannabis smokers compared to those in non-smokers. Among the distinct species bacteria in cannabis smokers, the enrichment of Actinomyces meyeri was inversely associated with the age of first cannabis smoking. Strikingly, oral exposure of Actinomyces meyeri, an oral pathobiont, but not the other two control bacteria, decreased global activity, increased macrophage infiltration, and increased β-amyloid 42 protein production in the mouse brains. INTERPRETATION: This is the first study to reveal that long-term oral cannabis exposure is associated oral enrichment of Actinomyces meyeri and its contributions to CNS abnormalities. Elsevier 2021-11-23 /pmc/articles/PMC8626580/ /pubmed/34826801 http://dx.doi.org/10.1016/j.ebiom.2021.103701 Text en © 2021 Published by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research paper
Luo, Zhenwu
Fitting, Sylvia
Robinson, Catrina
Benitez, Andreana
Li, Min
Wu, Yongxia
Fu, Xiaoyu
Amato, Davide
Ning, Wangbin
Funderburg, Nicholas
Wang, Xu
Zhou, Zejun
Yu, Xuezhong
Wagner, Amanda
Cong, Xiaomei
Xu, Wanli
Maas, Kendra
Wolf, Bethany J.
Huang, Lei
Yu, Jeremy
Scott, Alison
Mcrae-Clark, Aimee
Hamlett, Eric D.
Jiang, Wei
Chronic cannabis smoking-enriched oral pathobiont drives behavioral changes, macrophage infiltration, and increases β-amyloid protein production in the brain
title Chronic cannabis smoking-enriched oral pathobiont drives behavioral changes, macrophage infiltration, and increases β-amyloid protein production in the brain
title_full Chronic cannabis smoking-enriched oral pathobiont drives behavioral changes, macrophage infiltration, and increases β-amyloid protein production in the brain
title_fullStr Chronic cannabis smoking-enriched oral pathobiont drives behavioral changes, macrophage infiltration, and increases β-amyloid protein production in the brain
title_full_unstemmed Chronic cannabis smoking-enriched oral pathobiont drives behavioral changes, macrophage infiltration, and increases β-amyloid protein production in the brain
title_short Chronic cannabis smoking-enriched oral pathobiont drives behavioral changes, macrophage infiltration, and increases β-amyloid protein production in the brain
title_sort chronic cannabis smoking-enriched oral pathobiont drives behavioral changes, macrophage infiltration, and increases β-amyloid protein production in the brain
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8626580/
https://www.ncbi.nlm.nih.gov/pubmed/34826801
http://dx.doi.org/10.1016/j.ebiom.2021.103701
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