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Evidence of immunometabolic dysregulation and airway dysbiosis in athletes susceptible to respiratory illness

BACKGROUND: Respiratory tract infection (RTI) is a leading cause of training and in-competition time-loss in athlete health. The immune factors associated with RTI susceptibility remain unclear. In this study, we prospectively characterise host immune factors in elite athletes exhibiting RTI suscept...

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Autores principales: Cuthbertson, Leah, Turner, Scarlett E.G., Jackson, Anna, Ranson, Craig, Loosemore, Mike, Kelleher, Peter, Moffatt, Miriam F., Cookson, William O.C., Hull, James H., Shah, Anand
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9062742/
https://www.ncbi.nlm.nih.gov/pubmed/35490556
http://dx.doi.org/10.1016/j.ebiom.2022.104024
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author Cuthbertson, Leah
Turner, Scarlett E.G.
Jackson, Anna
Ranson, Craig
Loosemore, Mike
Kelleher, Peter
Moffatt, Miriam F.
Cookson, William O.C.
Hull, James H.
Shah, Anand
author_facet Cuthbertson, Leah
Turner, Scarlett E.G.
Jackson, Anna
Ranson, Craig
Loosemore, Mike
Kelleher, Peter
Moffatt, Miriam F.
Cookson, William O.C.
Hull, James H.
Shah, Anand
author_sort Cuthbertson, Leah
collection PubMed
description BACKGROUND: Respiratory tract infection (RTI) is a leading cause of training and in-competition time-loss in athlete health. The immune factors associated with RTI susceptibility remain unclear. In this study, we prospectively characterise host immune factors in elite athletes exhibiting RTI susceptibility. METHODS: Peripheral blood lymphocyte flow cytometry phenotyping and 16S rRNA microbial sequencing of oropharyngeal swabs was performed in a prospective elite athlete cohort study (n = 121). Mass cytometry, peripheral blood mononuclear cell (PBMC) stimulation and plasma metabolic profiling was performed in age-matched highly-susceptible (HS) athletes (≥4RTI in last 18 months) (n = 22) compared to non-susceptible (NS) (≤1RTI in last 18 months) (n = 23) athletes. Findings were compared to non-athletic healthy controls (HC) (n = 19). FINDINGS: Athletes (n = 121) had a reduced peripheral blood memory T regulatory cell compartment compared to HC (p = 0.02 (95%CI:0.1,1.0)) and reduced upper airway bacterial biomass compared to HC (p = 0.032, effect size r = 0.19). HS athletes (n = 22) had lower circulating memory T regulatory cells compared to NS (n = 23) athletes (p = 0.005 (95%CI:-1.5,-0.15)) and HC (p = 0.002 (95%CI:-1.9,-0.3) with PBMC microbial stimulation assays revealing a T-helper 2 skewed immune response compared to HC. Plasma metabolomic profiling showed differences in sphingolipid pathway metabolites (a class of lipids important in infection and inflammation regulation) in HS compared to NS athletes and HC, with sphingomyelin predictive of RTI infection susceptibility (p = 0.005). INTERPRETATION: Athletes susceptible to RTI have reduced circulating memory T regulatory cells, metabolic dysregulation of the sphingolipid pathway and evidence of upper airway bacterial dysbiosis. FUNDING: This study was funded by the English Institute of Sport (UK).
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spelling pubmed-90627422022-05-04 Evidence of immunometabolic dysregulation and airway dysbiosis in athletes susceptible to respiratory illness Cuthbertson, Leah Turner, Scarlett E.G. Jackson, Anna Ranson, Craig Loosemore, Mike Kelleher, Peter Moffatt, Miriam F. Cookson, William O.C. Hull, James H. Shah, Anand EBioMedicine Articles BACKGROUND: Respiratory tract infection (RTI) is a leading cause of training and in-competition time-loss in athlete health. The immune factors associated with RTI susceptibility remain unclear. In this study, we prospectively characterise host immune factors in elite athletes exhibiting RTI susceptibility. METHODS: Peripheral blood lymphocyte flow cytometry phenotyping and 16S rRNA microbial sequencing of oropharyngeal swabs was performed in a prospective elite athlete cohort study (n = 121). Mass cytometry, peripheral blood mononuclear cell (PBMC) stimulation and plasma metabolic profiling was performed in age-matched highly-susceptible (HS) athletes (≥4RTI in last 18 months) (n = 22) compared to non-susceptible (NS) (≤1RTI in last 18 months) (n = 23) athletes. Findings were compared to non-athletic healthy controls (HC) (n = 19). FINDINGS: Athletes (n = 121) had a reduced peripheral blood memory T regulatory cell compartment compared to HC (p = 0.02 (95%CI:0.1,1.0)) and reduced upper airway bacterial biomass compared to HC (p = 0.032, effect size r = 0.19). HS athletes (n = 22) had lower circulating memory T regulatory cells compared to NS (n = 23) athletes (p = 0.005 (95%CI:-1.5,-0.15)) and HC (p = 0.002 (95%CI:-1.9,-0.3) with PBMC microbial stimulation assays revealing a T-helper 2 skewed immune response compared to HC. Plasma metabolomic profiling showed differences in sphingolipid pathway metabolites (a class of lipids important in infection and inflammation regulation) in HS compared to NS athletes and HC, with sphingomyelin predictive of RTI infection susceptibility (p = 0.005). INTERPRETATION: Athletes susceptible to RTI have reduced circulating memory T regulatory cells, metabolic dysregulation of the sphingolipid pathway and evidence of upper airway bacterial dysbiosis. FUNDING: This study was funded by the English Institute of Sport (UK). Elsevier 2022-04-29 /pmc/articles/PMC9062742/ /pubmed/35490556 http://dx.doi.org/10.1016/j.ebiom.2022.104024 Text en © 2022 The Authors 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 Articles
Cuthbertson, Leah
Turner, Scarlett E.G.
Jackson, Anna
Ranson, Craig
Loosemore, Mike
Kelleher, Peter
Moffatt, Miriam F.
Cookson, William O.C.
Hull, James H.
Shah, Anand
Evidence of immunometabolic dysregulation and airway dysbiosis in athletes susceptible to respiratory illness
title Evidence of immunometabolic dysregulation and airway dysbiosis in athletes susceptible to respiratory illness
title_full Evidence of immunometabolic dysregulation and airway dysbiosis in athletes susceptible to respiratory illness
title_fullStr Evidence of immunometabolic dysregulation and airway dysbiosis in athletes susceptible to respiratory illness
title_full_unstemmed Evidence of immunometabolic dysregulation and airway dysbiosis in athletes susceptible to respiratory illness
title_short Evidence of immunometabolic dysregulation and airway dysbiosis in athletes susceptible to respiratory illness
title_sort evidence of immunometabolic dysregulation and airway dysbiosis in athletes susceptible to respiratory illness
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9062742/
https://www.ncbi.nlm.nih.gov/pubmed/35490556
http://dx.doi.org/10.1016/j.ebiom.2022.104024
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