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Integrated Multiomics Analysis of Salivary Exosomes to Identify Biomarkers Associated with Changes in Mood States and Fatigue

Fatigue and other deleterious mood alterations resulting from prolonged efforts such as a long work shift can lead to a decrease in vigilance and cognitive performance, increasing the likelihood of errors during the execution of attention-demanding activities such as piloting an aircraft or performi...

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Autores principales: Cohn, Whitaker, Zhu, Chunni, Campagna, Jesus, Bilousova, Tina, Spilman, Patricia, Teter, Bruce, Li, Feng, Guo, Rong, Elashoff, David, Cole, Greg M., Avidan, Alon, Faull, Kym Francis, Whitelegge, Julian, Wong, David T. W., John, Varghese
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9105576/
https://www.ncbi.nlm.nih.gov/pubmed/35563647
http://dx.doi.org/10.3390/ijms23095257
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author Cohn, Whitaker
Zhu, Chunni
Campagna, Jesus
Bilousova, Tina
Spilman, Patricia
Teter, Bruce
Li, Feng
Guo, Rong
Elashoff, David
Cole, Greg M.
Avidan, Alon
Faull, Kym Francis
Whitelegge, Julian
Wong, David T. W.
John, Varghese
author_facet Cohn, Whitaker
Zhu, Chunni
Campagna, Jesus
Bilousova, Tina
Spilman, Patricia
Teter, Bruce
Li, Feng
Guo, Rong
Elashoff, David
Cole, Greg M.
Avidan, Alon
Faull, Kym Francis
Whitelegge, Julian
Wong, David T. W.
John, Varghese
author_sort Cohn, Whitaker
collection PubMed
description Fatigue and other deleterious mood alterations resulting from prolonged efforts such as a long work shift can lead to a decrease in vigilance and cognitive performance, increasing the likelihood of errors during the execution of attention-demanding activities such as piloting an aircraft or performing medical procedures. Thus, a method to rapidly and objectively assess the risk for such cognitive fatigue would be of value. The objective of the study was the identification in saliva-borne exosomes of molecular signals associated with changes in mood and fatigue that may increase the risk of reduced cognitive performance. Using integrated multiomics analysis of exosomes from the saliva of medical residents before and after a 12 h work shift, we observed changes in the abundances of several proteins and miRNAs that were associated with various mood states, and specifically fatigue, as determined by a Profile of Mood States questionnaire. The findings herein point to a promising protein biomarker, phosphoglycerate kinase 1 (PGK1), that was associated with fatigue and displayed changes in abundance in saliva, and we suggest a possible biological mechanism whereby the expression of the PGK1 gene is regulated by miR3185 in response to fatigue. Overall, these data suggest that multiomics analysis of salivary exosomes has merit for identifying novel biomarkers associated with changes in mood states and fatigue. The promising biomarker protein presents an opportunity for the development of a rapid saliva-based test for the assessment of these changes.
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spelling pubmed-91055762022-05-14 Integrated Multiomics Analysis of Salivary Exosomes to Identify Biomarkers Associated with Changes in Mood States and Fatigue Cohn, Whitaker Zhu, Chunni Campagna, Jesus Bilousova, Tina Spilman, Patricia Teter, Bruce Li, Feng Guo, Rong Elashoff, David Cole, Greg M. Avidan, Alon Faull, Kym Francis Whitelegge, Julian Wong, David T. W. John, Varghese Int J Mol Sci Article Fatigue and other deleterious mood alterations resulting from prolonged efforts such as a long work shift can lead to a decrease in vigilance and cognitive performance, increasing the likelihood of errors during the execution of attention-demanding activities such as piloting an aircraft or performing medical procedures. Thus, a method to rapidly and objectively assess the risk for such cognitive fatigue would be of value. The objective of the study was the identification in saliva-borne exosomes of molecular signals associated with changes in mood and fatigue that may increase the risk of reduced cognitive performance. Using integrated multiomics analysis of exosomes from the saliva of medical residents before and after a 12 h work shift, we observed changes in the abundances of several proteins and miRNAs that were associated with various mood states, and specifically fatigue, as determined by a Profile of Mood States questionnaire. The findings herein point to a promising protein biomarker, phosphoglycerate kinase 1 (PGK1), that was associated with fatigue and displayed changes in abundance in saliva, and we suggest a possible biological mechanism whereby the expression of the PGK1 gene is regulated by miR3185 in response to fatigue. Overall, these data suggest that multiomics analysis of salivary exosomes has merit for identifying novel biomarkers associated with changes in mood states and fatigue. The promising biomarker protein presents an opportunity for the development of a rapid saliva-based test for the assessment of these changes. MDPI 2022-05-09 /pmc/articles/PMC9105576/ /pubmed/35563647 http://dx.doi.org/10.3390/ijms23095257 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cohn, Whitaker
Zhu, Chunni
Campagna, Jesus
Bilousova, Tina
Spilman, Patricia
Teter, Bruce
Li, Feng
Guo, Rong
Elashoff, David
Cole, Greg M.
Avidan, Alon
Faull, Kym Francis
Whitelegge, Julian
Wong, David T. W.
John, Varghese
Integrated Multiomics Analysis of Salivary Exosomes to Identify Biomarkers Associated with Changes in Mood States and Fatigue
title Integrated Multiomics Analysis of Salivary Exosomes to Identify Biomarkers Associated with Changes in Mood States and Fatigue
title_full Integrated Multiomics Analysis of Salivary Exosomes to Identify Biomarkers Associated with Changes in Mood States and Fatigue
title_fullStr Integrated Multiomics Analysis of Salivary Exosomes to Identify Biomarkers Associated with Changes in Mood States and Fatigue
title_full_unstemmed Integrated Multiomics Analysis of Salivary Exosomes to Identify Biomarkers Associated with Changes in Mood States and Fatigue
title_short Integrated Multiomics Analysis of Salivary Exosomes to Identify Biomarkers Associated with Changes in Mood States and Fatigue
title_sort integrated multiomics analysis of salivary exosomes to identify biomarkers associated with changes in mood states and fatigue
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9105576/
https://www.ncbi.nlm.nih.gov/pubmed/35563647
http://dx.doi.org/10.3390/ijms23095257
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