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A Pilot Study of Whole-Blood Transcriptomic Analysis to Identify Genes Associated with Repetitive Low-Level Blast Exposure in Career Breachers

Repetitive low-level blast exposure is one of the major occupational health concerns among US military service members and law enforcement. This study seeks to identify gene expression using microRNA and RNA sequencing in whole-blood samples from experienced breachers and unexposed controls. We perf...

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Autores principales: Vorn, Rany, Edwards, Katie A., Hentig, James, Yun, Sijung, Kim, Hyung-Suk, Lai, Chen, Devoto, Christina, Yarnell, Angela M., Polejaeva, Elena, Dell, Kristine C., LoPresti, Matthew L., Walker, Peter, Carr, Walter, Stone, James R., Ahlers, Stephen T., Gill, Jessica M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8945695/
https://www.ncbi.nlm.nih.gov/pubmed/35327492
http://dx.doi.org/10.3390/biomedicines10030690
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author Vorn, Rany
Edwards, Katie A.
Hentig, James
Yun, Sijung
Kim, Hyung-Suk
Lai, Chen
Devoto, Christina
Yarnell, Angela M.
Polejaeva, Elena
Dell, Kristine C.
LoPresti, Matthew L.
Walker, Peter
Carr, Walter
Stone, James R.
Ahlers, Stephen T.
Gill, Jessica M.
author_facet Vorn, Rany
Edwards, Katie A.
Hentig, James
Yun, Sijung
Kim, Hyung-Suk
Lai, Chen
Devoto, Christina
Yarnell, Angela M.
Polejaeva, Elena
Dell, Kristine C.
LoPresti, Matthew L.
Walker, Peter
Carr, Walter
Stone, James R.
Ahlers, Stephen T.
Gill, Jessica M.
author_sort Vorn, Rany
collection PubMed
description Repetitive low-level blast exposure is one of the major occupational health concerns among US military service members and law enforcement. This study seeks to identify gene expression using microRNA and RNA sequencing in whole-blood samples from experienced breachers and unexposed controls. We performed experimental RNA sequencing using Illumina’s HiSeq 2500 Sequencing System, and microRNA analysis using NanoString Technology nCounter miRNA expression panel in whole-blood total RNA samples from 15 experienced breachers and 14 age-, sex-, and race-matched unexposed controls. We identified 10 significantly dysregulated genes between experienced breachers and unexposed controls, with FDR corrected <0.05: One upregulated gene, LINC00996 (long intergenic non-protein coding RNA 996); and nine downregulated genes, IGLV3-16 (immunoglobulin lambda variable 3-16), CD200 (CD200 molecule), LILRB5 (leukocyte immunoglobulin-like receptor B5), ZNF667-AS1 (ZNF667 antisense RNA 1), LMOD1 (leiomodin 1), CNTNAP2 (contactin-associated protein 2), EVPL (envoplakin), DPF3 (double PHD fingers 3), and IGHV4-34 (immunoglobulin heavy variable 4-34). The dysregulated gene expressions reported here have been associated with chronic inflammation and immune response, suggesting that these pathways may relate to the risk of lasting neurological symptoms following high exposures to blast over a career.
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spelling pubmed-89456952022-03-25 A Pilot Study of Whole-Blood Transcriptomic Analysis to Identify Genes Associated with Repetitive Low-Level Blast Exposure in Career Breachers Vorn, Rany Edwards, Katie A. Hentig, James Yun, Sijung Kim, Hyung-Suk Lai, Chen Devoto, Christina Yarnell, Angela M. Polejaeva, Elena Dell, Kristine C. LoPresti, Matthew L. Walker, Peter Carr, Walter Stone, James R. Ahlers, Stephen T. Gill, Jessica M. Biomedicines Article Repetitive low-level blast exposure is one of the major occupational health concerns among US military service members and law enforcement. This study seeks to identify gene expression using microRNA and RNA sequencing in whole-blood samples from experienced breachers and unexposed controls. We performed experimental RNA sequencing using Illumina’s HiSeq 2500 Sequencing System, and microRNA analysis using NanoString Technology nCounter miRNA expression panel in whole-blood total RNA samples from 15 experienced breachers and 14 age-, sex-, and race-matched unexposed controls. We identified 10 significantly dysregulated genes between experienced breachers and unexposed controls, with FDR corrected <0.05: One upregulated gene, LINC00996 (long intergenic non-protein coding RNA 996); and nine downregulated genes, IGLV3-16 (immunoglobulin lambda variable 3-16), CD200 (CD200 molecule), LILRB5 (leukocyte immunoglobulin-like receptor B5), ZNF667-AS1 (ZNF667 antisense RNA 1), LMOD1 (leiomodin 1), CNTNAP2 (contactin-associated protein 2), EVPL (envoplakin), DPF3 (double PHD fingers 3), and IGHV4-34 (immunoglobulin heavy variable 4-34). The dysregulated gene expressions reported here have been associated with chronic inflammation and immune response, suggesting that these pathways may relate to the risk of lasting neurological symptoms following high exposures to blast over a career. MDPI 2022-03-17 /pmc/articles/PMC8945695/ /pubmed/35327492 http://dx.doi.org/10.3390/biomedicines10030690 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
Vorn, Rany
Edwards, Katie A.
Hentig, James
Yun, Sijung
Kim, Hyung-Suk
Lai, Chen
Devoto, Christina
Yarnell, Angela M.
Polejaeva, Elena
Dell, Kristine C.
LoPresti, Matthew L.
Walker, Peter
Carr, Walter
Stone, James R.
Ahlers, Stephen T.
Gill, Jessica M.
A Pilot Study of Whole-Blood Transcriptomic Analysis to Identify Genes Associated with Repetitive Low-Level Blast Exposure in Career Breachers
title A Pilot Study of Whole-Blood Transcriptomic Analysis to Identify Genes Associated with Repetitive Low-Level Blast Exposure in Career Breachers
title_full A Pilot Study of Whole-Blood Transcriptomic Analysis to Identify Genes Associated with Repetitive Low-Level Blast Exposure in Career Breachers
title_fullStr A Pilot Study of Whole-Blood Transcriptomic Analysis to Identify Genes Associated with Repetitive Low-Level Blast Exposure in Career Breachers
title_full_unstemmed A Pilot Study of Whole-Blood Transcriptomic Analysis to Identify Genes Associated with Repetitive Low-Level Blast Exposure in Career Breachers
title_short A Pilot Study of Whole-Blood Transcriptomic Analysis to Identify Genes Associated with Repetitive Low-Level Blast Exposure in Career Breachers
title_sort pilot study of whole-blood transcriptomic analysis to identify genes associated with repetitive low-level blast exposure in career breachers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8945695/
https://www.ncbi.nlm.nih.gov/pubmed/35327492
http://dx.doi.org/10.3390/biomedicines10030690
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