Literature DB >> 27035221

Genome-Wide Changes in Peripheral Gene Expression following Sports-Related Concussion.

Kian Merchant-Borna1, Hyunhwa Lee2, Dan Wang3, Viktoria Bogner4, Martijn van Griensven5, Jessica Gill3, Jeffrey J Bazarian1.   

Abstract

We conducted a prospective study to identify genome-wide changes in peripheral gene expression before and after sports-related concussion (SRC). A total of 253 collegiate contact athletes underwent collection of peripheral blood mononuclear cells (PBMCs) before the sport season (baseline). Sixteen athletes who subsequently developed an SRC, along with 16 non-concussed teammate controls, underwent repeat collection of PBMCs within 6 h of injury (acutely). Concussed athletes underwent additional sample collection at 7 days post-injury (sub-acutely). Messenger RNA (mRNA) expression at baseline was compared with mRNA expression acutely and sub-acutely post-SRC. To estimate the contribution of physical exertion to gene changes, baseline samples from athletes who subsequently developed an SRC were compared with samples from uninjured teammate controls collected at the acute time-point. Clinical outcome was determined by changes in post-concussive symptoms, postural stability, and cognition from baseline to the sub-acute time-point. SRC athletes had significant changes in mRNA expression at both the acute and sub-acute time-points. There were no significant expression changes among controls. Acute transcriptional changes centered on interleukins 6 and 12, toll-like receptor 4, and NF-κB. Sub-acute gene expression changes centered on NF-κB, follicle stimulating hormone, chorionic gonadotropin, and protein kinase catalytic subunit. All SRC athletes were clinically back to baseline by Day 7. In conclusion, acute post-SRC transcriptional changes reflect regulation of the innate immune response and the transition to adaptive immunity. By 7 days, transcriptional activity is centered on regulating the hypothalamic-pituitary-adrenal axis. Future efforts to compare expressional changes in fully recovered athletes with those who do not recover from SRC could suggest putative targets for therapeutic intervention.

Entities:  

Keywords:  IPA; PBMC; gene network; longitudinal study; mTBI; mild traumatic brain injury; sports-related concussion

Mesh:

Year:  2016        PMID: 27035221      PMCID: PMC5011627          DOI: 10.1089/neu.2015.4191

Source DB:  PubMed          Journal:  J Neurotrauma        ISSN: 0897-7151            Impact factor:   5.269


  54 in total

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Authors:  L J McIntosh; R M Sapolsky
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7.  Boxing as a sport activity associated with isolated GH deficiency.

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9.  Analysis of functional pathways altered after mild traumatic brain injury.

Authors:  John B Redell; Anthony N Moore; Raymond J Grill; Daniel Johnson; Jing Zhao; Yin Liu; Pramod K Dash
Journal:  J Neurotrauma       Date:  2013-05-07       Impact factor: 5.269

10.  Gene expression profile changes are commonly modulated across models and species after traumatic brain injury.

Authors:  Joanne E Natale; Farid Ahmed; Ibolja Cernak; Bogdan Stoica; Alan I Faden
Journal:  J Neurotrauma       Date:  2003-10       Impact factor: 5.269

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2.  Acute elevation of serum inflammatory markers predicts symptom recovery after concussion.

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3.  A Prospective Study of Acute Blood-Based Biomarkers for Sport-Related Concussion.

Authors:  Timothy B Meier; Daniel L Huber; Luisa Bohorquez-Montoya; Morgan E Nitta; Jonathan Savitz; T Kent Teague; Jeffrey J Bazarian; Ronald L Hayes; Lindsay D Nelson; Michael A McCrea
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4.  An investigation of plasma interleukin-6 in sport-related concussion.

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5.  The relationship between symptom burden and systemic inflammation differs between male and female athletes following concussion.

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6.  Peripheral blood neuroendocrine hormones are associated with clinical indices of sport-related concussion.

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7.  Assessing the accuracy of blood RNA profiles to identify patients with post-concussion syndrome: A pilot study in a military patient population.

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Review 8.  The Prospective Study of Epigenetic Regulatory Profiles in Sport and Exercise Monitored Through Chromosome Conformation Signatures.

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Review 9.  Unifying Pathophysiological Explanations for Sports-Related Concussion and Concussion Protocol Management: Literature Review.

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10.  Evidence of a distinct peripheral inflammatory profile in sport-related concussion.

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  10 in total

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