N Eynon
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Explore the profile of N Eynon including associated specialties, affiliations and a list of published articles.
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20
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410
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Recent Articles
1.
Hiam D, Landen S, Jacques M, Voisin S, Alvarez-Romero J, Byrnes E, et al.
Bone
. 2020 Dec;
144:115818.
PMID: 33338665
Introduction: Acute exercise increases osteocalcin (OC), a marker of bone turnover, and in particular the undercarboxylated form (ucOC). Males and females differ in baseline levels of total OC and it...
2.
Turner D, Gorski P, Maasar M, Seaborne R, Baumert P, Brown A, et al.
Sci Rep
. 2020 Sep;
10(1):15360.
PMID: 32958812
Skeletal muscle tissue demonstrates global hypermethylation with age. However, methylome changes across the time-course of differentiation in aged human muscle derived cells, and larger coverage arrays in aged muscle tissue...
3.
Harvey N, Voisin S, Lea R, Yan X, Benton M, Papadimitriou I, et al.
Sci Rep
. 2020 Jul;
10(1):11089.
PMID: 32632177
Mitochondria supply intracellular energy requirements during exercise. Specific mitochondrial haplogroups and mitochondrial genetic variants have been associated with athletic performance, and exercise responses. However, these associations were discovered using underpowered,...
4.
Harvey N, Voisin S, Dunn P, Sutherland H, Yan X, Jacques M, et al.
Mol Genet Genomics
. 2020 Jan;
295(2):515-523.
PMID: 31897802
Adaptation to exercise training is a complex trait that may be influenced by genetic variants. We identified 36 single nucleotide polymorphisms (SNPs) that had been previously associated with endurance or...
5.
Papadimitriou I, Eynon N, Yan X, Munson F, Jacques M, Kuang J, et al.
Sci Rep
. 2019 Sep;
9(1):12688.
PMID: 31481717
Research in α-actinin-3 knockout mice suggests a novel role for α-actinin-3 as a mediator of cell signalling. We took advantage of naturally-occurring human "knockouts" (lacking α-actinin-3 protein) to investigate the...
6.
Zarebska A, Jastrzebski Z, Kaczmarczyk M, Ficek K, Maciejewska-Karlowska A, Sawczuk M, et al.
Biol Sport
. 2014 Dec;
31(4):261-6.
PMID: 25435667
The GSTP1 c.313A>G polymorphism is a candidate to explain some of the individual differences in cardiorespiratory fitness phenotypes' responses to aerobic exercise training. We aim to explore the association between...
7.
Voisin S, Eynon N, Yan X, Bishop D
Acta Physiol (Oxf)
. 2014 Oct;
213(1):39-59.
PMID: 25345837
The response to exercise training (trainability) has been shown to have a strong heritable component. There is growing evidence suggesting that traits such as trainability do not only depend on...
8.
He Z, Hu Y, Li Y, Gong L, Cieszczyk P, Maciejewska-Karlowska A, et al.
Scand J Med Sci Sports
. 2014 Aug;
25(2):184-95.
PMID: 25170593
This study aims to examine the association between proliferator-activated receptor γ (PGC)-gene family-related single nucleotide polymorphisms (SNPs) and elite endurance runners' status in a Chinese cohort, and to gain insights...
9.
Maciejewska-Karlowska A, Hanson E, Sawczuk M, Cieszczyk P, Eynon N
Scand J Med Sci Sports
. 2013 Oct;
24(3):e148-55.
PMID: 24118591
Peroxisome proliferator-activated receptor delta (PPARδ; encoded by the PPARD gene) plays a role in energy metabolism and mitochondrial function. We have investigated the distribution of PPARD rs2267668, rs2016520 and rs1053049...
10.
Alves A, Goldhammer E, Ribeiro F, Eynon N, Ben-Zaken Cohen S, Duarte J, et al.
Int J Sports Med
. 2012 Oct;
34(3):274-80.
PMID: 23065660
β1-adrenergic receptors (ADRB1) and Gαs proteins (GNAS) play important roles in the regulation of cardiac function. The present study sought to investigate whether ADRB1 Arg389Gly (rs1801253), GNAS -1211 G/A (rs6123837)...