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Longer leukocyte telomeres are associated with ultra-endurance exercise independent of cardiovascular risk factors
- Denham, Joshua, Nelson, Christopher, O'Brien, Brendan, Nankervis, Scott, Denniff, Matthew, Harvey, Jack, Marques, Francine, Codd, Veryan, Zukowska-Szczechowska, Ewa, Samani, Nilesh, Tomaszewski, Maciej, Charchar, Fadi
121 Telomere attrition is attenuated in ultra-marathon runners
- Denham, Joshua, Nankervis, Scott, Debiec, Radek, Harvey, Jack, Pascoe, Deborah, Marques, Francine, O’Brien, Brendan, Zukowska-Szczechowska, Ewa, Tomaszewski, Maciej, Charchar, Fadi
Exercise : Putting action into our epigenome
- Denham, Joshua, Marques, Francine, O'Brien, Brendan, Charchar, Fadi
Changes in the leukocyte methylome and its effect on cardiovascular-related genes after exercise
- Denham, Joshua, O'Brien, Brendan, Marques, Francine, Charchar, Fadi
Genome-wide sperm DNA methylation changes after 3 months of exercise training in humans
- Denham, Joshua, O'Brien, Brendan, Harvey, Jack, Charchar, Fadi
Increased expression of telomere-regulating genes in endurance athletes with long leukocyte telomeres
- Denham, Joshua, O'Brien, Brendan, Prestes, Priscilla, Brown, Nicholas, Charchar, Fadi
Aortic augmentation index in endurance athletes : A role for cardiorespiratory fitness
- Denham, Joshua, Brown, Nicholas, Tomaszewski, Maciej, Williams, Bryan, O’Brien, Brendan, Charchar, Fadi
Telomere length maintenance and cardio-metabolic disease prevention through exercise training
- Denham, Joshua, O'Brien, Brendan, Charchar, Fadi
Epigenetic changes in leukocytes after 8 weeks of resistance exercise training
- Denham, Joshua, Marques, Francine, Bruns, Emma, O'Brien, Brendan, Charchar, Fadi
Leukocyte telomere length variation due to DNA extraction method
- Denham, Joshua, Marques, Francine, Charchar, Fadi
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