Understanding the role of mechanical loading and exercise in skeletal muscle (SkM) is paramount for delineating the molecular mechanisms that govern changes in muscle mass. However, it is unknown whether loading of bioengineered SkM in vitro adequately recapitulates the molecular responses observed after resistance exercise (RE) in vivo. To address this, the transcriptional and epigenetic (DNA methylation) responses were compared after mechanical loading in bioengineered SkM in vitro and after RE in vivo. Specifically, genes known to be upregulated/hypomethylated after RE in humans were analyzed. Ninety-three percent of these genes demonstrated similar changes in gene expression post-loading in the bioengineered muscle when compared to acut...
Skeletal muscle is highly plastic and dynamically regulated by the body’s physical demands. This stu...
Mechanical loading of skeletal muscle results in molecular and phenotypic adaptations typified by en...
Skeletal muscle mass is vitally important for the maintenance of health and quality of life into old...
Understanding the role of mechanical loading and exercise in skeletal muscle (SkM) is paramount for ...
DNA methylation is an important epigenetic modification that can regulate gene expression following ...
It is unknown if adult human skeletal muscle has an epigenetic memory of earlier encounters with gro...
Transcriptome wide changes in human skeletal muscle after acute (anabolic) and chronic resistance ex...
SummaryDNA methylation is a covalent biochemical modification controlling chromatin structure and ge...
Recent investigations from our lab have characterised the genome-wide epigenetic (DNA methylation) a...
Although there is an increasing understanding about gene-specific transcriptional activation during ...
<div><p>Regular endurance exercise training induces beneficial functional and health effects in huma...
Exercise training causes epigenetic changes in skeletal muscle, although it is unclear how resistanc...
Skeletal muscle is highly plastic and dynamically regulated by the body’s physical demands. This stu...
Mechanical loading of skeletal muscle results in molecular and phenotypic adaptations typified by en...
Skeletal muscle mass is vitally important for the maintenance of health and quality of life into old...
Understanding the role of mechanical loading and exercise in skeletal muscle (SkM) is paramount for ...
DNA methylation is an important epigenetic modification that can regulate gene expression following ...
It is unknown if adult human skeletal muscle has an epigenetic memory of earlier encounters with gro...
Transcriptome wide changes in human skeletal muscle after acute (anabolic) and chronic resistance ex...
SummaryDNA methylation is a covalent biochemical modification controlling chromatin structure and ge...
Recent investigations from our lab have characterised the genome-wide epigenetic (DNA methylation) a...
Although there is an increasing understanding about gene-specific transcriptional activation during ...
<div><p>Regular endurance exercise training induces beneficial functional and health effects in huma...
Exercise training causes epigenetic changes in skeletal muscle, although it is unclear how resistanc...
Skeletal muscle is highly plastic and dynamically regulated by the body’s physical demands. This stu...
Mechanical loading of skeletal muscle results in molecular and phenotypic adaptations typified by en...
Skeletal muscle mass is vitally important for the maintenance of health and quality of life into old...