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The aim of this study was to define and compare the molecular blueprints of chronic alcohol use in the liver and skeletal muscle using an established pre-clinical mouse model.

2025-12-11 | MTBLS12616 | MetaboLights
Activation of the sympathetic nervous system causes pronounced metabolic changes that are mediated by multiple adrenergic receptor subtypes. Systemic treatment with β2-adrenergic receptor agonists results in multiple beneficial metabolic effects, including improved glucose homeostasis. To...
2022-08-26 | MTBLS467 | MetaboLights
We previously reported that skeletal muscle adaptation to regular exercise requires a healthy gut microbiome, contributing to growing evidence that some exercise benefits are mediated by microbiome-derived metabolites. Here, to identify such exercise-associated microbial metabolites, we transfer cec...
2026-05-27 | MTBLS14386 | MetaboLights

Adjustments in muscle mass and metabolic demand are crucial for regulating whole-body metabolism, locomotion, eating, and respiration. Therefore, skeletal muscle is a central influencer of several human diseases. Muscle dysfunction correlates with the onset and progression of several metabolic di...

2025-09-15 | MTBLS12833 | MetaboLights

Exploring the Effects of Different Exercise Modalities on Skeletal Muscle Function in High-Fat Diet-Induced Obese Mice Based on Gut Microbiota and Metabolomics

2026-02-09 | MTBLS13878 | MetaboLights
Skeletal muscle atrophy driven by glucocorticoid excess is a clinically relevant contributor to sarcopenia, yet safe and biologically integrated interventions remain limited. Here we report that extracellular exosome-like nanovesicles derived from Hippophae rhamnoides fruits (HR-ELNs) protect agains...
2026-07-17 | MTBLS15070 | MetaboLights
In this study, we investigated signaling pathways in Skeletal muscle precursors that are altered with aging and age-related deficits in muscle regenerative potential. We performed fluorescence activated cell sorting (FACS) to obtain highly purified skeletal muscle satellite cells from young, middle-...
ORGANISM(S): Mus musculus 
A commercially available gene array (SABiosciences array PAMM-029ZD-12) was used to assay gene expression in skeletal muscle of SMA mice and control littermates. The Taiwanese severe SMA mouse model was used (Hsieh-Li et al. 2000). The array included 84 genes associated with DNA damage detection, DN...
ORGANISM(S): Mus musculus 

Cells use glycolytic intermediates for anabolism e.g., via the serine synthesis and pentose phosphate pathways. However, we still understand poorly how these metabolic pathways contribute to skeletal muscle cell biomass generation. The first aim of this study was therefore to identify enzymes tha...

2025-03-21 | MTBLS8854 | MetaboLights
For additional details see Bongers et al, Spermine Oxidase Maintains Basal Skeletal Muscle Gene Expression and Fiber Size, and Is Strongly Repressed by Conditions that Cause Skeletal Muscle Atrophy . Am J Physiol Endocrinol Metab. 2014 [under review] Bilateral tibialis anterior muscles of C57BL/6 m...
ORGANISM(S): Mus musculus 
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