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Skeletal muscles, accounting for 40% of mammalian body mass, exhibit pronounced heterogeneity due to distinct anatomical locations. Animal husbandry excessively focuses on longissimus dorsi (LDM) development, while neglecting other muscles. In this study, we integrated Bulk RNA Sequencing (bulk R...

2025-09-09 | MTBLS12963 | 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
The effects of different amino acid (AA) supplementations of milk protein-based milk replacers in pre-ruminant calves from 3 days to 7 weeks of age were studied. Animals were divided into 4 groups: Ctrl) Control group fed with milk protein-based milk replacer without supplementation; GP) supplementa...
2018-10-08 | MTBLS720 | MetaboLights

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
The goal of the project is to understand the mitochondrial proteome profiles related to T2DM. We performed comprehensive proteome profiling of mitochondria isolated from skeletal muscles in nine T2DM patients and nine control subjects with normal glucose tolerance (NGT).
ORGANISM(S): Homo Sapiens (ncbitaxon:9606) 
2019-03-13 | MSV000083560 | MassIVE

In pre-weaning calves, both leucine and threonine play important roles in growth and muscle metabolism. In this study, metabolomics, proteomics and clinical chemistry were used to assess the effects of leucine and threonine supplementation added to milk replacer on 14 newborn Holstein male calves...

2020-02-20 | MTBLS1045 | MetaboLights
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