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Lipidomic profiling was performed to compare control, SCD1-knockout, and SCD2-knockout C2C12 cells under standard culture conditions. Cell pellets were collected from routinely cultured cells, rapidly frozen, and stored at −80°C prior to lipid extraction and LC–MS/MS analysis. The study aimed to ...

2026-06-23 | MTBLS14693 | MetaboLights
Resveratrol (RESV) is a plant polyphenol, which is thought to have beneficial metabolic effects in laboratory animals as well as in humans. Following oral administration, RESV is immediately catabolized, resulting in low bioavailability. This study compared RESV metabolites and their tissue distribu...
This study investigated the lipidomic remodeling of Scd1- and Scd2-deficient C2C12 cells during brown adipogenic differentiation. Scd1 or Scd2 knockout cells and corresponding control cells were induced to undergo brown adipocyte-like differentiation for 96 h. To evaluate whether exogenous monounsat...
2026-06-23 | MTBLS14692 | MetaboLights
We newly identified skeletal muscle differentiation-associated miRNAs by comparing miRNA expression profile between C2C12 cell and Wnt4-overexpressing C2C12 cell. miR-487b, miR-3963 and miR-6412 are significantly down-regulated in differentiating C2C12 cells, and transfection of their mimics result...
ORGANISM(S): Mus musculus 
This study analyses the gene expression profile of pre-osteoblastic C2C12 mice cells during osteodifferentiation in control and induced by rhBMP2 and rhBMP7 using DNA microarrays. Genes which were already known to be activated by BMP2, to be also activated by rhBMP7, indicating that BMP7 induces the...
ORGANISM(S): Mus musculus 
The TEAD (1-4) transcription factors comprise the conserved TEA/ATTS DNA binding domain recognising the MCAT element in the promoters of muscle-specific genes. Despite extensive genetic analysis, the function of TEAD factors in muscle differentiation has proved elusive due to redundancy amongst the ...
ORGANISM(S): Mus musculus 
GDF8 (myostatin) is a unique cytokine strongly affecting the skeletal muscle phenotype in human and animals. The aim of the present study was to elucidate the molecular mechanism of myostatin influence on the differentiation of mouse C2C12 myoblasts, using the global-transcriptome analysis with the ...
ORGANISM(S): Mus musculus 
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