Nutrients · 2020 · 24 citations · 43 references
NutritionAcid-hydrolyzed Silk PeptideMetabolic DisorderGastrointestinal Peptide HormoneObesityMetabolic SyndromeBody CompositionAmp-activated Protein KinaseMetabolismCell SignalingHealth SciencesBiochemistryMetabolomicsHigh-fat Diet-induced ObesityPhysiologyPromotes Adipose BrowningMetabolic RegulationSystems BiologyMedicineLipid Synthesis
Obesity is associated with metabolic syndrome and other chronic diseases, and is caused when the energy intake is greater than the energy expenditure. We aimed to determine the mechanism whereby acid-hydrolyzed silk peptide (SP) prevents high-fat diet-induced obesity, and whether it induces browning and fatty acid oxidation (FAO) in white adipose tissue (WAT), using in vivo and ex vivo approaches. We determined the effects of dietary SP in high-fat diet-fed obese mice. The expression of adipose tissue-specific genes was quantified by western blotting, qRT-PCR, and immunofluorescence analysis. We also investigated whether SP directly induces browning in primarily subcutaneous WAT-derived adipocytes. Our findings demonstrate that SP has a browning effect in WAT by upregulating AMP-activated Protein Kinase (AMPK) phosphorylation and uncoupling protein 1 (UCP1) expression. SP also suppresses adipogenesis and promotes FAO, implying that it may have potential as an anti-obesity drug.
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Materials fabrication from Bombyx mori silk fibroin
Danielle N. Rockwood, Rucsanda C. Preda, Tuna Yücel et al. · Nature Protocols · 2011 · 2.9K citations · Full text
Charu Vepari, David L. Kaplan · Progress in Polymer Science · 2007 · 2.5K citations · Full text
PRDM16 controls a brown fat/skeletal muscle switch
Patrick Seale, Bryan C. Bjork, Wenli Yang et al. · Nature · 2008 · 2.3K citations · Full text
Muscle Function, Signal Transduction, Molecular Physiology +3