Area of research
Physiology · Molecular Biology
Research interest
Research interests include PI3K/AKT/mTOR pathway, Skeletal muscle, MyoD, Myocyte, Biology, and Adipose tissue.
Enhancement of gut barrier integrity by a <i>Bacillus subtilis</i> secreted metabolite through the GADD45A‐Wnt/β‐catenin pathway
Dietary novel alkaline protease from Bacillus licheniformis improves broiler meat nutritional value and modulates intestinal microbiota and metabolites
Effects of dietary multienzymes on the growth performance, digestive enzyme activity, nutrient digestibility, excreta noxious gas emission, and nutrient transporter gene expression in white feather broilers
Lipo-nutritional quality of pork: The lipid composition, regulation, and molecular mechanisms of fatty acid deposition
Toxicity, biodegradation, and nutritional intervention mechanism of zearalenone
GADD45A regulates subcutaneous fat deposition and lipid metabolism by interacting with Stat1
Cellular and Transcriptional Dynamics during Brown Adipose Tissue Regeneration under Acute Injury
Bidirectional roles of skeletal muscle fibro-adipogenic progenitors in homeostasis and disease
CLA improves the lipo-nutritional quality of pork and regulates the gut microbiota in Heigai pigs
Growth arrest and DNA damage‐inducible alpha regulates muscle repair and fat infiltration through ATP synthase F1 subunit alpha
CRTC3 Regulates the Lipid Metabolism and Adipogenic Differentiation of Porcine Intramuscular and Subcutaneous Adipocytes by Activating the Calcium Pathway
Low Dietary n-6/n-3 PUFA Ratio Regulates Meat Quality, Reduces Triglyceride Content, and Improves Fatty Acid Composition of Meat in Heigai Pigs
GADD45α drives brown adipose tissue formation through upregulating PPARγ in mice
The regulatory role of dietary factors in skeletal muscle development, regeneration and function
The regulatory role of Myomaker and Myomixer–Myomerger–Minion in muscle development and regeneration
Resveratrol regulates skeletal muscle fibers switching through the AdipoR1-AMPK-PGC-1α pathway
Elucidating the Regulatory Role of Melatonin in Brown, White, and Beige Adipocytes
Cold exposure induces nuclear translocation of CRTC3 in brown adipose tissue
Roles of phosphatase and tensin homolog in skeletal muscle
Regulation role of CRTC3 in skeletal muscle and adipose tissue
Adipocyte-specific deletion of mTOR inhibits adipose tissue development and causes insulin resistance in mice
Roles of Notch1 Signaling in Regulating Satellite Cell Fates Choices and Postnatal Skeletal Myogenesis
mTOR is necessary for proper satellite cell activity and skeletal muscle regeneration