Area of research
Molecular Biology · Physiology
Research interest
Research focused on Muscle atrophy and Atrophy, with related work in Skeletal muscle, Oxidative stress, Sarcopenia. Notable publications include 'Oxidative stress: Roles in skeletal muscle atrophy', 'Duchenne muscular dystrophy: pathogenesis and promising therapies', and 'AMPK/SIRT1/PGC‐1α Signaling Pathway: Molecular Mechanisms and Targeted Strategies From Energy Homeostasis Regulation to Disease Therapy'.
AMPK/SIRT1/PGC‐1α Signaling Pathway: Molecular Mechanisms and Targeted Strategies From Energy Homeostasis Regulation to Disease Therapy
Endoplasmic reticulum stress and unfolded protein response: Roles in skeletal muscle atrophy
Macrophage polarization: molecular mechanisms, disease implications, and targeted therapeutic strategies
Advancements in skeletal muscle tissue engineering: strategies for repair and regeneration of skeletal muscle beyond self-repair
Myokine-mediated muscle-organ interactions: Molecular mechanisms and clinical significance
hBMSC-EVs alleviate weightlessness-induced skeletal muscle atrophy by suppressing oxidative stress and inflammation
Dual role of macrophages in skeletal muscle atrophy: Mechanisms and therapeutic strategies
RIPK3 deficiency ameliorates diabetic sarcopenia through proteostasis regulation by suppressing inflammatory signaling and cellular stress pathways
Molecular mechanisms and multi-target therapeutic strategies of diabetic nephropathy: from pathogenesis to precision interventions
Temporal dynamics and functional implications of MiRNAs in denervation-induced skeletal muscle atrophy
Diabetes mellitus-driven pulmonary injury: multidimensional mechanisms linking metabolic dysregulation to gut-lung axis and promising therapies
The role of cell death in the physiological and pathological processes of skeletal muscle
Tectorigenin alleviates diabetic lung injury by restoring gut microbiota and metabolic homeostasis
Celecoxib ameliorates diabetic sarcopenia by inhibiting inflammation, stress response, mitochondrial dysfunction, and subsequent activation of the protein degradation systems
Celecoxib attenuates hindlimb unloading-induced muscle atrophy via suppressing inflammation, oxidative stress and ER stress by inhibiting STAT3
Advances in biomaterial-based tissue engineering for peripheral nerve injury repair
Application of metal-organic frameworks-based functional composite scaffolds in tissue engineering
Nutritional Strategies for Muscle Atrophy: Current Evidence and Underlying Mechanisms
Astragaloside IV Improves Muscle Atrophy by Modulating the Activity of UPS and ALP via Suppressing Oxidative Stress and Inflammation in Denervated Mice
Congenital myopathies: pathophysiological mechanisms and promising therapies
Oxidative stress: Roles in skeletal muscle atrophy
Duchenne muscular dystrophy: pathogenesis and promising therapies
Myasthenia gravis: Molecular mechanisms and promising therapeutic strategies
Altered m6A RNA methylation governs denervation-induced muscle atrophy by regulating ubiquitin proteasome pathway
Single-Cell RNA Sequencing Analysis of Microglia Dissected the Energy Metabolism and Revealed Potential Biomarkers in Amyotrophic Lateral Sclerosis
Tectorigenin targets PKACα to promote GLUT4 expression in skeletal muscle and improve insulin resistance <i>in vitro</i> and <i>in vivo</i>