Area of research
Genetics · Physiology
Research interest
Research focused on Autophagy and Microvesicles, with related work in Mesenchymal stem cell, Bacteroides, Immune system. Notable publications include 'Mesenchymal stromal cells ameliorate diabetes‐induced muscle atrophy through exosomes by enhancing AMPK/ULK1‐mediated autophagy', 'Enterotype Bacteroides Is Associated with a High Risk in Patients with Diabetes: A Pilot Study', and 'RETRACTED ARTICLE: Mesenchymal stem cell-derived exosomes exert ameliorative effects in type 2 diabetes by improving hepatic glucose and lipid metabolism via enhancing autophagy'.
The impact of multipollutant exposure on hepatic steatosis: a machine learning-based investigation into multipollutant synergistic effects
Developing and Verifying an Effective Diagnostic Model Linked to Immune Infiltration in Stanford Type A Aortic Dissection
Influenza vaccination for heart failure patients: a cost-effectiveness analysis from the perspective of Chinese healthcare system
Mesenchymal stromal cells ameliorate diabetes‐induced muscle atrophy through exosomes by enhancing AMPK/ULK1‐mediated autophagy
Patients with Earlobe Crease May Associate with Lower Concentration of the Age-Suppressing Hormone Klotho
Enterotype <i>Bacteroides</i> Is Associated with a High Risk in Patients with Diabetes: A Pilot Study
RETRACTED ARTICLE: Mesenchymal stem cell-derived exosomes exert ameliorative effects in type 2 diabetes by improving hepatic glucose and lipid metabolism via enhancing autophagy