Area of research
Genetics · Surgery
Research interest
Research interests include Pancreatic function and diabetes, Mesenchymal stem cell research, Extracellular vesicles in disease, and MicroRNA in disease regulation.
Author Correction: Autophagy-deficient macrophages exacerbate cisplatin-induced mitochondrial dysfunction and kidney injury via miR-195a-5p-SIRT3 axis.
Harnessing tissue-derived mitochondria-rich extracellular vesicles (Ti-mitoEVs) to boost mitochondrial biogenesis for regenerative medicine.
Reprogramming of lipids and amino acids metabolism is an early event in myocardium of type 1 diabetic rhesus monkeys
Autophagy-deficient macrophages exacerbate cisplatin-induced mitochondrial dysfunction and kidney injury via miR-195a-5p-SIRT3 axis.
Nutrient availability regulates the secretion and function of immune cell-derived extracellular vesicles through metabolic rewiring.
Ameliorating lung fibrosis and pulmonary function in diabetic mice: Therapeutic potential of mesenchymal stem cell
Macrophage-derived exosomal miR-195a-5p impairs tubular epithelial cells mitochondria in acute kidney injury mice.
Biodegradable and Antioxidant DNA Hydrogel as a Cytokine Delivery System for Diabetic Wound Healing
Biodegradable and Antioxidant DNA Hydrogel as a Cytokine Delivery System for Diabetic Wound Healing.
Adiponectin gene therapy prevents islet loss after transplantation.
Mitochondrial transfer from mesenchymal stem cells to macrophages restricts inflammation and alleviates kidney injury in diabetic nephropathy mice via PGC-1α activation.
A DNA Nanoraft-Based Cytokine Delivery Platform for Alleviation of Acute Kidney Injury
Complement C5 activation promotes type 2 diabetic kidney disease via activating STAT3 pathway and disrupting the gut-kidney axis.
Mesenchymal stromal cells protect hepatocytes from lipotoxicity through alleviation of endoplasmic reticulum stress by restoring SERCA activity.
Indispensable role of mitochondria in maintaining the therapeutic potential of curcumin in acute kidney injury.
Mesenchymal Stem Cell-Derived Extracellular Vesicles Attenuate Mitochondrial Damage and Inflammation by Stabilizing Mitochondrial DNA
Macrophage-derived extracellular vesicles: diverse mediators of pathology and therapeutics in multiple diseases
Mesenchymal stem cells alleviate rat diabetic nephropathy by suppressing CD103<sup>+</sup> DCs-mediated CD8<sup>+</sup> T cell responses.
Mesenchymal stem cells elicit macrophages into M2 phenotype via improving transcription factor EB-mediated autophagy to alleviate diabetic nephropathy.
Peritoneal M2 macrophage transplantation as a potential cell therapy for enhancing renal repair in acute kidney injury.
Mesenchymal Stem Cells Attenuate Diabetic Lung Fibrosis via Adjusting Sirt3-Mediated Stress Responses in Rats.
Corrigendum to "FcgRIII Deficiency and FcgRIIb Defeciency Promote Renal Injury in Diabetic Mice".
Intervention for early diabetic nephropathy by mesenchymal stem cells in a preclinical nonhuman primate model
Regulation of SIRT1 in aging: Roles in mitochondrial function and biogenesis
The role of Nrf2 in oxidative stress-induced endothelial injuries
Therapeutic inhibition of mitochondrial reactive oxygen species with mito-TEMPO reduces diabetic cardiomyopathy
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