Area of research
Nephrology · Genetics
Research interest
Research focused on Kidney and Kidney disease, with related work in Gut flora, Fibrosis, Firmicutes. Notable publications include 'A holistic view of gallic acid-induced attenuation in colitis based on microbiome-metabolomics analysis', 'TAK-242, a Toll-Like Receptor 4 Antagonist, Protects against Aldosterone-Induced Cardiac and Renal Injury', and 'SIRT1 attenuates renal fibrosis by repressing HIF-2α'.
Integrated assessment of diabetic nephropathy by multi-parametric magnetic resonance imaging with non-enhanced T1 mapping, diffusion tensor imaging, and diffusion kurtosis imaging
Lactate metabolism and lactylation in cardiovascular disease: novel mechanisms and therapeutic targets
SIRT1 attenuates renal fibrosis by repressing HIF-2α
Helper T Cells in Idiopathic Membranous Nephropathy
Native T1 Mapping in Assessing Kidney Fibrosis for Patients With Chronic Glomerulonephritis
A holistic view of gallic acid-induced attenuation in colitis based on microbiome-metabolomics analysis
Supplementation with compound polysaccharides contributes to the development and metabolic activity of young rat intestinal microbiota
Resveratrol improves left ventricular remodeling in chronic kidney disease via Sirt1‐mediated regulation of FoxO1 activity and MnSOD expression
Anti-Phospholipase A2 Receptor (Anti-PLA2R) Antibody in Diagnosis and Treatment of Idiopathic Membranous Nephropathy: A Single-Center Observational Study in China
<i>SIRT1</i> gene polymorphisms are associated with nondiabetic type 1 cardiorenal syndrome
Down-regulation of IRAK1 attenuates podocyte apoptosis in diabetic nephropathy through PI3K/Akt signaling pathway
TRPM7 in CHBP-induced renoprotection upon ischemia reperfusion-related injury
Resveratrol ameliorates renal injury in spontaneously hypertensive rats by inhibiting renal micro-inflammation
CTGF mediates high-glucose induced epithelial–mesenchymal transition through activation of β-catenin in podocytes
Human embryonic mesenchymal stem cells alleviate pathologic changes of MRL/Lpr mice by regulating Th7 cell differentiation
Human embryonic mesenchymal stem cells participate in differentiation of renal tubular cells in newborn mice
TAK-242, a Toll-Like Receptor 4 Antagonist, Protects against Aldosterone-Induced Cardiac and Renal Injury