Area of research
Physiology · Nephrology
Research interest
Research interests include Nitric Oxide and Endothelin Effects, Renin-Angiotensin System Studies, Chronic Kidney Disease and Diabetes, and Acute Kidney Injury Research.
Lipocalin‐2 Restores Soluble Guanylyl Cyclase‐Dependent Dilation of the Afferent Arteriole After Renal Transplantation or Ex Vivo Hypoxia/Reoxygenation in Mice
Irisin preserves mitochondrial integrity and function in tubular epithelial cells after ischemia–reperfusion‐induced acute kidney injury
STING promotes ferroptosis through NCOA4-dependent ferritinophagy in acute kidney injury
Dihydromyricetin attenuates cisplatin-induced acute kidney injury by reducing oxidative stress, inflammation and ferroptosis
Endothelial FIS1 DeSUMOylation Protects Against Hypoxic Pulmonary Hypertension
Piezo1 Mediates Vasodilation Induced by Acute Hyperglycemia in Mouse Renal Arteries and Microvessels
Tacrolimus Causes Hypertension by Increasing Vascular Contractility via RhoA (Ras Homolog Family Member A)/ROCK (Rho-Associated Protein Kinase) Pathway in Mice
A critical role of the podocyte cytoskeleton in the pathogenesis of glomerular proteinuria and autoimmune podocytopathies
rhADAMTS13 reduces oxidative stress by cleaving VWF in ischaemia/reperfusion‐induced acute kidney injury
Gut microbiota dependent trimethylamine N-oxide aggravates angiotensin II–induced hypertension
Trimethylamine N-oxide promotes hyperoxaluria-induced calcium oxalate deposition and kidney injury by activating autophagy
Podocyte apoptosis in diabetic nephropathy by BASP1 activation of the p53 pathway via WT1
Reactive oxygen species in renal vascular function
ADAMTS13 inhibits oxidative stress and ameliorates progressive chronic kidney disease following ischaemia/reperfusion injury
SARS‐CoV‐2 effects on the renin‐angiotensin‐aldosterone system, therapeutic implications
Acute Kidney Injury Sensitizes the Brain Vasculature to Ang II (Angiotensin II) Constriction via FGFBP1 (Fibroblast Growth Factor Binding Protein 1)
High phosphate impairs arterial endothelial function through AMPK‐related pathways in mouse resistance arteries
NaHCO <sub>3</sub> Dilates Mouse Afferent Arteriole Via Na <sup>+</sup> /HCO <sub>3</sub> <sup>−</sup> Cotransporters NBCs
Fenofibrate improves vascular endothelial function and contractility in diabetic mice
High Salt Enhances Reactive Oxygen Species and Angiotensin II Contractions of Glomerular Afferent Arterioles From Mice With Reduced Renal Mass
Sympathoexcitation in Rats With Chronic Heart Failure Depends on Homeobox D10 and MicroRNA-7b Inhibiting GABBR1 Translation in Paraventricular Nucleus
Effects of the antioxidant drug tempol on renal oxygenation in mice with reduced renal mass