Area of research
Immunology · Immunology and Allergy
Research interest
Research focused on Cell biology and Inflammation, with related work in Integrin, Platelet, Neutrophil extracellular traps. Notable publications include 'Neutrophils scan for activated platelets to initiate inflammation', 'Urinary TIMP-2 and IGFBP7 as Early Biomarkers of Acute Kidney Injury and Renal Recovery following Cardiac Surgery', and 'Synchronized integrin engagement and chemokine activation is crucial in neutrophil extracellular trap–mediated sterile inflammation'.
DPP4 inhibition curbs systemic inflammation
Sphingosine 1-phosphate receptor 1 signaling in macrophages reduces atherosclerosis in LDL receptor–deficient mice
Glutamine prevents acute kidney injury by modulating oxidative stress and apoptosis in tubular epithelial cells
The Pathogenesis of Ischemia-Reperfusion Induced Acute Kidney Injury Depends on Renal Neutrophil Recruitment Whereas Sepsis-Induced AKI Does Not
Platelets orchestrate the resolution of pulmonary inflammation in mice by T reg cell repositioning and macrophage education
The integrin-linked kinase is required for chemokine-triggered high-affinity conformation of the neutrophil β2-integrin LFA-1
Enzymatic lipid oxidation by eosinophils propagates coagulation, hemostasis, and thrombotic disease
Skap2 is required for β2 integrin–mediated neutrophil recruitment and functions
Directed transport of neutrophil-derived extracellular vesicles enables platelet-mediated innate immune response
Neutrophils scan for activated platelets to initiate inflammation
Urinary TIMP-2 and IGFBP7 as Early Biomarkers of Acute Kidney Injury and Renal Recovery following Cardiac Surgery
Synchronized integrin engagement and chemokine activation is crucial in neutrophil extracellular trap–mediated sterile inflammation
Distinct roles for talin-1 and kindlin-3 in LFA-1 extension and affinity regulation
Crucial role of SLP-76 and ADAP for neutrophil recruitment in mouse kidney ischemia-reperfusion injury