Area of research
Otorhinolaryngology · Biomedical Engineering
Research interest
Research interests include Sinusitis and nasal conditions, Nanofabrication and Lithography Techniques, Asthma and respiratory diseases, and Allergic Rhinitis and Sensitization.
An eosinophil peroxidase activity assay accurately predicts eosinophilic chronic rhinosinusitis
Matrix-Mediated Delivery of Silver Nanoparticles for Prevention of Staphylococcus aureus and Pseudomonas aeruginosa Biofilm Formation in Chronic Rhinosinusitis
Cell Adhesion Molecules are Upregulated and May Drive Inflammation in Chronic Rhinosinusitis with Nasal Polyposis
Inflammation‐driven vascular dysregulation in chronic rhinosinusitis
Differential expression and role of S100 proteins in chronic rhinosinusitis
Correlation between systemic inflammatory response and quality of life in patients with chronic rhinosinusitis
Biologics in Chronic Rhinosinusitis: An Update and Thoughts for Future Directions
A synthetic glycosaminoglycan reduces sinonasal inflammation in a murine model of chronic rhinosinusitis
LL-37 causes cell death of human nasal epithelial cells, which is inhibited with a synthetic glycosaminoglycan
The Life of Pi Star: Exploring the Exciting and Forbidden Worlds of the Benzophenone Photophore
A Modified Glycosaminoglycan, GM-0111, Inhibits Molecular Signaling Involved in Periodontitis
A Dual Receptor and Reporter for Multi-Modal Cell Surface Engineering
Topical cathelicidin (LL‐37) an innate immune peptide induces acute olfactory epithelium inflammation in a mouse model
Directing Neuronal Signaling through Cell-Surface Glycan Engineering
Cell‐Surface Engineering by a Conjugation‐and‐Release Approach Based on the Formation and Cleavage of Oxime Linkages upon Mild Electrochemical Oxidation and Reduction
Cell‐Surface Engineering by a Conjugation‐and‐Release Approach Based on the Formation and Cleavage of Oxime Linkages upon Mild Electrochemical Oxidation and Reduction
In Situ Modulation of Cell Behavior via Smart Dual-Ligand Surfaces
PI3 kinase enzymology on fluid lipid bilayers