Area of research
Molecular Biology · Spectroscopy
Research interest
Research focused on FtsZ and Phosphonate, with related work in Bacterial cell structure, In vivo, Antibacterial activity. Notable publications include 'Fascaplysin Derivatives Are Potent Multitarget Agents against Alzheimer’s Disease: in Vitro and in Vivo Evidence', 'Fascaplysin derivatives binding to DNA via unique cationic five-ring coplanar backbone showed potent antimicrobial/antibiofilm activity against MRSA in vitro and in vivo', and 'Room-Temperature, Water-Promoted, Radical-Coupling Reactions of Phenols with tert-Butyl Nitrite'.
Antibacterial Activity of GO-Based Composites Enhanced by Phosphonate-Functionalized Ionic Liquids and Silver
Dynamic 3D-Network Coating Composite Enables Global Isolation of Phosphopeptides, Stepwise Separation of Mono- and Multi-Phosphopeptides, and Phosphoproteomics of Human Lung Cells
Natural product-inspired molecules for covalent inhibition of SHP2 tyrosine phosphatase
Rational molecular design converting fascaplysin derivatives to potent broad-spectrum inhibitors against bacterial pathogens via targeting FtsZ
Design and synthesis of fascaplysin derivatives as inhibitors of FtsZ with potent antibacterial activity and mechanistic study
Fascaplysin derivatives binding to DNA via unique cationic five-ring coplanar backbone showed potent antimicrobial/antibiofilm activity against MRSA in vitro and in vivo
Discovery and Biological Characterization of PRMT5:MEP50 Protein–Protein Interaction Inhibitors
Concise Synthesis of (−)-GA<sub>18</sub> Methyl Ester
Phosphonate-Functionalized Ionic Liquid: A New Surface Modifier Contributing to the Enhanced Enrichment of Phosphorylated Peptides
Fascaplysin Derivatives Are Potent Multitarget Agents against Alzheimer’s Disease: <i>in Vitro</i> and <i>in Vivo</i> Evidence
Room-Temperature, Water-Promoted, Radical-Coupling Reactions of Phenols with tert-Butyl Nitrite