Area of research
Microbiology · Molecular Biology
Research interest
Research interests include Antimicrobial Peptides and Activities, Biochemical and Structural Characterization, Chemical Synthesis and Analysis, and vaccines and immunoinformatics approaches.
Discovery of antimicrobial peptides in the global microbiome with machine learning
Synthetic Antibiotic Derived from Sequences Encrypted in a Protein from Human Plasma
Synthetic Biology and Computer-Based Frameworks for Antimicrobial Peptide Discovery
Coatable and Resistance-Proof Ionic Liquid for Pathogen Eradication
Repurposing a peptide toxin from wasp venom into antiinfectives with dual antimicrobial and immunomodulatory properties
Peptide Design Principles for Antimicrobial Applications
Engineering Phage Host-Range and Suppressing Bacterial Resistance through Phage Tail Fiber Mutagenesis
Short Cationic Peptide Derived from Archaea with Dual Antibacterial Properties and Anti-Infective Potential
Selective antibacterial activity of the cationic peptide PaDBS1R6 against Gram-negative bacteria
Computer-Aided Design of Mastoparan-like Peptides Enables the Generation of Nontoxic Variants with Extended Antibacterial Properties
Engineering Phage Host-Range and Suppressing Bacterial Resistance Through Phage Tail Fiber Mutagenesis
In silico optimization of a guava antimicrobial peptide enables combinatorial exploration for peptide design
Structure-function-guided exploration of the antimicrobial peptide polybia-CP identifies activity determinants and generates synthetic therapeutic candidates
Yeast-Based Synthetic Biology Platform for Antimicrobial Peptide Production
Identification of Novel Cryptic Multifunctional Antimicrobial Peptides from the Human Stomach Enabled by a Computational–Experimental Platform
A Computationally Designed Peptide Derived from <i>Escherichia coli</i> as a Potential Drug Template for Antibacterial and Antibiofilm Therapies
Next-generation precision antimicrobials: towards personalized treatment of infectious diseases