Area of research
Genetics · Molecular Medicine
Research interest
Research interests include Biology, Multidrug tolerance, Persistence (discontinuity), Microbiology, Cell biology, and Biofilm.
The rise and future of CRISPR-based approaches for high-throughput genomics
Environmental, mechanistic and evolutionary landscape of antibiotic persistence
Ecology and evolution of antibiotic persistence
General Mechanisms Leading to Persister Formation and Awakening
HokB Monomerization and Membrane Repolarization Control Persister Awakening
GTP Binding Is Necessary for the Activation of a Toxic Mutant Isoform of the Essential GTPase ObgE
The Persistence-Inducing Toxin HokB Forms Dynamic Pores That Cause ATP Leakage
An integrative view of cell cycle control in Escherichia coli
Adaptive tuning of mutation rates allows fast response to lethal stress in Escherichia coli
New approaches to combat <i>Porphyromonas gingivalis</i> biofilms
Frequency of antibiotic application drives rapid evolutionary adaptation of Escherichia coli persistence
Molecular mechanisms and clinical implications of bacterial persistence
<i>In Vitro</i> Emergence of High Persistence upon Periodic Aminoglycoside Challenge in the ESKAPE Pathogens
Elucidation of the Mode of Action of a New Antibacterial Compound Active against Staphylococcus aureus and Pseudomonas aeruginosa
Repurposing Toremifene for Treatment of Oral Bacterial Infections
Obg and Membrane Depolarization Are Part of a Microbial Bet-Hedging Strategy that Leads to Antibiotic Tolerance
Fungal β-1,3-Glucan Increases Ofloxacin Tolerance of Escherichia coli in a Polymicrobial E. coli/Candida albicans Biofilm
Covalent immobilization of antimicrobial agents on titanium prevents<i>Staphylococcus aureus</i>and<i>Candida albicans</i>colonization and biofilm formation
Fitness trade‐offs explain low levels of persister cells in the opportunistic pathogen <i>Pseudomonas aeruginosa</i>
Derivatives of the Mouse Cathelicidin-Related Antimicrobial Peptide (CRAMP) Inhibit Fungal and Bacterial Biofilm Formation
Bacterial Obg proteins: GTPases at the nexus of protein and DNA synthesis
New-found fundamentals of bacterial persistence