Area of research
Molecular Biology · Physiology
Research interest
Research interests include Ion channel regulation and function, Erythrocyte Function and Pathophysiology, Lipid Membrane Structure and Behavior, and Nanopore and Nanochannel Transport Studies.
Molecular insights into the force-from-lipids gating of mechanosensitive channels
Force- and cell state–dependent recruitment of Piezo1 drives focal adhesion dynamics and calcium entry
Application of piconewton forces to individual filopodia reveals mechanosensory role of L-type Ca2+ channels
Microgravity × Radiation: A Space Mechanobiology Approach Toward Cardiovascular Function and Disease
Cell membrane mechanics and mechanosensory transduction
Membrane stiffness is one of the key determinants of E. coli MscS channel mechanosensitivity
Biophysical Principles of Ion-Channel-Mediated Mechanosensory Transduction
PIEZO1-Mediated Currents Are Modulated by Substrate Mechanics
Tuning ion channel mechanosensitivity by asymmetry of the transbilayer pressure profile
Evolutionary specialization of MscCG, an MscS-like mechanosensitive channel, in amino acid transport in Corynebacterium glutamicum
Electrochemical biosensing strategies for DNA methylation analysis
Nanotechnology and its medical applications: revisiting public policies from a regulatory perspective in Australia
Piezo1 Channels Are Inherently Mechanosensitive
The role of MscL amphipathic N terminus indicates a blueprint for bilayer-mediated gating of mechanosensitive channels
Toward a structural blueprint for bilayer-mediated channel mechanosensitivity
Bioelectromagnetics Research within an Australian Context: The Australian Centre for Electromagnetic Bioeffects Research (ACEBR)
Controlled delivery of drugs adsorbed onto porous Fe 3 O 4 structures by application of AC/DC magnetic fields
Magnetic nanoparticles for “smart liposomes”