Area of research
Molecular Biology · Cellular and Molecular Neuroscience
Research interest
Research interests include Chemistry, Rhodopsin, Biophysics, Biology, Molecular dynamics, and Photoisomerization.
Transient near-UV absorption of the light-driven sodium pump Krokinobacter eikastus rhodopsin 2: a spectroscopic marker for retinal configuration
Gram-Scale Synthesis of 1,8-Naphthyridines in Water: The Friedlander Reaction Revisited
Structural Dynamics of RNA in the Presence of Choline Amino Acid Based Ionic Liquid: A Spectroscopic and Computational Outlook
Insight into the isomerization mechanism of retinal proteins from hybrid quantum mechanics/molecular mechanics simulations
Transient Near-UV Absorption of the Light-Driven Sodium Pump <i>Krokinobacter eikastus</i> Rhodopsin 2: A Spectroscopic Marker for Retinal Configuration
Two-photon conversion of a bacterial phytochrome
Femtosecond-to-millisecond structural changes in a light-driven sodium pump
Quercetin loaded folate targeted plasmonic silver nanoparticles for light activated chemo-photothermal therapy of DMBA induced breast cancer in Sprague Dawley rats
Frontiers in Multiscale Modeling of Photoreceptor Proteins
Structural and biochemical investigation of MARK4 inhibitory potential of cholic acid: Towards therapeutic implications in neurodegenerative diseases
LC-MS characterized methanolic extract of zanthoxylum armatum possess anti-breast cancer activity through Nrf2-Keap1 pathway: An in-silico, in-vitro and in-vivo evaluation
Effect of pH on the structure and function of pyruvate dehydrogenase kinase 3: Combined spectroscopic and MD simulation studies
Doubling Förster Resonance Energy Transfer Efficiency in Proteins with Extrinsic Thioamide Probes: Implications for Thiomodified Nucleobases
Nuclear spin-hyperpolarization generated in a flavoprotein under illumination: experimental field-dependence and theoretical level crossing analysis
Atomistic Insight into the Role of Threonine 127 in the Functional Mechanism of Channelrhodopsin-2
Spectroscopic Properties of Lumiflavin: A Quantum Chemical Study
Use of a Small Peptide Fragment as an Inhibitor of Insulin Fibrillation Process: A Study by High and Low Resolution Spectroscopy