Priyadarshi Satpati

Affiliations: 
IIT Guwahati 
Area:
Computational chemistry
Website:
http://www.iitg.ac.in/psatpati/index.html
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"Priyadarshi Satpati"
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Publications

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Sarkar T, Ghosh S, Sundaravadivelu PK, et al. (2024) Mechanism of Protease Resistance of D-Amino Acid Residue Containing Cationic Antimicrobial Heptapeptides. Acs Infectious Diseases. 10: 562-581
Ghosh S, Chatterjee S, Satpati P. (2023) Effect of Spacer Length Modification of the Cationic Side Chain on the Energetics of Antimicrobial Peptide Binding to Membrane-Mimetic Bilayers. Journal of Chemical Information and Modeling
Ghosh S, Sarkar T, Chatterjee S, et al. (2023) Bridging Thermodynamics, Antimicrobial Activity, and pH Sensitivity of Cationic Membranolytic Heptapeptides-A Computational and Experimental Study. Journal of Chemical Information and Modeling
Ghosh S, Chatterjee S, Satpati P. (2022) Effect of a monovalent salt on the energetics of an antimicrobial-peptide: micelle dissociation. Physical Chemistry Chemical Physics : Pccp
Ghosh S, Chatterjee S, Satpati P. (2022) Effect of Leu/Val Mutation on the Energetics of Antimicrobial Peptide:Micelle Binding. The Journal of Physical Chemistry. B. 126: 5262-5273
Debnath S, Ghosh S, Kumar D, et al. (2022) Effect of differential backbone di-substitution of gamma amino acid residues on the conformation and assembly of their Fmoc derivatives in solid and solution states. Chemistry, An Asian Journal
Pandit G, Sarkar T, S R V, et al. (2022) Delineating the Mechanism of Action of a Protease Resistant and Salt Tolerant Synthetic Antimicrobial Peptide against . Acs Omega. 7: 15951-15968
Ghosh S, Pandit G, Debnath S, et al. (2021) Effect of monovalent salt concentration and peptide secondary structure in peptide-micelle binding. Rsc Advances. 11: 36836-36849
Debnath S, Ghosh S, Pandit G, et al. (2021) Effect of Differential Geminal Substitution of γ Amino Acid Residues at the ( + 2) Position of αγ Turn Segments on the Conformation of Template β-Hairpin Peptides. The Journal of Organic Chemistry. 86: 11310-11323
Ghosh S, Bhattacherjee D, Satpati P, et al. (2021) Venetoclax: a promising repurposed drug against SARS-CoV-2 main protease. Journal of Biomolecular Structure & Dynamics. 1-12
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