AP
Anup Pramanik
Sidho-Kanho-Birsha University, Visva-Bharati, Visva-Bharati University, Jeonju University
Employment
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Sidho-Kanho-Birsha University Assistant Professor2020 - Present
Education
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Visva-Bharati Postdoc2017 - 2018
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Visva-Bharati University Postdoc2012 - 2016
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Jeonju University Postdoc2010 - 2011
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Jadavpur University Ph.D.2006 - 2010
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University of Calcutta M.Sc.2003 - 2005
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University of Calcutta B.Sc.2000 - 2003
Projects & Funding
Projects & funding information is unavailable.
Publications (102)
- Cascade Annulation Enabled Access to Functionalized Polyaza Tetracycles With Fused Imidazo Scaffolds for Fluorescence “Turn‐Off” Sensing of Benzaldehyde Derivatives Save
- Unraveling the Molecular Origin of the Unprecedented ortho-Chloride Effect in Cobalt-Catalyzed Asymmetric Hydrogenation of 1,1-Diarylethenes Save
- Computational investigation of some phytochemicals derived from various medicinal plants to inhibit dengue fever: a multi-targeted approach Save
- Visible‐Light‐Promoted Access to Fused Aza‐Heterocyclic Frameworks Save
- Beyond Thioflavin-T: Excited State Intramolecular Proton Transfer-Active 2-Phenylbenzimidazoles for Sensitive and Selective Detection of Insulin Amyloid Aggregates via a Unique Binding Mechanism Save
- Antioxidant 3-hydroxyflavone analogues: Integrated experimental and theoretical insights into lead fluoro-sensing and toxicity mitigation in living systems Save
- In silico study of potent polyphenolic phytochemicals as natural inhibitors against kinase enzymes in breast and lung cancer Save
- Correction to “Photoinduced Regioselective Decarbonylative and Decarboxylative C–O Bond Functionalizations: Approach toward Chemoselective Scissions of Isatoic Anhydride and Unraveling the Enroutes through Control Experiments and DFT Studies” Save
- Dihydromyricetin, the active component of rattan tea alleviates symptoms of systemic sclerosis and atopic dermatitis through modulation of ROR γ t and IL17A production in T cells Save
- In-silico approaches to unravel the efficacy of naturally occurring C–C and C–O–C type biflavonoids towards the inhibition of MDM2–p53 interactions Save