Nihar Ranjan
Affiliations: | Bioorganic and Medicinal Chemistry | Clemson University, Clemson, SC, United States |
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Sign in to add traineeSmita verma | grad student | 2017-2021 | NIPER Kolkata |
Rajesh Patidar | grad student | 2019-2022 | NIPER Raebareli |
Ratnesh Tiwari | grad student | 2021-2024 | Clemson University |
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Publications
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M M, Patidar RK, Tiwari R, et al. (2023) Nile Blue: A Red-Emissive Fluorescent Dye That Displays Differential Self-Assembly and Binding to G-Quadruplexes. The Journal of Physical Chemistry. B |
Metangle S, Ranjan N. (2023) Preferential Binding of a Red Emissive Julolidine Derivative to a Promoter G-quadruplex. Chembiochem : a European Journal of Chemical Biology. e202300527 |
Ranjan N, Arya DP. (2023) Parallel G-quadruplex recognition by neomycin. Frontiers in Chemistry. 11: 1232514 |
Patidar RK, Tiwari K, Tiwari R, et al. (2023) Promoter G-Quadruplex Binding Styryl Benzothiazolium Derivative for Applications in Ligand Affinity Ranking and as Ethidium Bromide Substitute in Gel Staining. Acs Applied Bio Materials |
Singh L, Ranjan N. (2023) Highly Selective and Sensitive Detection of Nitrite Ion by an Unusual Nitration of a Fluorescent Benzimidazole. Journal of the American Chemical Society. 145: 2745-2749 |
Verma S, Patidar RK, Tiwari R, et al. (2022) Fragment-Based Design of Small Molecules to Study DNA Minor Groove Recognition. The Journal of Physical Chemistry. B |
Verma S, Patidar RK, Tiwari K, et al. (2022) Preferential Recognition of Human Telomeric G-Quadruplex DNA by a Red-Emissive Molecular Rotor. The Journal of Physical Chemistry. B |
Ekal NS, Patil R, Ranjan N, et al. (2022) Oxidation state of graphene oxide nanosheets drives their interaction with proteins: A case of bovine serum albumin. Colloids and Surfaces. B, Biointerfaces. 212: 112367 |
Ghosh A, Ranjan N, Jiang L, et al. (2022) Fine-tuning miR-21 expression and inhibition of EMT in breast cancer cells using aromatic-neomycin derivatives. Molecular Therapy. Nucleic Acids. 27: 685-698 |
Deshmukh SK, Agrawal S, Gupta MK, et al. (2021) Recent Advances in the Discovery of Antiviral Metabolites from Fungi. Current Pharmaceutical Biotechnology |