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Pankaj Gupta

Researcher at National Institutes of Health

Publications -  5
Citations -  41

Pankaj Gupta is an academic researcher from National Institutes of Health. The author has contributed to research in topics: G-quadruplex & Binding site. The author has an hindex of 4, co-authored 5 publications receiving 34 citations.

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Preclinical evaluation of a mercaptobenzamide and its prodrug for NCp7-targeted inhibition of human immunodeficiency virus.

TL;DR: Cell to cell transmission of HIV in multiple passages was significantly reduced in CEM-SS and human PBMCs by reducing progeny virus infectivity at compound concentrations greater than 2 μM, which is consistent with the proposed mechanism of action of the virus inactivating compounds.
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6-Methoxyethylamino-numonafide inhibits hepatocellular carcinoma xenograft growth as a single agent and in combination with sorafenib.

TL;DR: 6‐methoxyethylamino‐numonafide (MEAN) is a potent growth inhibitor of murine xenografts of 2 human HCC cell lines and is a promising candidate for clinical development as a single‐agent therapy or in combination with sorafenib for the management of HCC.
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Multivalent LKγ-PNA oligomers bind to a human telomere DNA G-rich sequence to form quadruplexes.

TL;DR: G-quadruplex formation between peptide nucleic acids (PNAs) composed of (L)Kγ-PNA-G monomers and a known portion of human telomeric DNA that adopts three G3 tracts via intramolecular hydrogen bonding is reported.
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PPG peptide nucleic acids that promote DNA guanine quadruplexes.

TL;DR: Chemical tools that allow examination of the specific roles of G‐quadruplex formation in vivo, and their association with gene regulation will be essential to understanding the functions of these quadruplexes and might lead to beneficial therapies.
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A click chemistry approach to identify protein targets of cancer chemopreventive phenethyl isothiocyanate

TL;DR: The identification of protein targets of chemopreventive phenethyl isothiocyanate (PEITC) via "click" chemistry in the A549 human lung cancer cell line is reported, using a novel alkyne-tagged PEITC which was also found to show potent in vitro anticancer activity.