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chandar thakur's profile
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What I do
Research Fellow, Memorial Sloan Kettering Cancer Center, New York
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Affiliations
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Interests
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Publications
Eckelbarger J, Wilmot J, Epperson M, Thakur C, Shum D, Antczak C, Tarassishin L, Djaballah H, Gin D. Synthesis of Antiproliferative Cephalotaxus Esters and Their Evaluation against Several Human Hematopoietic and Solid Tumor Cell Lines: Uncovering Differential Susceptibilities to Multidrug Resistance. Chemistry (Weinheim an der Bergstrasse, Germany) (14) , 4293-306 (2008) PubMed ID:(18366032 )
Mao H, Thakur C, Chattopadhyay S, Silverman R, Gudkov A, Banerjee A. Inhibition of human parainfluenza virus type 3 infection by novel small molecules. Antiviral research (2) , 83-94 (2008) (Epub 02 Oct 2007) PubMed ID:(17964670)
Thakur C, Jha B, Dong B, Das Gupta J, Silverman K, Mao H, Sawai H, Nakamura A, Banerjee A, Gudkov A, Silverman R. Small-molecule activators of RNase L with broad-spectrum antiviral activity. Proceedings of the National Academy of Sciences of the United States of America (23) , 9585-90 (2007) (Epub 29 May 2007) PubMed ID:(17535916)
Zhou L, Thakur C, Molinaro R, Paranjape J, Hoppes R, Jeang K, Silverman R, Torrence P. Delivery of 2-5A cargo into living cells using the Tat cell penetrating peptide: 2-5A-tat. Bioorganic & medicinal chemistry (23) , 7862-74 (2006) PubMed ID:(16908165 )
Thakur C, Xu Z, Wang Z, Novince Z, Silverman R. A convenient and sensitive fluorescence resonance energy transfer assay for RNase L and 2',5' oligoadenylates. Methods in molecular medicine , 103-13 (2005) PubMed ID:(16000857)
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chandar thakur's activity on Nature Network
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Entries
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In the last week
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added publication Inhibition of human parainfluenza virus type 3 infection by novel small molecules.
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added publication Small-molecule activators of RNase L with broad-spectrum antiviral activity.
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added publication Delivery of 2-5A cargo into living cells using the Tat cell penetrating peptide: 2-5A-tat.
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added publication A convenient and sensitive fluorescence resonance energy transfer assay for RNase L and 2',5' oligoadenylates.
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