Larry L. Klein

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Organization: University of Illinois at Chicago
Department: Institute for Tuberculosis Research, College of Pharmacy
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Co-reporter:Larry L. Klein, Valentina Petukhova, Baojie Wan, Yuehong Wang, Bernard D. Santasiero, David C. Lankin, Guido F. Pauli, Scott G. Franzblau
Bioorganic & Medicinal Chemistry Letters 2014 Volume 24(Issue 1) pp:268-270
Publication Date(Web):1 January 2014
DOI:10.1016/j.bmcl.2013.11.024
The structure of a novel indigoid component was characterized by X-ray crystallography. This compound exhibited excellent anti-tuberculosis activity against Mycobacterium tuberculosis H37Rv in whole cell culture showing a submicromolar minimum inhibitory concentration (MIC). A synthesis of this molecule was designed and carried out to produce sufficient material for further testing. The in vitro profile, structure, and first synthesis of this indigoid component is reported.The structure of a novel indigoid component was characterized by X-ray crystallography. This compound exhibited excellent anti-tuberculosis activity against Mycobacterium tuberculosis H37Rv in whole cell culture showing a submicromolar minimum inhibitory concentration (MIC). A synthesis of this molecule was designed and carried out to produce sufficient material for further testing. The in vitro profile, structure, and first synthesis of this indigoid component is reported.
Co-reporter:Larry L. Klein, Michael D. Tufano
Tetrahedron Letters 2013 Volume 54(Issue 8) pp:1008-1011
Publication Date(Web):20 February 2013
DOI:10.1016/j.tetlet.2012.12.035
Isatins are valuable intermediates for heterocyclic chemistry. Most of the common methods for their production are less than adequate when the number and lipophilicity of substituents on the targeted isatin are increased. Our group desired such molecules and identified an alternative method for their production.Isatins are valuable intermediates for heterocyclic chemistry. Most of the common methods for their production are less than adequate when the number and lipophilicity of substituents on the targeted isatin are increased. Our group desired such molecules and identified an alternative method for their production.
1,2-benzoxazol-5-ol
[1(2H),2'-Bi-3H-indole]-3,3'-dione, 2,2-dichloro-
4H-1,3-Dioxino[4,5-c]pyridine-5-methanol,2,2,8-trimethyl-
3,4-Pyridinedimethanol, 5-methoxy-6-methyl-
3-Pyridinemethanol,5-hydroxy-4-(methoxymethyl)-6-methyl-