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Bioorganic & Medicinal Chemistry|September 8, 2004
Design, synthesis, and biological evaluation of cytotoxic 11-aminoalkenylindenoisoquinoline and 11-diaminoalkenylindenoisoquinoline topoisomerase I inhibitorsXiangshu Xiao, Smitha Antony, Glenda Kohlhagen, et al.Bioorganic & Medicinal Chemistry Letters|June 19, 2004
Synthesis of nitrated indenoisoquinolines as topoisomerase I inhibitorsAndrew Morrell, Smitha Antony, Glenda Kohlhagen, et al.Journal of Medicinal Chemistry|February 8, 2014
Optimization of the lactam side chain of 7-azaindenoisoquinoline topoisomerase I inhibitors and mechanism of action studies in cancer cellsEvgeny Kiselev, Dhriti Sooryakumar, Keli Agama, et al.Journal of Medicinal Chemistry|March 2, 2011
Design, synthesis, and biological evaluation of thiazoles targeting flavivirus envelope proteinsAbdelrahman S Mayhoub, Mansoora Khaliq, Richard J Kuhn, et al.Journal of Medicinal Chemistry|December 22, 2006
A systematic study of nitrated indenoisoquinolines reveals a potent topoisomerase I inhibitorAndrew Morrell, Smitha Antony, Glenda Kohlhagen, et al.The Journal of Antibiotics|October 16, 2014
Anti-biofilm activity and synergism of novel thiazole compounds with glycopeptide antibiotics against multidrug-resistant staphylococciHaroon Mohammad, Abdelrahman S Mayhoub, Mark Cushman, et al.The Journal of Organic Chemistry|August 19, 2007
Synthesis and enzyme inhibitory activity of the s-nucleoside analogue of the ribitylaminopyrimidine substrate of lumazine synthase and product of riboflavin synthaseArindam Talukdar, Boris Illarionov, Adelbert Bacher, et al.The Journal of Organic Chemistry|May 17, 2012
Dibenzo[c,h][1,5]naphthyridinediones as topoisomerase I inhibitors: design, synthesis, and biological evaluationEvgeny Kiselev, Nicholas Empey, Keli Agama, et al.Bioorganic & Medicinal Chemistry Letters|January 31, 2006
Synthesis of benz[d]indeno[1,2-b]pyran-5,11-diones: versatile intermediates for the design and synthesis of topoisomerase I inhibitorsAndrew Morrell, Smitha Antony, Glenda Kohlhagen, et al.The Journal of Organic Chemistry|October 23, 2004
Novel autoxidative cleavage reaction of 9-fluoredenes discovered during synthesis of a potential DNA-threading indenoisoquinolineXiangshu Xiao, Smitha Antony, Glenda Kohlhagen, et al.Pageof 18