Kirsten S Smith

Affiliations: 
University of Virginia, Charlottesville, VA 
Area:
Chemistry, drug metabolism
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"Kirsten Smith"
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Publications

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Chordia MD, McCalmont WF, Smith KS, et al. (2013) Regioselective Synthesis and Biological Evaluation of 1-Hydroxyl Modified Ailanthinone Derivatives as Antimalarials Open Journal of Synthesis Theory and Applications. 2: 91-96
Perić M, Fajdetić A, Rupčić R, et al. (2012) Antimalarial activity of 9a-N substituted 15-membered azalides with improved in vitro and in vivo activity over azithromycin. Journal of Medicinal Chemistry. 55: 1389-401
Bukvić Krajačić M, Perić M, Smith KS, et al. (2011) Synthesis, structure-activity relationship, and antimalarial activity of ureas and thioureas of 15-membered azalides. Journal of Medicinal Chemistry. 54: 3595-605
Hutinec A, Rupčić R, Ziher D, et al. (2011) An automated, polymer-assisted strategy for the preparation of urea and thiourea derivatives of 15-membered azalides as potential antimalarial chemotherapeutics. Bioorganic & Medicinal Chemistry. 19: 1692-701
Deveau AM, Labroli MA, Dieckhaus CM, et al. (2010) ChemInform Abstract: Synthesis of Amino-Acid Functionalized β-Carbolines as Topoisomerase II Inhibitors. Cheminform. 32: no-no
Opsenica I, Opsenica D, Lanteri CA, et al. (2008) New chimeric antimalarials with 4-aminoquinoline moiety linked to a tetraoxane skeleton. Journal of Medicinal Chemistry. 51: 6216-9
Solaja BA, Opsenica D, Smith KS, et al. (2008) Novel 4-aminoquinolines active against chloroquine-resistant and sensitive P. falciparum strains that also inhibit botulinum serotype A. Journal of Medicinal Chemistry. 51: 4388-91
Opsenica DM, Terzić N, Smith PL, et al. (2008) Mixed tetraoxanes containing the acetone subunit as antimalarials. Bioorganic & Medicinal Chemistry. 16: 7039-45
Opsenica I, Opsenica D, Smith KS, et al. (2008) Chemical stability of the peroxide bond enables diversified synthesis of potent tetraoxane antimalarials. Journal of Medicinal Chemistry. 51: 2261-6
Jain HD, Zhang C, Zhou S, et al. (2008) Synthesis and structure-activity relationship studies on tryprostatin A, an inhibitor of breast cancer resistance protein. Bioorganic & Medicinal Chemistry. 16: 4626-51
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