MedChemComm · 2011 · 145 citations · 29 references
Pyrrolothiazole Hybrid CompoundsAntimicrobial ChemotherapyAntimycobacterial ActivityPharmaceutical ChemistryMedicinal ChemistryStereoselective 1,3-Dipolar CycloadditionAntimicrobial ResistanceAntimicrobial Drug DiscoveryThree-component Regio-BiochemistryTuberculosisAntibacterial AgentAntimicrobial CompoundPharmacologyNatural Product SynthesisMycobacterium Tuberculosish37rvAntifungal AgentNatural SciencesEleven CompoundsMicrobiologyAntimicrobial PharmacodynamicsMedicineDrug Discovery
Spirooxindolo-pyrrolidine, pyrrolizine and pyrrolothiazole hybrid compounds were obtained in excellent yields from the regio- and stereoselective reaction between β-nitrostyrenes and non-stabilized azomethine ylides, generated in situ from isatin and phenylglycine/proline/thiaproline. These compounds were evaluated for their in vitro activity against Mycobacterium tuberculosisH37Rv (MTB). Eleven compounds were more active than pyrazinamide and one of them, namely 6′-(3-nitrophenyl)-7′-nitro-3′,6′,7′,7a′-tetrahydro-1′H-spiro-[indoline-3,5′-pyrrolo-[1,2-c]thiazol]-2-one, displayed a 7.6 μM MIC value, which represents a potency similar to that of the first-line anti-TB drug ethambutol and 6.7 times higher than that of pyrazinamide.
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Christopher Dye, S Scheele, Paul Dolin et al. · JAMA · 1999 · 3K citations
Ke Ding, Yipin Lu, Zaneta Nikolovska‐Coleska et al. · Journal of Medicinal Chemistry · 2006 · 681 citations · Full text
Combinatorial Chemistry, Mdm2-p53 Interaction, Chemoprevention Strategy +19
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Novel Spiro-pyrrolothiazolyloxindoles, Medicinal Chemistry, Engineering +10