Structure-Activity Relationships, Tolerability and Efficacy of Microtubule-Active 1,2,4-Triazolo[1,5-a]pyrimidines as Potential Candidates to Treat Human African Trypanosomiasis
Author:
Monti Ludovica,Liu Lawrence J.,Varricchio Carmine,Lucero Bobby,Alle Thibault,Yang Wenqian,Bem-Shalom Ido,Gilson Michael,Brunden Kurt R.,Brancale Andrea,Caffrey Conor R.,Ballatore Carlo
Abstract
ABSTRACTTubulin and microtubules (MTs) are potential protein targets to treat parasitic infections and our previous studies have shown that the triazolopyrimidine (TPD) class of MT- active compounds hold promise as antitrypanosomal agents. MT-targeting TPDs include structurally related but functionally diverse congeners that interact with mammalian tubulin at either one or two distinct interfacial binding sites; namely, the seventh and vinca sites, which are found within or between α,β-tubulin heterodimers, respectively. Evaluation of the activity of 123 TPD congeners against culturedTrypanosoma bruceienabled a robust quantitative structure-activity relationship (QSAR) model and the prioritization of two congeners forin vivopharmacokinetics (PK), tolerability and efficacy studies. Treatment ofT. brucei-infected mice with tolerable doses of TPDs3and4significantly decreased blood parasitemia within 24 h. Further, two once-weekly doses of4at 10 mg/kg significantly extended the survival of infected mice relative to infected animals treated with vehicle. Further optimization of dosing and/or the dosing schedule of these CNS-active TPDs may provide alternative treatments for human African trypanosomiasis.
Publisher
Cold Spring Harbor Laboratory
Cited by
1 articles.
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