| Literature DB >> 29185748 |
Mukesh C Joshi1, John Okombo1, Samkele Nsumiwa1, Jeffrey Ndove2, Dale Taylor2, Lubbe Wiesner2, Roger Hunter1, Kelly Chibale1,3, Timothy J Egan1.
Abstract
Emergence of drug resistant Plasmodium falciparum including artemisinin-tolerant parasites highlights the need for new antimalarials. We have previously shown that dibemequines, 4-amino-7-chloroquinolines with dibenzylmethylamine (dibemethin) side chains, are efficacious. In this study, analogues in which the terminal phenyl group of the dibemethin was replaced with a 2-pyridyl group and in which the 4-amino-7-chloroquinoline was either maintained or replaced with a 4-aminoquinoline-7-carbonitrile were synthesized in an effort to improve druglikeness. These compounds exhibited significantly improved solubility and decreased lipophilicity and were potent against chloroquine-sensitive (NF54) and -resistant (Dd2 and 7G8) P. falciparum strains with 5/6 having IC50 < 100 nM against the NF54 strain. All inhibited both β-hematin (synthetic hemozoin) formation and hemozoin formation in the parasite. Parasitemia was reduced by over 90% in P. berghei infected mice in 3/6 derivatives following oral dosing at 4 × 30 mg/kg, with microsomal metabolic stability data suggesting that this could be attributed to highly active metabolites.Entities:
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Year: 2017 PMID: 29185748 DOI: 10.1021/acs.jmedchem.7b01537
Source DB: PubMed Journal: J Med Chem ISSN: 0022-2623 Impact factor: 7.446