| Literature DB >> 23841934 |
Desiree C Schuck, Sabrina B Ferreira, Laura N Cruz, David R da Rocha, Miriam S Moraes, Myna Nakabashi, Philip J Rosenthal, Vitor F Ferreira, Celia R S Garcia.
Abstract
BACKGROUND: The hydroxynaphthoquinones have been extensively investigated over the past 50 years for their anti-malarial activity. One member of this class, atovaquone, is combined with proguanil in Malarone®, an important drug for the treatment and prevention of malaria.Entities:
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Year: 2013 PMID: 23841934 PMCID: PMC3726445 DOI: 10.1186/1475-2875-12-234
Source DB: PubMed Journal: Malar J ISSN: 1475-2875 Impact factor: 2.979
Figure 1Biological activity of hydroxynaphtoquinones. Structure and biological activity of compounds N1-N5.
Figure 2Effect of new hydroxynaphthoquinones on growth. a) Structure of N3. b) Dose response curve for compound N3 incubated for 48 h. Error bars represent standard error of the mean.
Figure 3Proposed mechanism of action of N3. P. falciparum 3D7 was loaded with Mitotracker Red CMXROS and ∆ΨMit measured after 1-hour incubations at the indicated concentrations using flow cytometry. a) Effects of compounds (dashed lines) compared to untreated controls (solid lines): CCCP 5 μM; N3 100 μM and Atovaquone 100 μM. b) Dose responses of different concentrations of solvent control, atovaquone and N3 in the inhibition of ∆ΨMit. (*) indicates a statistically significant difference from control values (P < 0.05), data were compared using one-way ANOVA and Dunnett’s post test.
Figure 4Structure of BW58-C, N3 and atovaquone pointing the main chemistry differences of compounds. Circles in the figure represent chiral centers.