Improved Malaria Therapy with Cationic Nanocapsules Demonstrated in Plasmodium berghei -Infected Rodents Using Whole Blood Surrogate Population PK/PD Modeling

: Investigating how nanoparticle systems interact in whole blood (WB) is critical to evaluating the effectiveness of malaria therapy. Methods: We decided to establish a pharmacokinetic/pharmacodynamic (PK/PD) model of the quinine population in WB using -infected mice, with a subsequent model compari...

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Veröffentlicht in:Pharmaceutics 2024-10, Vol.16 (11), p.1369
Hauptverfasser: Maciel, Tamara Ramos, Funguetto-Ribeiro, Ana Claudia, Olivo, Laura Ben, Teixeira, Flávia Elizabete Guerra, Pacheco, Camila de Oliveira, Araujo, Bibiana Verlindo de, Haas, Sandra Elisa
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Sprache:eng
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Zusammenfassung:: Investigating how nanoparticle systems interact in whole blood (WB) is critical to evaluating the effectiveness of malaria therapy. Methods: We decided to establish a pharmacokinetic/pharmacodynamic (PK/PD) model of the quinine population in WB using -infected mice, with a subsequent model comparison for nanocapsules coated with polysorbate (NCP80) or prepared with Eudragit RS (NCEUD). The WB quinine population pharmacokinetic model in rats was developed using plasma and partition coefficients for rat erythrocytes. Mouse WB quinine population PK/PD modeling was developed using allometrically scaled literature-free mouse quinine pharmacokinetic data and covariate values to obtain a WB population pharmacokinetic model for quinine and nanocapsules in mice. This allowed for PK/PD modeling of the quinine population with the WB concentration and parasitemia data in mice. All models were built in NONMEN. : The WB quinine concentration profiles in rats were characterized using a two-compartment model. Nanoencapsulation reduced clearance and central compartment volume and increased peripherical compartimental volume. A maximum effect model described the PK/PD of the quinine WB population in mice, demonstrating that NCEUD enhances the antimalarial effect. : Quinine WB is a good surrogate for describing the response to exposure in malaria. NCEUD outperformed NCP80 and free quinine, suggesting that cationic surfaces improve the potential for treating malaria.
ISSN:1999-4923
1999-4923
DOI:10.3390/pharmaceutics16111369