PLGA nanoparticle formulation of RK-33 an RNA helicase inhibitor against DDX3
Bol, Guus Martinus; Khan, Raheela; Heerma van Voss, Marise Rosa; Tantravedi, Saritha; Korz, Dorian; Kato, Yoshinori; Raman, Venu
(2016) Cancer Chemotherapy and Pharmacology, volume 76, issue 4, pp. 821 - 827
(Article)
Abstract
BACKGROUND: The DDX3 helicase inhibitor RK-33 is a newly developed anticancer agent that showed promising results in preclinical research (Bol et al. EMBO Mol Med, 7(5):648-649, 2015). However, due to the physicochemical and pharmacological characteristics of RK-33, we initiated development of alternative formulations of RK-33 by preparing sustained release nanoparticles
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that can be administered intravenously. METHODS: In this study, RK-33 was encapsulated in poly(lactic-co-glycolic acid) (PLGA), one of the most well-developed biodegradable polymers, using the emulsion solvent evaporation method. RESULTS: Hydrodynamic diameter of RK-33-PLGA nanoparticles was about 245 nm with a negative charge, and RK-33-PLGA nanoparticles had a payload of 1.4 % RK-33. RK-33 was released from the PLGA nanoparticles over 7 days (90 ± 5.7 % released by day 7) and exhibited cytotoxicity to human breast carcinoma MCF-7 cells in a time-dependent manner. Moreover, RK-33-PLGA nanoparticles were well tolerated, and systemic retention of RK-33 was markedly improved in normal mice. CONCLUSIONS: PLGA nanoparticles have a potential as a parenteral formulation of RK-33.
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Keywords: Animals, Antineoplastic Agents, Azepines, Breast Neoplasms, Carcinoma, Cell Survival, Delayed-Action Preparations, Drug Carriers, Drug Compounding, Drugs, Investigational, Enzyme Inhibitors, Female, Half-Life, Humans, Imidazoles, Injections, Intravenous, Lactic Acid, MCF-7 Cells, Mice, Nude, Nanoparticles, Pilot Projects, Polyglycolic Acid, RNA Helicases, Solubility, Specific Pathogen-Free Organisms, Tissue Distribution, DDX3, PLGA, RK-33, Journal Article, Research Support, Non-U.S. Gov't, Research Support, U.S. Gov't, Non-P.H.S.
ISSN: 0344-5704
Publisher: Springer Verlag
(Peer reviewed)