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Cholesteryl oleate-loaded cationic solid lipid nanoparticles as carriers for efficient gene-silencing therapy

BACKGROUND: Cationic solid lipid nanoparticles (SLNs) have been given considerable attention for therapeutic nucleic acid delivery owing to their advantages over viral and other nanoparticle delivery systems. However, poor delivery efficiency and complex formulations hinder the clinical translation...

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Autores principales: Suñé-Pou, Marc, Prieto-Sánchez, Silvia, El Yousfi, Younes, Boyero-Corral, Sofía, Nardi-Ricart, Anna, Nofrerias-Roig, Isaac, Pérez-Lozano, Pilar, García-Montoya, Encarna, Miñarro-Carmona, Montserrat, Ticó, Josep Ramón, Suñé-Negre, Josep Mª, Hernández-Munain, Cristina, Suñé, Carlos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5985802/
https://www.ncbi.nlm.nih.gov/pubmed/29881274
http://dx.doi.org/10.2147/IJN.S158884
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author Suñé-Pou, Marc
Prieto-Sánchez, Silvia
El Yousfi, Younes
Boyero-Corral, Sofía
Nardi-Ricart, Anna
Nofrerias-Roig, Isaac
Pérez-Lozano, Pilar
García-Montoya, Encarna
Miñarro-Carmona, Montserrat
Ticó, Josep Ramón
Suñé-Negre, Josep Mª
Hernández-Munain, Cristina
Suñé, Carlos
author_facet Suñé-Pou, Marc
Prieto-Sánchez, Silvia
El Yousfi, Younes
Boyero-Corral, Sofía
Nardi-Ricart, Anna
Nofrerias-Roig, Isaac
Pérez-Lozano, Pilar
García-Montoya, Encarna
Miñarro-Carmona, Montserrat
Ticó, Josep Ramón
Suñé-Negre, Josep Mª
Hernández-Munain, Cristina
Suñé, Carlos
author_sort Suñé-Pou, Marc
collection PubMed
description BACKGROUND: Cationic solid lipid nanoparticles (SLNs) have been given considerable attention for therapeutic nucleic acid delivery owing to their advantages over viral and other nanoparticle delivery systems. However, poor delivery efficiency and complex formulations hinder the clinical translation of SLNs. AIM: The aim of this study was to formulate and characterize SLNs incorporating the cholesterol derivative cholesteryl oleate to produce SLN–nucleic acid complexes with reduced cytotoxicity and more efficient cellular uptake. METHODS: Five cholesteryl oleate-containing formulations were prepared. Laser diffraction and laser Doppler microelectrophoresis were used to evaluate particle size and zeta potential, respectively. Nanoparticle morphology was analyzed using electron microscopy. Cytotoxicity and cellular uptake of lipoplexes were evaluated using flow cytometry and fluorescence microscopy. The gene inhibition capacity of the lipoplexes was assessed using siRNAs to block constitutive luciferase expression. RESULTS: We obtained nanoparticles with a mean diameter of approximately 150–200 nm in size and zeta potential values of 25–40 mV. SLN formulations with intermediate concentrations of cholesteryl oleate exhibited good stability and spherical structures with no aggregation. No cell toxicity of any reference SLN was observed. Finally, cellular uptake experiments with DNA-and RNA-SLNs were performed to select one reference with superior transient transfection efficiency that significantly decreased gene activity upon siRNA complexation. CONCLUSION: The results indicate that cholesteryl oleate-loaded SLNs are a safe and effective platform for nonviral nucleic acid delivery.
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spelling pubmed-59858022018-06-07 Cholesteryl oleate-loaded cationic solid lipid nanoparticles as carriers for efficient gene-silencing therapy Suñé-Pou, Marc Prieto-Sánchez, Silvia El Yousfi, Younes Boyero-Corral, Sofía Nardi-Ricart, Anna Nofrerias-Roig, Isaac Pérez-Lozano, Pilar García-Montoya, Encarna Miñarro-Carmona, Montserrat Ticó, Josep Ramón Suñé-Negre, Josep Mª Hernández-Munain, Cristina Suñé, Carlos Int J Nanomedicine Original Research BACKGROUND: Cationic solid lipid nanoparticles (SLNs) have been given considerable attention for therapeutic nucleic acid delivery owing to their advantages over viral and other nanoparticle delivery systems. However, poor delivery efficiency and complex formulations hinder the clinical translation of SLNs. AIM: The aim of this study was to formulate and characterize SLNs incorporating the cholesterol derivative cholesteryl oleate to produce SLN–nucleic acid complexes with reduced cytotoxicity and more efficient cellular uptake. METHODS: Five cholesteryl oleate-containing formulations were prepared. Laser diffraction and laser Doppler microelectrophoresis were used to evaluate particle size and zeta potential, respectively. Nanoparticle morphology was analyzed using electron microscopy. Cytotoxicity and cellular uptake of lipoplexes were evaluated using flow cytometry and fluorescence microscopy. The gene inhibition capacity of the lipoplexes was assessed using siRNAs to block constitutive luciferase expression. RESULTS: We obtained nanoparticles with a mean diameter of approximately 150–200 nm in size and zeta potential values of 25–40 mV. SLN formulations with intermediate concentrations of cholesteryl oleate exhibited good stability and spherical structures with no aggregation. No cell toxicity of any reference SLN was observed. Finally, cellular uptake experiments with DNA-and RNA-SLNs were performed to select one reference with superior transient transfection efficiency that significantly decreased gene activity upon siRNA complexation. CONCLUSION: The results indicate that cholesteryl oleate-loaded SLNs are a safe and effective platform for nonviral nucleic acid delivery. Dove Medical Press 2018-05-30 /pmc/articles/PMC5985802/ /pubmed/29881274 http://dx.doi.org/10.2147/IJN.S158884 Text en © 2018 Suñé-Pou et al. This work is published and licensed by Dove Medical Press Limited The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Suñé-Pou, Marc
Prieto-Sánchez, Silvia
El Yousfi, Younes
Boyero-Corral, Sofía
Nardi-Ricart, Anna
Nofrerias-Roig, Isaac
Pérez-Lozano, Pilar
García-Montoya, Encarna
Miñarro-Carmona, Montserrat
Ticó, Josep Ramón
Suñé-Negre, Josep Mª
Hernández-Munain, Cristina
Suñé, Carlos
Cholesteryl oleate-loaded cationic solid lipid nanoparticles as carriers for efficient gene-silencing therapy
title Cholesteryl oleate-loaded cationic solid lipid nanoparticles as carriers for efficient gene-silencing therapy
title_full Cholesteryl oleate-loaded cationic solid lipid nanoparticles as carriers for efficient gene-silencing therapy
title_fullStr Cholesteryl oleate-loaded cationic solid lipid nanoparticles as carriers for efficient gene-silencing therapy
title_full_unstemmed Cholesteryl oleate-loaded cationic solid lipid nanoparticles as carriers for efficient gene-silencing therapy
title_short Cholesteryl oleate-loaded cationic solid lipid nanoparticles as carriers for efficient gene-silencing therapy
title_sort cholesteryl oleate-loaded cationic solid lipid nanoparticles as carriers for efficient gene-silencing therapy
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5985802/
https://www.ncbi.nlm.nih.gov/pubmed/29881274
http://dx.doi.org/10.2147/IJN.S158884
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