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Artículo

Novel Phenobarbital-Loaded Nanostructured Lipid Carriers for Epilepsy Treatment: From QbD to In Vivo Evaluation

Scioli Montoto, SebastiánIcon ; Sbaraglini, Maria LauraIcon ; Cisneros, José SebastiánIcon ; Chain, Cecilia YamilIcon ; Ferreti, Valeria; Leon, Ignacio EstebanIcon ; Alvarez, Vera AlejandraIcon ; Castro, Guillermo RaulIcon ; Islan, German AbelIcon ; Talevi, AlanIcon ; Ruiz, María EsperanzaIcon
Fecha de publicación: 06/2022
Editorial: Frontiers Media
Revista: Frontiers in Chemistry
ISSN: 2296-2646
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Otras Ciencias Químicas

Resumen

Pharmacological treatments of central nervous system diseases are always challenging due to the restrictions imposed by the blood–brain barrier: while some drugs can effectively cross it, many others, some antiepileptic drugs among them, display permeability issues to reach the site of action and exert their pharmacological effects. The development of last-generation therapeutic nanosystems capable of enhancing drug biodistribution has gained ground in the past few years. Lipid-based nanoparticles are promising systems aimed to improve or facilitate the passage of drugs through biological barriers, which have demonstrated their effectiveness in various therapeutic fields, without signs of associated toxicity. In the present work, nanostructured lipid carriers (NLCs) containing the antiepileptic drug phenobarbital were designed and optimized by a quality by design approach (QbD). The optimized formulation was characterized by its entrapment efficiency, particle size, polydispersity index, and Z potential. Thermal properties were analyzed by DSC and TGA, and morphology and crystal properties were analyzed by AFM, TEM, and XRD. Drug localization and possible interactions between the drug and the formulation components were evaluated using FTIR. In vitro release kinetic, cytotoxicity on non-tumoral mouse fibroblasts L929, and in vivo anticonvulsant activity in an animal model of acute seizures were studied as well. The optimized formulation resulted in spherical particles with a mean size of ca. 178 nm and 98.2% of entrapment efficiency, physically stable for more than a month. Results obtained from the physicochemical and in vitro release characterization suggested that the drug was incorporated into the lipid matrix losing its crystalline structure after the synthesis process and was then released following a slower kinetic in comparison with the conventional immediate-release formulation. The NLC was non-toxic against the selected cell line and capable of delivering the drug to the site of action in an adequate amount and time for therapeutic effects, with no appreciable neurotoxicity. Therefore, the developed system represents a promising alternative for the treatment of one of the most prevalent neurological diseases, epilepsy.
Palabras clave: ANTICONVULSANT , DRUG DELIVERY , EPILEPSY , NANOSTRUCTURED LIPID CARRIER (NLC) , PHENOBARBITAL , PTZ TEST , RELEASE KINETIC , SOLID LIPID NANOPARTICLES (SLNS)
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info:eu-repo/semantics/openAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/212005
DOI: http://dx.doi.org/10.3389/fchem.2022.908386
URL: https://www.frontiersin.org/articles/10.3389/fchem.2022.908386/full
Colecciones
Articulos(CINDEFI)
Articulos de CENT.DE INV EN FERMENTACIONES INDUSTRIALES (I)
Articulos(INIFTA)
Articulos de INST.DE INV.FISICOQUIMICAS TEORICAS Y APLIC.
Articulos(INTEMA)
Articulos de INST.DE INV.EN CIENCIA Y TECNOL.MATERIALES (I)
Citación
Scioli Montoto, Sebastián; Sbaraglini, Maria Laura; Cisneros, José Sebastián; Chain, Cecilia Yamil; Ferreti, Valeria; et al.; Novel Phenobarbital-Loaded Nanostructured Lipid Carriers for Epilepsy Treatment: From QbD to In Vivo Evaluation; Frontiers Media; Frontiers in Chemistry; 10; 908386; 6-2022; 1-16
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