Cargando…

Lipid-Based Nanocarriers for Delivery of Neuroprotective Kynurenic Acid: Preparation, Characterization, and BBB Transport

Encapsulation possibilities of an extensively investigated neuroprotective drug (kynurenic acid, KYNA) are studied via lipid-based nanocarriers to increase the blood–brain barrier (BBB) specific permeability. The outcomes of various preparation conditions such as stirring and sonication time, concen...

Descripción completa

Detalles Bibliográficos
Autores principales: Juhász, Ádám, Ungor, Ditta, Varga, Norbert, Katona, Gábor, Balogh, György T., Csapó, Edit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10531491/
https://www.ncbi.nlm.nih.gov/pubmed/37762551
http://dx.doi.org/10.3390/ijms241814251
_version_ 1785111731510444032
author Juhász, Ádám
Ungor, Ditta
Varga, Norbert
Katona, Gábor
Balogh, György T.
Csapó, Edit
author_facet Juhász, Ádám
Ungor, Ditta
Varga, Norbert
Katona, Gábor
Balogh, György T.
Csapó, Edit
author_sort Juhász, Ádám
collection PubMed
description Encapsulation possibilities of an extensively investigated neuroprotective drug (kynurenic acid, KYNA) are studied via lipid-based nanocarriers to increase the blood–brain barrier (BBB) specific permeability. The outcomes of various preparation conditions such as stirring and sonication time, concentration of the lipid carriers and the drug, and the drug-to-lipid ratio are examined. Considering the experimentally determined encapsulation efficiency, hydrodynamic diameter, and ζ-potential values, the initial lipid and drug concentration as well as the stirring and sonication time of the preparation were optimized. The average hydrodynamic diameter of the prepared asolectin-(LIP) and water-soluble lipopolymer (WSLP)-based liposomes was found to be ca. 25 and 60 nm under physiological conditions. The physicochemical characterization of the colloidal carriers proves that the preparation of the drug-loaded liposomes was a successful process, and secondary interactions were indicated between the drug molecule and the polymer residues around the WSLP membrane. Dissolution profiles of the active molecule under physiological conditions were registered, and the release of the unformulated and encapsulated drug is very similar. In addition to this outcome, the in vitro polar brain lipid extract (porcine)-based permeability test proved the achievement of two- or fourfold higher BBB specific penetration and lipid membrane retention for KYNA in the liposomal carriers relative to the unformatted drug.
format Online
Article
Text
id pubmed-10531491
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-105314912023-09-28 Lipid-Based Nanocarriers for Delivery of Neuroprotective Kynurenic Acid: Preparation, Characterization, and BBB Transport Juhász, Ádám Ungor, Ditta Varga, Norbert Katona, Gábor Balogh, György T. Csapó, Edit Int J Mol Sci Article Encapsulation possibilities of an extensively investigated neuroprotective drug (kynurenic acid, KYNA) are studied via lipid-based nanocarriers to increase the blood–brain barrier (BBB) specific permeability. The outcomes of various preparation conditions such as stirring and sonication time, concentration of the lipid carriers and the drug, and the drug-to-lipid ratio are examined. Considering the experimentally determined encapsulation efficiency, hydrodynamic diameter, and ζ-potential values, the initial lipid and drug concentration as well as the stirring and sonication time of the preparation were optimized. The average hydrodynamic diameter of the prepared asolectin-(LIP) and water-soluble lipopolymer (WSLP)-based liposomes was found to be ca. 25 and 60 nm under physiological conditions. The physicochemical characterization of the colloidal carriers proves that the preparation of the drug-loaded liposomes was a successful process, and secondary interactions were indicated between the drug molecule and the polymer residues around the WSLP membrane. Dissolution profiles of the active molecule under physiological conditions were registered, and the release of the unformulated and encapsulated drug is very similar. In addition to this outcome, the in vitro polar brain lipid extract (porcine)-based permeability test proved the achievement of two- or fourfold higher BBB specific penetration and lipid membrane retention for KYNA in the liposomal carriers relative to the unformatted drug. MDPI 2023-09-18 /pmc/articles/PMC10531491/ /pubmed/37762551 http://dx.doi.org/10.3390/ijms241814251 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Juhász, Ádám
Ungor, Ditta
Varga, Norbert
Katona, Gábor
Balogh, György T.
Csapó, Edit
Lipid-Based Nanocarriers for Delivery of Neuroprotective Kynurenic Acid: Preparation, Characterization, and BBB Transport
title Lipid-Based Nanocarriers for Delivery of Neuroprotective Kynurenic Acid: Preparation, Characterization, and BBB Transport
title_full Lipid-Based Nanocarriers for Delivery of Neuroprotective Kynurenic Acid: Preparation, Characterization, and BBB Transport
title_fullStr Lipid-Based Nanocarriers for Delivery of Neuroprotective Kynurenic Acid: Preparation, Characterization, and BBB Transport
title_full_unstemmed Lipid-Based Nanocarriers for Delivery of Neuroprotective Kynurenic Acid: Preparation, Characterization, and BBB Transport
title_short Lipid-Based Nanocarriers for Delivery of Neuroprotective Kynurenic Acid: Preparation, Characterization, and BBB Transport
title_sort lipid-based nanocarriers for delivery of neuroprotective kynurenic acid: preparation, characterization, and bbb transport
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10531491/
https://www.ncbi.nlm.nih.gov/pubmed/37762551
http://dx.doi.org/10.3390/ijms241814251
work_keys_str_mv AT juhaszadam lipidbasednanocarriersfordeliveryofneuroprotectivekynurenicacidpreparationcharacterizationandbbbtransport
AT ungorditta lipidbasednanocarriersfordeliveryofneuroprotectivekynurenicacidpreparationcharacterizationandbbbtransport
AT varganorbert lipidbasednanocarriersfordeliveryofneuroprotectivekynurenicacidpreparationcharacterizationandbbbtransport
AT katonagabor lipidbasednanocarriersfordeliveryofneuroprotectivekynurenicacidpreparationcharacterizationandbbbtransport
AT baloghgyorgyt lipidbasednanocarriersfordeliveryofneuroprotectivekynurenicacidpreparationcharacterizationandbbbtransport
AT csapoedit lipidbasednanocarriersfordeliveryofneuroprotectivekynurenicacidpreparationcharacterizationandbbbtransport