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A Triple Combination of Targeting Ligands Increases the Penetration of Nanoparticles across a Blood-Brain Barrier Culture Model

Nanosized drug delivery systems targeting transporters of the blood-brain barrier (BBB) are promising carriers to enhance the penetration of therapeutics into the brain. The expression of solute carriers (SLC) is high and shows a specific pattern at the BBB. Here we show that targeting ligands ascor...

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Autores principales: Veszelka, Szilvia, Mészáros, Mária, Porkoláb, Gergő, Szecskó, Anikó, Kondor, Nóra, Ferenc, Györgyi, Polgár, Tamás F., Katona, Gábor, Kóta, Zoltán, Kelemen, Lóránd, Páli, Tibor, Vigh, Judit P., Walter, Fruzsina R., Bolognin, Silvia, Schwamborn, Jens C., Jan, Jeng-Shiung, Deli, Mária A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8778049/
https://www.ncbi.nlm.nih.gov/pubmed/35056983
http://dx.doi.org/10.3390/pharmaceutics14010086
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author Veszelka, Szilvia
Mészáros, Mária
Porkoláb, Gergő
Szecskó, Anikó
Kondor, Nóra
Ferenc, Györgyi
Polgár, Tamás F.
Katona, Gábor
Kóta, Zoltán
Kelemen, Lóránd
Páli, Tibor
Vigh, Judit P.
Walter, Fruzsina R.
Bolognin, Silvia
Schwamborn, Jens C.
Jan, Jeng-Shiung
Deli, Mária A.
author_facet Veszelka, Szilvia
Mészáros, Mária
Porkoláb, Gergő
Szecskó, Anikó
Kondor, Nóra
Ferenc, Györgyi
Polgár, Tamás F.
Katona, Gábor
Kóta, Zoltán
Kelemen, Lóránd
Páli, Tibor
Vigh, Judit P.
Walter, Fruzsina R.
Bolognin, Silvia
Schwamborn, Jens C.
Jan, Jeng-Shiung
Deli, Mária A.
author_sort Veszelka, Szilvia
collection PubMed
description Nanosized drug delivery systems targeting transporters of the blood-brain barrier (BBB) are promising carriers to enhance the penetration of therapeutics into the brain. The expression of solute carriers (SLC) is high and shows a specific pattern at the BBB. Here we show that targeting ligands ascorbic acid, leucine and glutathione on nanoparticles elevated the uptake of albumin cargo in cultured primary rat brain endothelial cells. Moreover, we demonstrated the ability of the triple-targeted nanovesicles to deliver their cargo into midbrain organoids after crossing the BBB model. The cellular uptake was temperature- and energy-dependent based on metabolic inhibition. The process was decreased by filipin and cytochalasin D, indicating that the cellular uptake of nanoparticles was partially mediated by endocytosis. The uptake of the cargo encapsulated in triple-targeted nanoparticles increased after modification of the negative zeta potential of endothelial cells by treatment with a cationic lipid or after cleaving the glycocalyx with an enzyme. We revealed that targeted nanoparticles elevated plasma membrane fluidity, indicating the fusion of nanovesicles with endothelial cell membranes. Our data indicate that labeling nanoparticles with three different ligands of multiple transporters of brain endothelial cells can promote the transfer and delivery of molecules across the BBB.
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spelling pubmed-87780492022-01-22 A Triple Combination of Targeting Ligands Increases the Penetration of Nanoparticles across a Blood-Brain Barrier Culture Model Veszelka, Szilvia Mészáros, Mária Porkoláb, Gergő Szecskó, Anikó Kondor, Nóra Ferenc, Györgyi Polgár, Tamás F. Katona, Gábor Kóta, Zoltán Kelemen, Lóránd Páli, Tibor Vigh, Judit P. Walter, Fruzsina R. Bolognin, Silvia Schwamborn, Jens C. Jan, Jeng-Shiung Deli, Mária A. Pharmaceutics Article Nanosized drug delivery systems targeting transporters of the blood-brain barrier (BBB) are promising carriers to enhance the penetration of therapeutics into the brain. The expression of solute carriers (SLC) is high and shows a specific pattern at the BBB. Here we show that targeting ligands ascorbic acid, leucine and glutathione on nanoparticles elevated the uptake of albumin cargo in cultured primary rat brain endothelial cells. Moreover, we demonstrated the ability of the triple-targeted nanovesicles to deliver their cargo into midbrain organoids after crossing the BBB model. The cellular uptake was temperature- and energy-dependent based on metabolic inhibition. The process was decreased by filipin and cytochalasin D, indicating that the cellular uptake of nanoparticles was partially mediated by endocytosis. The uptake of the cargo encapsulated in triple-targeted nanoparticles increased after modification of the negative zeta potential of endothelial cells by treatment with a cationic lipid or after cleaving the glycocalyx with an enzyme. We revealed that targeted nanoparticles elevated plasma membrane fluidity, indicating the fusion of nanovesicles with endothelial cell membranes. Our data indicate that labeling nanoparticles with three different ligands of multiple transporters of brain endothelial cells can promote the transfer and delivery of molecules across the BBB. MDPI 2021-12-30 /pmc/articles/PMC8778049/ /pubmed/35056983 http://dx.doi.org/10.3390/pharmaceutics14010086 Text en © 2021 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
Veszelka, Szilvia
Mészáros, Mária
Porkoláb, Gergő
Szecskó, Anikó
Kondor, Nóra
Ferenc, Györgyi
Polgár, Tamás F.
Katona, Gábor
Kóta, Zoltán
Kelemen, Lóránd
Páli, Tibor
Vigh, Judit P.
Walter, Fruzsina R.
Bolognin, Silvia
Schwamborn, Jens C.
Jan, Jeng-Shiung
Deli, Mária A.
A Triple Combination of Targeting Ligands Increases the Penetration of Nanoparticles across a Blood-Brain Barrier Culture Model
title A Triple Combination of Targeting Ligands Increases the Penetration of Nanoparticles across a Blood-Brain Barrier Culture Model
title_full A Triple Combination of Targeting Ligands Increases the Penetration of Nanoparticles across a Blood-Brain Barrier Culture Model
title_fullStr A Triple Combination of Targeting Ligands Increases the Penetration of Nanoparticles across a Blood-Brain Barrier Culture Model
title_full_unstemmed A Triple Combination of Targeting Ligands Increases the Penetration of Nanoparticles across a Blood-Brain Barrier Culture Model
title_short A Triple Combination of Targeting Ligands Increases the Penetration of Nanoparticles across a Blood-Brain Barrier Culture Model
title_sort triple combination of targeting ligands increases the penetration of nanoparticles across a blood-brain barrier culture model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8778049/
https://www.ncbi.nlm.nih.gov/pubmed/35056983
http://dx.doi.org/10.3390/pharmaceutics14010086
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