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Development of an Acid-Labile Ketal Linked Amphiphilic Block Copolymer Nanoparticles for pH-Triggered Release of Paclitaxel

Here, we report on the construction of biodegradable poly(ethylene oxide monomethyl ether) (MPEO)-b-poly(ε-caprolactone) (PCL) nanoparticles (NPs) having acid-labile (acyclic ketal group) linkage at the block junction. In the presence of acidic pH, the nanoassemblies were destabilized as a consequen...

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Autores principales: Petrova, Svetlana Lukáš, Jäger, Eliézer, Jäger, Alessandro, Höcherl, Anita, Konefał, Rafał, Zhigunov, Alexander, Pavlova, Ewa, Janoušková, Olga, Hrubý, Martin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8124141/
https://www.ncbi.nlm.nih.gov/pubmed/34062772
http://dx.doi.org/10.3390/polym13091465
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author Petrova, Svetlana Lukáš
Jäger, Eliézer
Jäger, Alessandro
Höcherl, Anita
Konefał, Rafał
Zhigunov, Alexander
Pavlova, Ewa
Janoušková, Olga
Hrubý, Martin
author_facet Petrova, Svetlana Lukáš
Jäger, Eliézer
Jäger, Alessandro
Höcherl, Anita
Konefał, Rafał
Zhigunov, Alexander
Pavlova, Ewa
Janoušková, Olga
Hrubý, Martin
author_sort Petrova, Svetlana Lukáš
collection PubMed
description Here, we report on the construction of biodegradable poly(ethylene oxide monomethyl ether) (MPEO)-b-poly(ε-caprolactone) (PCL) nanoparticles (NPs) having acid-labile (acyclic ketal group) linkage at the block junction. In the presence of acidic pH, the nanoassemblies were destabilized as a consequence of cleaving this linkage. The amphiphilic MPEO-b-PCL diblock copolymer self-assembled in PBS solution into regular spherical NPs. The structure of self-assemble and disassemble NPs were characterized in detail by dynamic (DLS), static (SLS) light scattering, small-angle X-ray scattering (SAXS), and transmission electron microscopy (TEM). The key of the obtained NPs is using them in a paclitaxel (PTX) delivery system and study their in vitro cytostatic activity in a cancer cell model. The acid-labile ketal linker enabled the disassembly of the NPs in a buffer simulating an acidic environment in endosomal (pH ~5.0 to ~6.0) and lysosomal (pH ~4.0 to ~5.0) cell compartments resulting in the release of paclitaxel (PTX) and formation of neutral degradation products. The in vitro cytotoxicity studies showed that the activity of the drug-loaded NPs was increased compared to the free PTX. The ability of the NPs to release the drug at the endosomal pH with concomitant high cytotoxicity makes them suitable candidates as a drug delivery system for cancer therapy.
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spelling pubmed-81241412021-05-17 Development of an Acid-Labile Ketal Linked Amphiphilic Block Copolymer Nanoparticles for pH-Triggered Release of Paclitaxel Petrova, Svetlana Lukáš Jäger, Eliézer Jäger, Alessandro Höcherl, Anita Konefał, Rafał Zhigunov, Alexander Pavlova, Ewa Janoušková, Olga Hrubý, Martin Polymers (Basel) Article Here, we report on the construction of biodegradable poly(ethylene oxide monomethyl ether) (MPEO)-b-poly(ε-caprolactone) (PCL) nanoparticles (NPs) having acid-labile (acyclic ketal group) linkage at the block junction. In the presence of acidic pH, the nanoassemblies were destabilized as a consequence of cleaving this linkage. The amphiphilic MPEO-b-PCL diblock copolymer self-assembled in PBS solution into regular spherical NPs. The structure of self-assemble and disassemble NPs were characterized in detail by dynamic (DLS), static (SLS) light scattering, small-angle X-ray scattering (SAXS), and transmission electron microscopy (TEM). The key of the obtained NPs is using them in a paclitaxel (PTX) delivery system and study their in vitro cytostatic activity in a cancer cell model. The acid-labile ketal linker enabled the disassembly of the NPs in a buffer simulating an acidic environment in endosomal (pH ~5.0 to ~6.0) and lysosomal (pH ~4.0 to ~5.0) cell compartments resulting in the release of paclitaxel (PTX) and formation of neutral degradation products. The in vitro cytotoxicity studies showed that the activity of the drug-loaded NPs was increased compared to the free PTX. The ability of the NPs to release the drug at the endosomal pH with concomitant high cytotoxicity makes them suitable candidates as a drug delivery system for cancer therapy. MDPI 2021-05-01 /pmc/articles/PMC8124141/ /pubmed/34062772 http://dx.doi.org/10.3390/polym13091465 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
Petrova, Svetlana Lukáš
Jäger, Eliézer
Jäger, Alessandro
Höcherl, Anita
Konefał, Rafał
Zhigunov, Alexander
Pavlova, Ewa
Janoušková, Olga
Hrubý, Martin
Development of an Acid-Labile Ketal Linked Amphiphilic Block Copolymer Nanoparticles for pH-Triggered Release of Paclitaxel
title Development of an Acid-Labile Ketal Linked Amphiphilic Block Copolymer Nanoparticles for pH-Triggered Release of Paclitaxel
title_full Development of an Acid-Labile Ketal Linked Amphiphilic Block Copolymer Nanoparticles for pH-Triggered Release of Paclitaxel
title_fullStr Development of an Acid-Labile Ketal Linked Amphiphilic Block Copolymer Nanoparticles for pH-Triggered Release of Paclitaxel
title_full_unstemmed Development of an Acid-Labile Ketal Linked Amphiphilic Block Copolymer Nanoparticles for pH-Triggered Release of Paclitaxel
title_short Development of an Acid-Labile Ketal Linked Amphiphilic Block Copolymer Nanoparticles for pH-Triggered Release of Paclitaxel
title_sort development of an acid-labile ketal linked amphiphilic block copolymer nanoparticles for ph-triggered release of paclitaxel
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8124141/
https://www.ncbi.nlm.nih.gov/pubmed/34062772
http://dx.doi.org/10.3390/polym13091465
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