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Chitosan-Based Nanogels Designed for Betanin-Rich Beetroot Extract Transport: Physicochemical and Biological Aspects

Nanotechnology has emerged as a possible solution to improve phytochemicals’ limitations. The objective of the present study was to encapsulate beetroot extract (BR Ext) within a chitosan (CS)-based nanogel (NG) designed via ionic crosslinking with tripolyphosphate (TPP) for betanin (Bet) delivery,...

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Autores principales: Silva Nieto, Ramón, Samaniego López, Cecilia, Moretton, Marcela A., Lizarraga, Leonardo, Chiappetta, Diego A., Alaimo, Agustina, Pérez, Oscar E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10574865/
https://www.ncbi.nlm.nih.gov/pubmed/37835924
http://dx.doi.org/10.3390/polym15193875
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author Silva Nieto, Ramón
Samaniego López, Cecilia
Moretton, Marcela A.
Lizarraga, Leonardo
Chiappetta, Diego A.
Alaimo, Agustina
Pérez, Oscar E.
author_facet Silva Nieto, Ramón
Samaniego López, Cecilia
Moretton, Marcela A.
Lizarraga, Leonardo
Chiappetta, Diego A.
Alaimo, Agustina
Pérez, Oscar E.
author_sort Silva Nieto, Ramón
collection PubMed
description Nanotechnology has emerged as a possible solution to improve phytochemicals’ limitations. The objective of the present study was to encapsulate beetroot extract (BR Ext) within a chitosan (CS)-based nanogel (NG) designed via ionic crosslinking with tripolyphosphate (TPP) for betanin (Bet) delivery, mainly in the ophthalmic environment. BR Ext is rich in betanin (Bet) according to thin layer chromatography (TLC), UV-visible spectroscopy, and HPLC analysis. NG presented a monodisperse profile with a size of 166 ± 6 nm and low polydispersity (0.30 ± 0.03). ζ potential (ζ-Pot) of +28 ± 1 is indicative of a colloidally stable system. BR Ext encapsulation efficiency (EE) was 45 ± 3%. TEM, with the respective 3D-surface plots and AFM, showed spherical–elliptical-shaped NG. The BR Ext release profile was biphasic with a burst release followed by slow and sustained phase over 12 h. Mucoadhesion assay demonstrated interactions between NG with mucin. Moreover, NG provided photoprotection and pH stability to BR Ext. FRAP and ABTS assays confirmed that BR Ext maintained antioxidant activity into NG. Furthermore, in vitro assays using human retinal cells displayed absence of cytotoxicity as well as an efficient protection against injury agents (LPS and H(2)O(2)). NGs are a promising platform for BR Ext encapsulation, exerting controlled release for ophthalmological use.
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spelling pubmed-105748652023-10-14 Chitosan-Based Nanogels Designed for Betanin-Rich Beetroot Extract Transport: Physicochemical and Biological Aspects Silva Nieto, Ramón Samaniego López, Cecilia Moretton, Marcela A. Lizarraga, Leonardo Chiappetta, Diego A. Alaimo, Agustina Pérez, Oscar E. Polymers (Basel) Article Nanotechnology has emerged as a possible solution to improve phytochemicals’ limitations. The objective of the present study was to encapsulate beetroot extract (BR Ext) within a chitosan (CS)-based nanogel (NG) designed via ionic crosslinking with tripolyphosphate (TPP) for betanin (Bet) delivery, mainly in the ophthalmic environment. BR Ext is rich in betanin (Bet) according to thin layer chromatography (TLC), UV-visible spectroscopy, and HPLC analysis. NG presented a monodisperse profile with a size of 166 ± 6 nm and low polydispersity (0.30 ± 0.03). ζ potential (ζ-Pot) of +28 ± 1 is indicative of a colloidally stable system. BR Ext encapsulation efficiency (EE) was 45 ± 3%. TEM, with the respective 3D-surface plots and AFM, showed spherical–elliptical-shaped NG. The BR Ext release profile was biphasic with a burst release followed by slow and sustained phase over 12 h. Mucoadhesion assay demonstrated interactions between NG with mucin. Moreover, NG provided photoprotection and pH stability to BR Ext. FRAP and ABTS assays confirmed that BR Ext maintained antioxidant activity into NG. Furthermore, in vitro assays using human retinal cells displayed absence of cytotoxicity as well as an efficient protection against injury agents (LPS and H(2)O(2)). NGs are a promising platform for BR Ext encapsulation, exerting controlled release for ophthalmological use. MDPI 2023-09-25 /pmc/articles/PMC10574865/ /pubmed/37835924 http://dx.doi.org/10.3390/polym15193875 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
Silva Nieto, Ramón
Samaniego López, Cecilia
Moretton, Marcela A.
Lizarraga, Leonardo
Chiappetta, Diego A.
Alaimo, Agustina
Pérez, Oscar E.
Chitosan-Based Nanogels Designed for Betanin-Rich Beetroot Extract Transport: Physicochemical and Biological Aspects
title Chitosan-Based Nanogels Designed for Betanin-Rich Beetroot Extract Transport: Physicochemical and Biological Aspects
title_full Chitosan-Based Nanogels Designed for Betanin-Rich Beetroot Extract Transport: Physicochemical and Biological Aspects
title_fullStr Chitosan-Based Nanogels Designed for Betanin-Rich Beetroot Extract Transport: Physicochemical and Biological Aspects
title_full_unstemmed Chitosan-Based Nanogels Designed for Betanin-Rich Beetroot Extract Transport: Physicochemical and Biological Aspects
title_short Chitosan-Based Nanogels Designed for Betanin-Rich Beetroot Extract Transport: Physicochemical and Biological Aspects
title_sort chitosan-based nanogels designed for betanin-rich beetroot extract transport: physicochemical and biological aspects
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10574865/
https://www.ncbi.nlm.nih.gov/pubmed/37835924
http://dx.doi.org/10.3390/polym15193875
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