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Novel Nano-Liposome Formulation for Dry Eyes with Components Similar to the Preocular Tear Film

Dry eye is commonly treated with artificial tears; however, developing artificial tears similar to natural tears is difficult due to the complex nature of tears. We characterized and evaluated a novel artificial tear formulation with components similar to the lipid and aqueous constituents of natura...

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Autores principales: Vicario-de-la-Torre, Marta, Caballo-González, María, Vico, Eva, Morales-Fernández, Laura, Arriola-Villalobos, Pedro, de las Heras, Beatriz, Benítez-del-Castillo, José Manuel, Guzmán, Manuel, Millar, Thomas, Herrero-Vanrell, Rocío, Molina-Martínez, Irene T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6415276/
https://www.ncbi.nlm.nih.gov/pubmed/30966460
http://dx.doi.org/10.3390/polym10040425
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author Vicario-de-la-Torre, Marta
Caballo-González, María
Vico, Eva
Morales-Fernández, Laura
Arriola-Villalobos, Pedro
de las Heras, Beatriz
Benítez-del-Castillo, José Manuel
Guzmán, Manuel
Millar, Thomas
Herrero-Vanrell, Rocío
Molina-Martínez, Irene T.
author_facet Vicario-de-la-Torre, Marta
Caballo-González, María
Vico, Eva
Morales-Fernández, Laura
Arriola-Villalobos, Pedro
de las Heras, Beatriz
Benítez-del-Castillo, José Manuel
Guzmán, Manuel
Millar, Thomas
Herrero-Vanrell, Rocío
Molina-Martínez, Irene T.
author_sort Vicario-de-la-Torre, Marta
collection PubMed
description Dry eye is commonly treated with artificial tears; however, developing artificial tears similar to natural tears is difficult due to the complex nature of tears. We characterized and evaluated a novel artificial tear formulation with components similar to the lipid and aqueous constituents of natural tears. Nano-liposomes, composed in part of phosphatidylcholine, were dispersed in an aqueous solution of bioadhesive sodium hyaluronate. Liposome size, zeta potential, and physicochemical properties of the fresh and stored (4 °C) liposomal formulation were analyzed. In vitro tolerance was tested using human corneal and conjunctival cell lines by exposures of 15 min to 4 h. The tolerance of the liposomal formulation was evaluated in animals (rabbits). The average liposome size was 186.3 ± 7.0 nm, and the zeta potential was negative. The osmolarity of the formulation was 198.6 ± 1.7 mOsm, with a surface tension of 36.5 ± 0.4 mN/m and viscosity of 3.05 ± 0.02 mPa·s. Viability values in the human corneal and conjunctival cell lines were always >80%, even after liposomal formulation storage for 8 weeks. Discomfort and clinical signs after instillation in rabbit eyes were absent. The new formulation, based on phosphatidylcholine-liposomes dispersed in sodium hyaluronate has suitable components and characteristics, including high in vitro cell viability and good in vivo tolerance, to serve as a tear substitute.
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spelling pubmed-64152762019-04-02 Novel Nano-Liposome Formulation for Dry Eyes with Components Similar to the Preocular Tear Film Vicario-de-la-Torre, Marta Caballo-González, María Vico, Eva Morales-Fernández, Laura Arriola-Villalobos, Pedro de las Heras, Beatriz Benítez-del-Castillo, José Manuel Guzmán, Manuel Millar, Thomas Herrero-Vanrell, Rocío Molina-Martínez, Irene T. Polymers (Basel) Article Dry eye is commonly treated with artificial tears; however, developing artificial tears similar to natural tears is difficult due to the complex nature of tears. We characterized and evaluated a novel artificial tear formulation with components similar to the lipid and aqueous constituents of natural tears. Nano-liposomes, composed in part of phosphatidylcholine, were dispersed in an aqueous solution of bioadhesive sodium hyaluronate. Liposome size, zeta potential, and physicochemical properties of the fresh and stored (4 °C) liposomal formulation were analyzed. In vitro tolerance was tested using human corneal and conjunctival cell lines by exposures of 15 min to 4 h. The tolerance of the liposomal formulation was evaluated in animals (rabbits). The average liposome size was 186.3 ± 7.0 nm, and the zeta potential was negative. The osmolarity of the formulation was 198.6 ± 1.7 mOsm, with a surface tension of 36.5 ± 0.4 mN/m and viscosity of 3.05 ± 0.02 mPa·s. Viability values in the human corneal and conjunctival cell lines were always >80%, even after liposomal formulation storage for 8 weeks. Discomfort and clinical signs after instillation in rabbit eyes were absent. The new formulation, based on phosphatidylcholine-liposomes dispersed in sodium hyaluronate has suitable components and characteristics, including high in vitro cell viability and good in vivo tolerance, to serve as a tear substitute. MDPI 2018-04-11 /pmc/articles/PMC6415276/ /pubmed/30966460 http://dx.doi.org/10.3390/polym10040425 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Vicario-de-la-Torre, Marta
Caballo-González, María
Vico, Eva
Morales-Fernández, Laura
Arriola-Villalobos, Pedro
de las Heras, Beatriz
Benítez-del-Castillo, José Manuel
Guzmán, Manuel
Millar, Thomas
Herrero-Vanrell, Rocío
Molina-Martínez, Irene T.
Novel Nano-Liposome Formulation for Dry Eyes with Components Similar to the Preocular Tear Film
title Novel Nano-Liposome Formulation for Dry Eyes with Components Similar to the Preocular Tear Film
title_full Novel Nano-Liposome Formulation for Dry Eyes with Components Similar to the Preocular Tear Film
title_fullStr Novel Nano-Liposome Formulation for Dry Eyes with Components Similar to the Preocular Tear Film
title_full_unstemmed Novel Nano-Liposome Formulation for Dry Eyes with Components Similar to the Preocular Tear Film
title_short Novel Nano-Liposome Formulation for Dry Eyes with Components Similar to the Preocular Tear Film
title_sort novel nano-liposome formulation for dry eyes with components similar to the preocular tear film
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6415276/
https://www.ncbi.nlm.nih.gov/pubmed/30966460
http://dx.doi.org/10.3390/polym10040425
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