Cargando…

Positive Effects against UV-A Induced Damage and Oxidative Stress on an In Vitro Cell Model Using a Hyaluronic Acid Based Formulation Containing Amino Acids, Vitamins, and Minerals

Ultraviolet (UV) radiations are responsible for skin photoaging inducing alteration of the molecular and cellular pathways resulting in dryness and reduction of skin elasticity. In this study, we investigated, in vitro, the antiaging and antioxidant effects of hyaluronan formulations based hydrogel....

Descripción completa

Detalles Bibliográficos
Autores principales: Stellavato, Antonietta, Pirozzi, Anna Virginia Adriana, Donato, Stella, Scognamiglio, Ilaria, Reale, Sabrina, Di Pardo, Alba, Filosa, Stefania, Vassallo, Valentina, Bellia, Gilberto, De Rosa, Mario, Schiraldi, Chiara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6038662/
https://www.ncbi.nlm.nih.gov/pubmed/30046611
http://dx.doi.org/10.1155/2018/8481243
_version_ 1783338542672379904
author Stellavato, Antonietta
Pirozzi, Anna Virginia Adriana
Donato, Stella
Scognamiglio, Ilaria
Reale, Sabrina
Di Pardo, Alba
Filosa, Stefania
Vassallo, Valentina
Bellia, Gilberto
De Rosa, Mario
Schiraldi, Chiara
author_facet Stellavato, Antonietta
Pirozzi, Anna Virginia Adriana
Donato, Stella
Scognamiglio, Ilaria
Reale, Sabrina
Di Pardo, Alba
Filosa, Stefania
Vassallo, Valentina
Bellia, Gilberto
De Rosa, Mario
Schiraldi, Chiara
author_sort Stellavato, Antonietta
collection PubMed
description Ultraviolet (UV) radiations are responsible for skin photoaging inducing alteration of the molecular and cellular pathways resulting in dryness and reduction of skin elasticity. In this study, we investigated, in vitro, the antiaging and antioxidant effects of hyaluronan formulations based hydrogel. Skinkò E, an intradermic formulation composed of hyaluronic acid (HA), minerals, amino acids, and vitamins, was compared with the sole HA of the same size. For this purpose, HaCaT cells were subjected to UV-A radiations and H(2)O(2) exposure and then treated with growth medium (CTR) combined with M-HA or Skinkò E to evaluate their protective ability against stressful conditions. Cells reparation was evaluated using a scratch in vitro model and Time-Lapse Video Microscopy. A significant protective effect for Skinkò E was shown with respect to M-HA. In addition, Skinkò E increased cell reparation. Therefore, NF-kB, SOD-2, and HO-1 were significantly reduced at the transcriptional and protein level. Interestingly, γ-H2AX and protein damage assay confirmed the protection by hyaluronans tested against oxidative stress. G6pdΔ ES cell line, highly susceptible to oxidative stress, was used as a further cellular model to assess the antioxidant effect of Skinkò E. Western blotting analyses showed that the treatment with this new formulation exerts marked antioxidant action in cells exposed to UV-A and H(2)O(2). Thus, the protective and reparative properties of Skinkò E make it an interesting tool to treat skin aging.
format Online
Article
Text
id pubmed-6038662
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-60386622018-07-25 Positive Effects against UV-A Induced Damage and Oxidative Stress on an In Vitro Cell Model Using a Hyaluronic Acid Based Formulation Containing Amino Acids, Vitamins, and Minerals Stellavato, Antonietta Pirozzi, Anna Virginia Adriana Donato, Stella Scognamiglio, Ilaria Reale, Sabrina Di Pardo, Alba Filosa, Stefania Vassallo, Valentina Bellia, Gilberto De Rosa, Mario Schiraldi, Chiara Biomed Res Int Research Article Ultraviolet (UV) radiations are responsible for skin photoaging inducing alteration of the molecular and cellular pathways resulting in dryness and reduction of skin elasticity. In this study, we investigated, in vitro, the antiaging and antioxidant effects of hyaluronan formulations based hydrogel. Skinkò E, an intradermic formulation composed of hyaluronic acid (HA), minerals, amino acids, and vitamins, was compared with the sole HA of the same size. For this purpose, HaCaT cells were subjected to UV-A radiations and H(2)O(2) exposure and then treated with growth medium (CTR) combined with M-HA or Skinkò E to evaluate their protective ability against stressful conditions. Cells reparation was evaluated using a scratch in vitro model and Time-Lapse Video Microscopy. A significant protective effect for Skinkò E was shown with respect to M-HA. In addition, Skinkò E increased cell reparation. Therefore, NF-kB, SOD-2, and HO-1 were significantly reduced at the transcriptional and protein level. Interestingly, γ-H2AX and protein damage assay confirmed the protection by hyaluronans tested against oxidative stress. G6pdΔ ES cell line, highly susceptible to oxidative stress, was used as a further cellular model to assess the antioxidant effect of Skinkò E. Western blotting analyses showed that the treatment with this new formulation exerts marked antioxidant action in cells exposed to UV-A and H(2)O(2). Thus, the protective and reparative properties of Skinkò E make it an interesting tool to treat skin aging. Hindawi 2018-06-26 /pmc/articles/PMC6038662/ /pubmed/30046611 http://dx.doi.org/10.1155/2018/8481243 Text en Copyright © 2018 Antonietta Stellavato et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Stellavato, Antonietta
Pirozzi, Anna Virginia Adriana
Donato, Stella
Scognamiglio, Ilaria
Reale, Sabrina
Di Pardo, Alba
Filosa, Stefania
Vassallo, Valentina
Bellia, Gilberto
De Rosa, Mario
Schiraldi, Chiara
Positive Effects against UV-A Induced Damage and Oxidative Stress on an In Vitro Cell Model Using a Hyaluronic Acid Based Formulation Containing Amino Acids, Vitamins, and Minerals
title Positive Effects against UV-A Induced Damage and Oxidative Stress on an In Vitro Cell Model Using a Hyaluronic Acid Based Formulation Containing Amino Acids, Vitamins, and Minerals
title_full Positive Effects against UV-A Induced Damage and Oxidative Stress on an In Vitro Cell Model Using a Hyaluronic Acid Based Formulation Containing Amino Acids, Vitamins, and Minerals
title_fullStr Positive Effects against UV-A Induced Damage and Oxidative Stress on an In Vitro Cell Model Using a Hyaluronic Acid Based Formulation Containing Amino Acids, Vitamins, and Minerals
title_full_unstemmed Positive Effects against UV-A Induced Damage and Oxidative Stress on an In Vitro Cell Model Using a Hyaluronic Acid Based Formulation Containing Amino Acids, Vitamins, and Minerals
title_short Positive Effects against UV-A Induced Damage and Oxidative Stress on an In Vitro Cell Model Using a Hyaluronic Acid Based Formulation Containing Amino Acids, Vitamins, and Minerals
title_sort positive effects against uv-a induced damage and oxidative stress on an in vitro cell model using a hyaluronic acid based formulation containing amino acids, vitamins, and minerals
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6038662/
https://www.ncbi.nlm.nih.gov/pubmed/30046611
http://dx.doi.org/10.1155/2018/8481243
work_keys_str_mv AT stellavatoantonietta positiveeffectsagainstuvainduceddamageandoxidativestressonaninvitrocellmodelusingahyaluronicacidbasedformulationcontainingaminoacidsvitaminsandminerals
AT pirozziannavirginiaadriana positiveeffectsagainstuvainduceddamageandoxidativestressonaninvitrocellmodelusingahyaluronicacidbasedformulationcontainingaminoacidsvitaminsandminerals
AT donatostella positiveeffectsagainstuvainduceddamageandoxidativestressonaninvitrocellmodelusingahyaluronicacidbasedformulationcontainingaminoacidsvitaminsandminerals
AT scognamiglioilaria positiveeffectsagainstuvainduceddamageandoxidativestressonaninvitrocellmodelusingahyaluronicacidbasedformulationcontainingaminoacidsvitaminsandminerals
AT realesabrina positiveeffectsagainstuvainduceddamageandoxidativestressonaninvitrocellmodelusingahyaluronicacidbasedformulationcontainingaminoacidsvitaminsandminerals
AT dipardoalba positiveeffectsagainstuvainduceddamageandoxidativestressonaninvitrocellmodelusingahyaluronicacidbasedformulationcontainingaminoacidsvitaminsandminerals
AT filosastefania positiveeffectsagainstuvainduceddamageandoxidativestressonaninvitrocellmodelusingahyaluronicacidbasedformulationcontainingaminoacidsvitaminsandminerals
AT vassallovalentina positiveeffectsagainstuvainduceddamageandoxidativestressonaninvitrocellmodelusingahyaluronicacidbasedformulationcontainingaminoacidsvitaminsandminerals
AT belliagilberto positiveeffectsagainstuvainduceddamageandoxidativestressonaninvitrocellmodelusingahyaluronicacidbasedformulationcontainingaminoacidsvitaminsandminerals
AT derosamario positiveeffectsagainstuvainduceddamageandoxidativestressonaninvitrocellmodelusingahyaluronicacidbasedformulationcontainingaminoacidsvitaminsandminerals
AT schiraldichiara positiveeffectsagainstuvainduceddamageandoxidativestressonaninvitrocellmodelusingahyaluronicacidbasedformulationcontainingaminoacidsvitaminsandminerals