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High global antioxidant protection and stimulation of the collagen synthesis of new anti‐aging product containing an optimized active mix

OBJECTIVE: To assess the in vitro efficacy on antioxidant potential, protection against global oxidative stress, and effect on collagen neosynthesis of minimalist formula (Peptide‐C ampoules product) containing 10% natural vitamin C, rice and lupin bio‐peptides, hyaluronic acid, and Vichy volcanic m...

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Autores principales: Martín‐Martínez, Almudena, Sánchez‐Marzo, Noelia, Martínez‐Casanova, Diana, Abarquero‐Cerezo, Mercedes, Herranz‐López, Maria, Barrajón‐Catalán, Enrique, Matabuena‐Yzaguirre, Maria
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9788327/
https://www.ncbi.nlm.nih.gov/pubmed/35050544
http://dx.doi.org/10.1111/jocd.14703
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author Martín‐Martínez, Almudena
Sánchez‐Marzo, Noelia
Martínez‐Casanova, Diana
Abarquero‐Cerezo, Mercedes
Herranz‐López, Maria
Barrajón‐Catalán, Enrique
Matabuena‐Yzaguirre, Maria
author_facet Martín‐Martínez, Almudena
Sánchez‐Marzo, Noelia
Martínez‐Casanova, Diana
Abarquero‐Cerezo, Mercedes
Herranz‐López, Maria
Barrajón‐Catalán, Enrique
Matabuena‐Yzaguirre, Maria
author_sort Martín‐Martínez, Almudena
collection PubMed
description OBJECTIVE: To assess the in vitro efficacy on antioxidant potential, protection against global oxidative stress, and effect on collagen neosynthesis of minimalist formula (Peptide‐C ampoules product) containing 10% natural vitamin C, rice and lupin bio‐peptides, hyaluronic acid, and Vichy volcanic mineralizing water (active mix). METHODS: In‐tube quantitative tests (“in‐tube screening”) assessed global antioxidant properties, anti‐lipid peroxidation, anti‐protein glycosylation, and metalloproteinase inhibition (anti‐collagenase, anti‐elastase, and anti‐hyaluronidase activity) properties of the formula. Protection against oxidative stress was evaluated on human keratinocyte monolayer cultures, and collagen neosynthesis was quantified on fibroblast monolayer cultures treated with supernatants from product‐treated reconstructed human epidermis. RESULTS: Product (5% concentration) showed high antioxidant ability (blocking 99.0% oxidation), protection against oxidative stress damage (51.8% lipid peroxidation and 37.8% protein glycosylation decreases), and inhibition of hyaluronidase (21.9%), elastase (47.1%), and collagenase (61.8%). The protective effect was validated on human keratinocyte monolayer cultures in the presence of active mix (0.025%). Oxidative stress (ROS) was reduced by 99.0%, while global oxidative stress (RMS) induced by pollution, UVA radiation, and a combination of both factors was reduced by 48.94%, 8.7%, and 96.28%, respectively. The product increased collagen neosynthesis (11.21%) by cellular dialogue in fibroblasts incubated with product/mix‐treated‐RHE supernatants. CONCLUSION: The combination of ingredients in the product showed high global antioxidant capacity, as well as a protective effect against oxidative stress induced by UVA, pollution, or both combined factors and an ability to stimulate collagen neosynthesis in in vitro studies, which support the clinical efficacy of this product.
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spelling pubmed-97883272022-12-28 High global antioxidant protection and stimulation of the collagen synthesis of new anti‐aging product containing an optimized active mix Martín‐Martínez, Almudena Sánchez‐Marzo, Noelia Martínez‐Casanova, Diana Abarquero‐Cerezo, Mercedes Herranz‐López, Maria Barrajón‐Catalán, Enrique Matabuena‐Yzaguirre, Maria J Cosmet Dermatol Dermatologic Surgery Articles OBJECTIVE: To assess the in vitro efficacy on antioxidant potential, protection against global oxidative stress, and effect on collagen neosynthesis of minimalist formula (Peptide‐C ampoules product) containing 10% natural vitamin C, rice and lupin bio‐peptides, hyaluronic acid, and Vichy volcanic mineralizing water (active mix). METHODS: In‐tube quantitative tests (“in‐tube screening”) assessed global antioxidant properties, anti‐lipid peroxidation, anti‐protein glycosylation, and metalloproteinase inhibition (anti‐collagenase, anti‐elastase, and anti‐hyaluronidase activity) properties of the formula. Protection against oxidative stress was evaluated on human keratinocyte monolayer cultures, and collagen neosynthesis was quantified on fibroblast monolayer cultures treated with supernatants from product‐treated reconstructed human epidermis. RESULTS: Product (5% concentration) showed high antioxidant ability (blocking 99.0% oxidation), protection against oxidative stress damage (51.8% lipid peroxidation and 37.8% protein glycosylation decreases), and inhibition of hyaluronidase (21.9%), elastase (47.1%), and collagenase (61.8%). The protective effect was validated on human keratinocyte monolayer cultures in the presence of active mix (0.025%). Oxidative stress (ROS) was reduced by 99.0%, while global oxidative stress (RMS) induced by pollution, UVA radiation, and a combination of both factors was reduced by 48.94%, 8.7%, and 96.28%, respectively. The product increased collagen neosynthesis (11.21%) by cellular dialogue in fibroblasts incubated with product/mix‐treated‐RHE supernatants. CONCLUSION: The combination of ingredients in the product showed high global antioxidant capacity, as well as a protective effect against oxidative stress induced by UVA, pollution, or both combined factors and an ability to stimulate collagen neosynthesis in in vitro studies, which support the clinical efficacy of this product. John Wiley and Sons Inc. 2022-01-20 2022-09 /pmc/articles/PMC9788327/ /pubmed/35050544 http://dx.doi.org/10.1111/jocd.14703 Text en © 2022 L'Oreal España S.A. Journal of Cosmetic Dermatology published by Wiley Periodicals LLC. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Dermatologic Surgery Articles
Martín‐Martínez, Almudena
Sánchez‐Marzo, Noelia
Martínez‐Casanova, Diana
Abarquero‐Cerezo, Mercedes
Herranz‐López, Maria
Barrajón‐Catalán, Enrique
Matabuena‐Yzaguirre, Maria
High global antioxidant protection and stimulation of the collagen synthesis of new anti‐aging product containing an optimized active mix
title High global antioxidant protection and stimulation of the collagen synthesis of new anti‐aging product containing an optimized active mix
title_full High global antioxidant protection and stimulation of the collagen synthesis of new anti‐aging product containing an optimized active mix
title_fullStr High global antioxidant protection and stimulation of the collagen synthesis of new anti‐aging product containing an optimized active mix
title_full_unstemmed High global antioxidant protection and stimulation of the collagen synthesis of new anti‐aging product containing an optimized active mix
title_short High global antioxidant protection and stimulation of the collagen synthesis of new anti‐aging product containing an optimized active mix
title_sort high global antioxidant protection and stimulation of the collagen synthesis of new anti‐aging product containing an optimized active mix
topic Dermatologic Surgery Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9788327/
https://www.ncbi.nlm.nih.gov/pubmed/35050544
http://dx.doi.org/10.1111/jocd.14703
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