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Phenylalanine Butyramide Is a New Cosmetic Ingredient with Soothing and Anti-Reddening Potential

Human skin is colonized by diverse commensal microbes, making up the skin microbiota (SM), contributing to skin integrity and homeostasis. Many of the beneficial effects aroused by the SM are exerted by microbial metabolites such as short-chain fatty acids (SCFAs), including butyric acid. The SCFAs...

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Autores principales: di Lorenzo, Ritamaria, Bernardi, Antonietta, Grumetto, Lucia, Sacchi, Antonia, Avagliano, Carmen, Coppola, Serena, de Giovanni di Santa Severina, Anna Fiorenza, Bruno, Cristina, Paparo, Lorella, Laneri, Sonia, Dini, Irene
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8586959/
https://www.ncbi.nlm.nih.gov/pubmed/34771020
http://dx.doi.org/10.3390/molecules26216611
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author di Lorenzo, Ritamaria
Bernardi, Antonietta
Grumetto, Lucia
Sacchi, Antonia
Avagliano, Carmen
Coppola, Serena
de Giovanni di Santa Severina, Anna Fiorenza
Bruno, Cristina
Paparo, Lorella
Laneri, Sonia
Dini, Irene
author_facet di Lorenzo, Ritamaria
Bernardi, Antonietta
Grumetto, Lucia
Sacchi, Antonia
Avagliano, Carmen
Coppola, Serena
de Giovanni di Santa Severina, Anna Fiorenza
Bruno, Cristina
Paparo, Lorella
Laneri, Sonia
Dini, Irene
author_sort di Lorenzo, Ritamaria
collection PubMed
description Human skin is colonized by diverse commensal microbes, making up the skin microbiota (SM), contributing to skin integrity and homeostasis. Many of the beneficial effects aroused by the SM are exerted by microbial metabolites such as short-chain fatty acids (SCFAs), including butyric acid. The SCFAs can be used in cosmetic formulations against skin diseases to protect SM by preserving and/or restoring their natural balance. Unpleasant sensorial properties and unfavorable physico-chemical properties of butyrate strongly limit its cosmetic use. In contrast, some butyrate derivatives, including phenylalanine butyramide (C(13)H(18)N(2)O(2), FBA), a solid form of butyric acid, are odorless while retaining the pharmacokinetic properties and safety profile of butyric acid. This study assessed the FBA’s permeation across the skin and its soothing and anti-reddening potential to estimate its cosmetic application. The dosage method used to estimate FBA’s levels was validated to be sure of analytical results. The FBA diffusion tests were estimated in vitro using a Franz-type vertical diffusion cell. The soothing action was evaluated in vivo by Colorimeter CL400, measuring the erythema index. The results suggest that the FBA represents an innovative way to exploit the benefits of butyric acid in the cosmetic fields since it cannot reach the bloodstream, is odorless, and has a significative soothing action (decrease the erythema index −15.7% after 30′, and −17.8% after 60′).
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spelling pubmed-85869592021-11-13 Phenylalanine Butyramide Is a New Cosmetic Ingredient with Soothing and Anti-Reddening Potential di Lorenzo, Ritamaria Bernardi, Antonietta Grumetto, Lucia Sacchi, Antonia Avagliano, Carmen Coppola, Serena de Giovanni di Santa Severina, Anna Fiorenza Bruno, Cristina Paparo, Lorella Laneri, Sonia Dini, Irene Molecules Article Human skin is colonized by diverse commensal microbes, making up the skin microbiota (SM), contributing to skin integrity and homeostasis. Many of the beneficial effects aroused by the SM are exerted by microbial metabolites such as short-chain fatty acids (SCFAs), including butyric acid. The SCFAs can be used in cosmetic formulations against skin diseases to protect SM by preserving and/or restoring their natural balance. Unpleasant sensorial properties and unfavorable physico-chemical properties of butyrate strongly limit its cosmetic use. In contrast, some butyrate derivatives, including phenylalanine butyramide (C(13)H(18)N(2)O(2), FBA), a solid form of butyric acid, are odorless while retaining the pharmacokinetic properties and safety profile of butyric acid. This study assessed the FBA’s permeation across the skin and its soothing and anti-reddening potential to estimate its cosmetic application. The dosage method used to estimate FBA’s levels was validated to be sure of analytical results. The FBA diffusion tests were estimated in vitro using a Franz-type vertical diffusion cell. The soothing action was evaluated in vivo by Colorimeter CL400, measuring the erythema index. The results suggest that the FBA represents an innovative way to exploit the benefits of butyric acid in the cosmetic fields since it cannot reach the bloodstream, is odorless, and has a significative soothing action (decrease the erythema index −15.7% after 30′, and −17.8% after 60′). MDPI 2021-10-31 /pmc/articles/PMC8586959/ /pubmed/34771020 http://dx.doi.org/10.3390/molecules26216611 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
di Lorenzo, Ritamaria
Bernardi, Antonietta
Grumetto, Lucia
Sacchi, Antonia
Avagliano, Carmen
Coppola, Serena
de Giovanni di Santa Severina, Anna Fiorenza
Bruno, Cristina
Paparo, Lorella
Laneri, Sonia
Dini, Irene
Phenylalanine Butyramide Is a New Cosmetic Ingredient with Soothing and Anti-Reddening Potential
title Phenylalanine Butyramide Is a New Cosmetic Ingredient with Soothing and Anti-Reddening Potential
title_full Phenylalanine Butyramide Is a New Cosmetic Ingredient with Soothing and Anti-Reddening Potential
title_fullStr Phenylalanine Butyramide Is a New Cosmetic Ingredient with Soothing and Anti-Reddening Potential
title_full_unstemmed Phenylalanine Butyramide Is a New Cosmetic Ingredient with Soothing and Anti-Reddening Potential
title_short Phenylalanine Butyramide Is a New Cosmetic Ingredient with Soothing and Anti-Reddening Potential
title_sort phenylalanine butyramide is a new cosmetic ingredient with soothing and anti-reddening potential
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8586959/
https://www.ncbi.nlm.nih.gov/pubmed/34771020
http://dx.doi.org/10.3390/molecules26216611
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