Dual Functionalization of Hyaluronan Dermal Fillers with Vitamin B3: Efficient Combination of Bio-Stimulation Properties with Hydrogel System Resilience Enhancement.

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ID Serval
serval:BIB_FD4B99A51113
Type
Article: article d'un périodique ou d'un magazine.
Collection
Publications
Institution
Titre
Dual Functionalization of Hyaluronan Dermal Fillers with Vitamin B3: Efficient Combination of Bio-Stimulation Properties with Hydrogel System Resilience Enhancement.
Périodique
Gels
Auteur⸱e⸱s
Porcello A., Chemali M., Marques C., Scaletta C., Lourenço K., Abdel-Sayed P., Raffoul W., Hirt-Burri N., Applegate L.A., Laurent A.
ISSN
2310-2861 (Electronic)
ISSN-L
2310-2861
Statut éditorial
Publié
Date de publication
24/05/2024
Peer-reviewed
Oui
Volume
10
Numéro
6
Langue
anglais
Notes
Publication types: Journal Article
Publication Status: epublish
Résumé
Hyaluronic acid (HA) hydrogels are commonly used for facial dermal filling and for alternative medical aesthetic purposes. High diversity exists in commercial formulations, notably for the optimization of finished product stability, functionality, and performance. Polyvalent ingredients such as calcium hydroxylapatite (CaHA) or vitamin B3 (niacinamide) are notably used as bio-stimulants to improve skin quality attributes at the administration site. The aim of the present study was to perform multi-parametric characterization of two novel cross-linked dermal filler formulas (HAR-1 "Instant Refine" and HAR-3 "Maxi Lift") for elucidation of the various functional impacts of vitamin B3 incorporation. Therefore, the HAR products were firstly comparatively characterized in terms of in vitro rheology, cohesivity, injectability, and resistance to chemical or enzymatic degradation (exposition to H <sub>2</sub> O <sub>2</sub> , AAPH, hyaluronidases, or xanthine oxidase). Then, the HAR products were assessed for cytocompatibility and in vitro bio-stimulation attributes in a primary dermal fibroblast model. The results showed enhanced resilience of the cohesive HAR hydrogels as compared to JUVÉDERM <sup>®</sup> VOLBELLA <sup>®</sup> and VOLUMA <sup>®</sup> reference products in a controlled degradation assay panel. Furthermore, significant induction of total collagen synthesis in primary dermal fibroblast cultures was recorded for HAR-1 and HAR-3, denoting intrinsic bio-stimulatory effects comparable or superior to those of the Radiesse <sup>®</sup> and Sculptra <sup>™</sup> reference products. Original results of high translational relevance were generated herein using robust and orthogonal experimental methodologies (hydrogel degradation, functional benchmarking) and study designs. Overall, the reported results confirmed the dual functionalization role of vitamin B3 in cross-linked HA dermal fillers, with a significant enhancement of hydrogel system stability attributes and the deployment of potent bio-stimulatory capacities.
Mots-clé
bio-stimulation, cohesivity attributes, cross-linked dermal fillers, dermal fibroblasts, functional characterization, hyaluronic acid, hydrogel system, niacinamide, skin collagen, viscoelasticity
Pubmed
Web of science
Open Access
Oui
Création de la notice
28/06/2024 11:02
Dernière modification de la notice
21/08/2024 6:24
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