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Engineering natural active ingredients / Laurie Verzeaux in PERSONAL CARE EUROPE, Vol. 12, N° 5 (11/2018)
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Titre : Engineering natural active ingredients Type de document : texte imprimé Auteurs : Laurie Verzeaux, Auteur ; C. Chauprade, Auteur ; C. Soulié, Auteur ; D. Laporte, Auteur ; Solen Le Davadic, Auteur ; David Boudier, Auteur ; Brigitte Closs, Auteur Année de publication : 2018 Article en page(s) : p. 39-41 Note générale : Bibliogr. Langues : Anglais (eng) Catégories : Biomolécules actives
Ingrédients cosmétiques
Peau -- Soins et hygiène
Produits naturelsIndex. décimale : 668.5 Parfums et cosmétiques Résumé : Silab creates and manufactures efficacyproven active ingredients from natural raw materials. As efficacy, safety and stability are the hallmarks of each Silab development, all the inputs are controlled from the R&D to the manufacture in situ. To meet these requirements, an essential step, settled in Silab's DNA, is the mastery of nature combined with a perfect in-house control of the extraction and purification process inspired by agro-food technologies. With a 30-year experience, the company has thus developed a solid expertise in enzymatic bioengineering and owns an enzymatic toolbox to isolate novel molecular structures from natural raw materials. Silab's expertise was illustrated through the example of Recoverine®, an eco-designed active ingredient that is capable of stimulating epidermal renewal to ensure a functional and effective cutaneous barrier.
Note de contenu : - Concept inspired by the cell wall architecture
- The raw material requirements
- A special attention paid to the raw material supply
- A mastered enzymatic engineering
- A natural active ingredient with biological activities
- Fig. 1 : schematic representation of cell wall architecture. a. Role of the cadherin in human cell wall architecture. b. Role of the pectin in plant cell wall architecture
- Fig. 2 : Four checkpoints of the botanical analysis of the chestnut
- Fig. 3 : Photographs of the selected raw material, the chestnut. a. Chestnut land, in Correze, France. b. Chestnut in their bug. c. Chestnut local producer
- Fig. 4 : Schematic representation of the enzymatic hydrolysis process
- Fig. 5 : Mechanisms regulating cohesion and desquamationEn ligne : https://drive.google.com/file/d/10b1VvJGaTiiGca_VAikMqyM8UByhx5pt/view?usp=drive [...] Format de la ressource électronique : Permalink : https://e-campus.itech.fr/pmb/opac_css/index.php?lvl=notice_display&id=31278
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