Solid lipid nanoparticles promote skin hydration via stratum corneum occlusion, which prevents water loss by evaporation, and via the reinforcement of the skin's lipid-film barrier, which occurs through the adhesion of the nanoparticles to the stratum corneum. The efficacy of both phenomena correlates with lower nanoparticle size and the increased skin permeation of loaded compounds. The so-called Polysorbate Sorbitan Phase-Inversion Temperature method has, therefore, been optimized in this experimental work, in order to engineer ultrasmall solid-lipid nanoparticles that were then loaded with & alpha;-tocopherol, as the anti-age ingredient for cosmetic application. Ultrasmall solid-lipid nanoparticles have been proven to be able to favor the skin absorption of loaded compounds via the aforementioned mechanisms.

Ultrasmall Solid-Lipid Nanoparticles via the Polysorbate Sorbitan Phase-Inversion Temperature Technique: A Promising Vehicle for Antioxidant Delivery into the Skin

Dianzani, Chiara;Muntoni, Elisabetta;Argenziano, Monica;Capucchio, Maria Teresa;Valsania, Maria Carmen;Bozza, Annalisa;Garelli, Sara;Scorziello, Franco;Battaglia, Luigi
2023-01-01

Abstract

Solid lipid nanoparticles promote skin hydration via stratum corneum occlusion, which prevents water loss by evaporation, and via the reinforcement of the skin's lipid-film barrier, which occurs through the adhesion of the nanoparticles to the stratum corneum. The efficacy of both phenomena correlates with lower nanoparticle size and the increased skin permeation of loaded compounds. The so-called Polysorbate Sorbitan Phase-Inversion Temperature method has, therefore, been optimized in this experimental work, in order to engineer ultrasmall solid-lipid nanoparticles that were then loaded with & alpha;-tocopherol, as the anti-age ingredient for cosmetic application. Ultrasmall solid-lipid nanoparticles have been proven to be able to favor the skin absorption of loaded compounds via the aforementioned mechanisms.
2023
Inglese
Esperti anonimi
15
7
1962
1978
17
anti-age; phase inversion; skin; solid lipid nanoparticles; ultrasmall
no
   Compagnia di San Paolo -Bando ex-post 2020 - "An Innovative Nanotechnology for Glioma Chemotherapy" - Cda 21/12/2021
   CA200180
   COMPAGNIA DI SAN PAOLO
   BATTAGLIA L.
1 – prodotto con file in versione Open Access (allegherò il file al passo 6 - Carica)
262
12
Della Sala, Francesca; Borzacchiello, Assunta; Dianzani, Chiara; Muntoni, Elisabetta; Argenziano, Monica; Capucchio, Maria Teresa; Valsania, Maria Car...espandi
info:eu-repo/semantics/article
open
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1937617
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