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Published on: January 8, 2016
Kinetics of benzophenone-3 release from clay minerals or organosilicates for sun protection formulation
Saddam Charaabi1, Samar Issa2, Anne-Marie Pensé-Lhéritier3
1Ecole de Biologie Industrielle - EBI, UPR EBInnov®, 49 Avenue des Genottes, CS90009, 95895 Cergy-Pontoise, France; Small Molecules for Biological Targets Team, Centre de recherche en cancérologie de Lyon, Centre Léon Bérard, CNRS 5286, INSERM 1052, Université Claude Bernard Lyon 1, Univ Lyon, 8 avenue Rockefeller, 69373 Lyon, France.
Abstract:
In this study, we evaluated the ability of three clay minerals and clay-like adsorbents, namely lipophilic organosilicates (OSL), LAPONITE® and montmorillonite (MMT), to extend the duration and released amount of UV filter. With only 4 % of benzophenone-3 (BZ-3), it was possible to obtain new sunscreen formulations stabilized by intercalating BZ-3 within the lamellar structures of the three adsorbents. The kinetics of BZ-3 release was studied through a membrane-free method in sink conditions using four mathematical kinetic models. The kinetics demonstrated that BZ-3 was released from the three adsorbents in a continuous and homogeneous way when powders of BZ-3 and OSL, LAPONITE® or MMT were combined at a similar dosage. We then focused on the effects of adsorbed BZ-3 on OSL particles. The sun protection evaluation tests suggested that the formulation using BZ-3 and OSL was executed accurately and efficiently. The F2 (OSL-BZ-3) showed the most effective broad-spectrum formulation with a higher λc (371) and UVA/UVB ratio (0.57) comparatively to F1 (with only 4% BZ3). Rheological analysis of F2 (OSL-BZ3) showed controlled viscosity, efficient spreadability, and enhanced structural integrity, which are key for uniform UV protection, stability, and consumer acceptability. The OSL-BZ-3 formulation provided an increased protection range and improved sunscreen photostability with respect to current regulations.
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