Evaluation of an Efficient and Skin-Adherent Semisolid Sunscreen Nanoformulation

Author:

Frank Luiza Abrahão,Gazzi Rafaela Pletsch,Pohlmann Adriana RaffinORCID,Guterres Silvia Stanisçuaski,Contri Renata Vidor

Abstract

<b><i>Introduction:</i></b> Sunscreens are substances applied on the skin surface to protect the skin from the harmful effects of UV light. Nanoparticles can increase the retention time of the sunscreen on the skin surface and its efficacy, by acting as physical barriers. The present investigation aimed to evaluate the influence of the chitosan coating of benzophenone-3-loaded lipid-core nanocapsules (CH-LCN) on the skin adhesion and photoprotective effect of the sunscreen. <b><i>Methods:</i></b> CH-LNC were obtained by the interfacial deposition of preformed polymer. A suitable semisolid formulation was obtained by using hydroxyethyl cellulose as the gel-forming polymer. Skin adhesion experiments were performed in vitro by applying the formulation on porcine skin and keeping it under water at 32 °C for up to 60 min. Photoprotective effect was analyzed in vitro by the capacity of the formulations to protect a photo unstable substance (resveratrol) from degradation under UV light. <b><i>Results:</i></b> CH-LNC presented size of around 150 nm, with low polydispersity, positive zeta potential, due to chitosan, and benzophenone-3 encapsulation efficiency of close to 100% (3 mg/mL). The proposed gel presented suitable consistence and pH for skin application and benzophenone-3 concentration of around 3 mg/g. Although coated and uncoated lipid-core nanocapsules increased benzophenone-3 skin adhesion after 10 min of water immersion, only the nanoparticles coated with chitosan were able to do so after 60 min. The chitosan coating of the nanocapsules increased the photoprotection of the sunscreen under UVA and UVB light after 60 min of exposure, probably due to the film-forming properties of chitosan. <b><i>Conclusion:</i></b> The chitosan coating of CH-LCN increased the skin adhesion and the photoprotective effect of the sunscreen.

Publisher

S. Karger AG

Subject

Dermatology,Pharmacology,Physiology,General Medicine

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Use of nanotechnology applied to sunscreens: Technological prospection based on patents;Journal of Drug Delivery Science and Technology;2024-01

2. Exploring the potential of the nano-based sunscreens and antioxidants for preventing and treating skin photoaging;Chemosphere;2024-01

3. Skin Care Nanocosmetics;Cosmetic Products and Industry - New Advances and Applications;2023-11-02

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