Myricetin Nanofibers Enhanced Water Solubility and Skin Penetration for Increasing Antioxidant and Photoprotective Activities

Author:

Lin Tzu-Ching1,Yang Chun-Yin1,Wu Tzu-Hui2,Tseng Chih-Hua13456ORCID,Yen Feng-Lin34578

Affiliation:

1. School of Pharmacy, College of Pharmacy, Kaohsiung Medical University, Kaohsiung City 807, Taiwan

2. Department of Pharmacy and Master Program, Collage of Pharmacy and Health Care, Tajen University, Pingtung County 90741, Taiwan

3. Drug Development and Value Creation Research Center, Kaohsiung Medical University, Kaohsiung City 807, Taiwan

4. Department of Fragrance and Cosmetic Science, College of Pharmacy, Kaohsiung Medical University, Kaohsiung City 807, Taiwan

5. Department of Medical Research, Kaohsiung Medical University Hospital, Kaohsiung City 807, Taiwan

6. Department of Pharmacy, Kaohsiung Municipal Ta-Tung Hospital, Kaohsiung City 801, Taiwan

7. Institute of Biomedical Sciences, National Sun Yat-Sen University, Kaohsiung City 804, Taiwan

8. College of Professional Studies, National Pingtung University of Science and Technology, Pingtung County 912, Taiwan

Abstract

Excessive exposure to ultraviolet radiation (UV) can induce oxidative stress through the over-production of reactive oxygen species (ROS) on the skin. Myricetin (MYR), a natural flavonoid compound, significantly inhibited UV-induced keratinocyte damage; however, its bioavailability is limited by its poor water solubility and inefficient skin penetration ability, which subsequently influences its biological activity. The purpose of the study was to develop a myricetin nanofibers (MyNF) system of hydroxypropyl-β-cyclodextrin (HPBCD)/polyvinylpyrrolidone K120 (PVP)-loaded with MYR that would enhance the water solubility and skin penetration by changing the physicochemical characteristics of MYR, including reducing the particle size, increasing the specific surface area, and amorphous transformation. The results also revealed that the MyNF can reduce cytotoxicity in HaCaT keratinocytes when compared with MYR; additionally, MyNF had better antioxidant and photoprotective activity than raw MYR for the UVB-induced HaCaT keratinocytes damage model due to the MyNF increased water solubility and permeability. In conclusion, our results demonstrate that MyNF is a safe, photostable, and thermostable topical ingredient of antioxidant nanofibers to enhance the skin penetration of MYR and prevent UVB-induced skin damage.

Funder

Kaohsiung Medical University and National Kaohsiung University of Science and Technology

Publisher

MDPI AG

Subject

Pharmaceutical Science

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