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Recent Green Technologies in Natural Stilbenoids Production and Extraction: The Next Chapter in the Cosmetic Industry

期刊

COSMETICS
卷 9, 期 5, 页码 -

出版社

MDPI
DOI: 10.3390/cosmetics9050091

关键词

bioactivity; callus; cell suspension; green extraction; NADES; natural deep eutectic solvent; oxyresveratrol; piceatannol; resveratrol; stilbenoids

资金

  1. Mahidol Medical Scholars Program (MSP), Mahidol University, Thailand
  2. Faculty of Pharmacy, Mahidol University, Thailand

向作者/读者索取更多资源

Stilbenoids, well-known phytoalexins, have various bioactivities and are widely used in cosmetic products. However, the supply of stilbenoids from plants is limited and traditional organic solvent extraction methods are harmful to the environment and human health. Therefore, researchers are focusing on green technologies to achieve sustainable stilbenoids production.
Stilbenoids are well-known phytoalexins in the group of polyphenolic compounds. Because of their potent bioactivities, including antioxidant, antityrosinase, photoprotective, and antibacterial activities, stilbenoids are utilized as pharmaceutical active ingredient in cosmetic products. Thus, the demand for stilbenoids in the cosmetic industry is increasing. The main sources of stilbenoids are plants. Although plants are green and sustainable source materials, some of them do not allow a regular and constant supply due to seasonal and geographic reasons. Stilbenoids typically have been extracted by conventional organic solvent extraction, and then purified by separation techniques. This method is unfriendly to the environment and may deteriorate human health. Hence, the procedures called green technologies are focused on novel extraction methods and sustainable stilbenoids production by using biotechnology. In this review, the chemical structures together with the biosynthesis and current plant sources of resveratrol, oxyresveratrol, and piceatannol are described. Furthermore, recent natural deep eutectic solvents (NADES) for green extraction as well as plant cell cultures for the production of those stilbene compounds are updated.

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