| Literature DB >> 26393543 |
Qing Liu1, CheongTaek Kim2, Yang Hee Jo3, Seon Beom Kim4, Bang Yeon Hwang5, Mi Kyeong Lee6.
Abstract
Resveratrol (1), a naturally occurring stilbene compound, has been suggested as a potential whitening agent with strong inhibitory activity on melanin synthesis. However, the use of resveratrol in cosmetics has been limited due to its chemical instability and poor bioavailability. Therefore, resveratrol derivatives were prepared to improve bioavailability and anti-melanogenesis activity. Nine resveratrol derivatives including five alkyl ether derivatives with C₂H₅, C₄H₉, C₅H11, C₆H13, and C₈H17 (2a-2e) and four ester derivatives with CH₃, CH=C(CH₃)₂, CH(C₂H₅)C₄H₉, C₇H15 (3a-3d) were newly synthesized and their effect on melanin synthesis were assessed. All the synthetic derivatives efficiently reduced the melanin content in α-MSH stimulated B16F10 melanoma cells. Further investigation showed that the inhibitory effect of 2a on melanin synthesis was achieved not by the inhibition of tyrosinase activity but by the inhibition of melanogenic enzyme expressions such as tyrosinase and tyrosinase-related protein (TRP)-1. Our synthetic resveratrol derivatives have more lipophilic properties than resveratrol by the addition of alkyl or acyl chains to free hydroxyl moiety of resveratrol; thus, they are expected to show better bioavailability in skin application. Therefore, we suggest that our synthetic resveratrol derivatives might be promising candidates for better practical application to skin-whitening cosmetics.Entities:
Keywords: melanin; resveratrol derivatives; tyrosinase; tyrosinase-related protein (TRP)-1
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Year: 2015 PMID: 26393543 PMCID: PMC6332419 DOI: 10.3390/molecules200916933
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1Synthesis of resveratrol ether derivatives 2a–e.
Scheme 2Synthesis of resveratrol ester derivatives 3a–d.
Figure 1Chemical structure of resveratrol (1) and its derivatives (2a–e and 3a–d).
Figure 2Effects of resveratrol derivatives on (A) melanin content and (B) cell viability in B16F10 melanoma cells. NC: vehicle treated normal control; PC: α-MSH stimulated positive control. * p < 0.05 compared with PC group.
Figure 3Effects of resveratrol derivatives (100 µg/mL) on tyrosinase activity. NC: vehicle treated normal control. * p < 0.05 compared with NC group.
Figure 4Effect of resveratrol derivative 2a on the expression of tyrosinase and TRP-1 in B16F10 melanoma cells. NC: vehicle treated normal control; PC: α-MSH stimulated positive control.