| Literature DB >> 30223806 |
Sa-Haeng Kang1, Yong-Deok Jeon2, Ji-Yoon Cha1, Sung-Woo Hwang1, Hoon-Yeon Lee1, Min Park1, Bo-Ri Lee1, Min-Kyoung Shin2, Su-Jeong Kim3, Sang-Min Shin3, Dae-Ki Kim4, Jong-Sik Jin5, Young-Mi Lee6.
Abstract
BACKGROUND: Euphorbia supina (ES) has been widely used in folk medicine owing to its antibacterial, hemostatic, and anti-inflammatory properties. The aim of this study was to evaluate the antioxidant and skin-whitening effects of a 70% ethanol extract of ES.Entities:
Keywords: DPPH; Euphorbia supina (ES); MITF; Melanogenesis; Tyrosinase; α-MSH
Mesh:
Substances:
Year: 2018 PMID: 30223806 PMCID: PMC6142622 DOI: 10.1186/s12906-018-2323-5
Source DB: PubMed Journal: BMC Complement Altern Med ISSN: 1472-6882 Impact factor: 3.659
Fig. 1Cell viability of the ES extract on the B16F10 cells. B16F10 cells were treated with various concentration of ES extract (8, 40, 200 μg/ml) for 24 h and the cell viability was measured by MTT assay. The absorbance was measured at 540 nm on a VersaMax microplate reader. Values represent the mean ± S.D. of triplicate experiments
Fig. 2Antioxidant activities of ES extract. a Scavenging effect of ES on DPPH radical (b) ABTS+ radical scavenging activity of the extract. The ES ethanol extract (ESEE) (8, 40, 200 μg/ml), ascorbic acid (20 μg/ml) were incubated with DPPH, ABTS+ solution, respectively. Results are represented as percentages of control, and the data represent mean ± S.D. for three separate experiments. Values are significantly different by comparison with control. *: p < 0.05, **: p < 0.01
Fig. 3Inhibitory effect of ES extract on mushroom tyrosinase activity, B16F10 melanin content and intracellular tyrosinase activity. a Different concentrations of the ES extract (8, 40, 200 μg/ml) or arbutin (10 mM) was incubated with the same units of mushroom tyrosinase. Following incubation, the amount of dopachrome produced was determined at 490 nm. b and c B16F10 melanoma cells were stimulated with α-MSH (100 nM) for 48 h, and then the melanin content or intracellular tyrosinase activity were measured after treatment with various concentrations of the ES extract (8, 40,200 μg/ml) or arbutin (10 mM) for another 24 h. Results are represented as percentages of control, and data are presented as mean ± S.D. for three separate experiments. Values are significantly different by comparison with control. *: p < 0.05, **: p < 0.01 α-MSH treatment alone
Fig. 4Effect of ES extract on melanogenesis-related proteins expression. a B16F10 cells were cultured with α-MSH (100 nM) for 24 h and then treated with various concentration of the ES extract (8, 40, 200 μg/ml) or arbutin (10 mM) for another 24 h. Then the content of cellular MITF, tyrosinase proteins were analyzed by western blotting assay. b Densitometry was normalized to the α-MSH group. Values are mean ± S.D. Data were analyzed by Student’s t-test. *: p < 0.05, **: p < 0.01 versus α-MSH treatment alone
Fig. 5GC-MS Chromatograms of the methanol extract ES