The objective of this study was to evaluate the usefulness of a hydroalcoholic extract from Galinsoga parviflora herb (GP) in some aspects of the endothelial cell function necessary for anti-inflammatory activity and wound healing and relate these to the GP phytochemical profile. This study demonstrated that the GP extract caused a dose-dependent reduction of IL-6 secretion on IL-1β-stimulated endothelial cells. The IL-6 release was decreased to 33% ± 9% while this did not influence the IL-6 secretion without stimulation. Additionally, the GP extract exhibited an anti-hyaluronidase activity (IC(50) = 0.47 mg/mL), which was evidently stronger than the positive control kaempferol (IC(50) = 0.78 mg/mL) as well as a moderate and concentration-dependent, antioxidant activity. The results of the scratch assay showed that exposure of the endothelial cells to GP induced complete healing of the damage after 12 h of the study. The phytochemical profile of the extract was studied by using spectrophotometric (total amount of polyphenols and flavonoids) and UPLC (phenolic acids) methods. The main compound in the GP extract was a chlorogenic acid (2.00 ± 0.01 mg/g by UPLC). The total content of polyphenols was 98.30 ± 0.14 mg of chlorogenic acid equivalent/g of the dry herb and content of flavonoids amounted to 6.15 ± 0.41 mg quercetin equivalent/g of the dry herb. Moreover, the presence of flavonoids in G. parviflora was provided after their isolation and identification by spectroscopic methods. In conclusion, it demonstrated that application of GP in the treatment of skin lesions gives possibility of wound healing based on antioxidant, anti-inflammatory, and hyaluronidase-inhibiting activities of G. parviflora herb extract.
Anti-inflammatory Activity and Phytochemical Profile of Galinsoga Parviflora Cav.
Galinsoga Parviflora Cav.的抗炎活性和植物化学成分分析
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作者:StudziÅska-Sroka Elżbieta, Dudek-Makuch Marlena, Chanaj-Kaczmarek Justyna, Czepulis Natasza, Korybalska Katarzyna, Rutkowski RafaÅ, Åuczak Joanna, Grabowska Karolina, Bylka WiesÅawa, Witowski Janusz
| 期刊: | Molecules | 影响因子: | 4.600 |
| 时间: | 2018 | 起止号: | 2018 Aug 24; 23(9):2133 |
| doi: | 10.3390/molecules23092133 | 研究方向: | 炎症/感染 |
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