Anti-inflammatory and Anti-bacterial Activities of Artemisia iwayomogi Kitamura Extract Fractions

S. Sin, Won Min Jeong, Y. Kil, Dong Yeol Lee, Sang Gon Kim, Young-Min Goo
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引用次数: 3

Abstract

This study investigated the anti-bacterial and anti-inflammatory activities of Artemisia iwayomogi Kitamura for medical and food additive applications. A 70% methanol extract of A. iwayomogi Kitam. was fractionated with a series of solvents in order of increasing polarity; these fractionated extracts showed high 2,2-azino-bis (3-ethylbenzothiazoline-6-sulfonic acid) diammonium salt (ABTS) scavenging activity in the ethyl acetate fractions and high 2,2-diphenyl-1-picrylhydrazyl (DPPH) radical scavenging activity in both the ethyl acetate and chloroform fractions. Levels of total phenolics and flavonoids were highest in the ethyl acetate fraction extracts. Eight bacteria were then treated with the A. iwayomogi Kitam. extract fractions and most showed similar or lower levels of anti-bacterial activity when compared to the control group, except for Staphylococcus aureus. In addition, the anti-oxidant activities of the ethyl acetate fractions of the A. iwayomogi Kitam. extract were higher than those of the other fractions. To confirm the anti-inflammatory activity of the extract fractions, we applied them to RAW 264.7 cells using LPS, and the results indicate that an ethyl acetate fraction at 250 μg/ml concentration inhibits nitric oxide production. This study demonstrates that an ethyl acetate fraction of A. iwayomogi Kitam. extract inhibits bacterial and inflammatory activities and could be useful as a potential source of bioactive compounds.
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北村艾蒿提取物的抗炎抑菌活性研究
本研究考察了北村石柳蒿在医疗和食品添加剂中的抗菌和抗炎活性。一种70%甲醇提取物。用一系列溶剂按极性递增的顺序进行分馏;这些萃取物在乙酸乙酯组分中具有较高的2,2-氮基-双(3-乙基苯并噻唑-6-磺酸)二铵盐(ABTS)清除活性,在乙酸乙酯和氯仿组分中具有较高的2,2-二苯基-1-苦味肼(DPPH)自由基清除活性。总酚类物质和总黄酮含量以乙酸乙酯部位最高。然后用A. iwayomogi Kitam处理8种细菌。与对照组相比,大多数提取物的抑菌活性水平相似或更低,但金黄色葡萄球菌除外。此外,还研究了石竹乙酸乙酯部位的抗氧化活性。提取物含量高于其他馏分。为了证实提取部位的抗炎活性,我们使用LPS将其应用于RAW 264.7细胞,结果表明250 μg/ml浓度的乙酸乙酯部位抑制一氧化氮的产生。本研究证明了木藤的乙酸乙酯部分。提取物可抑制细菌和炎症活动,可作为生物活性化合物的潜在来源。
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