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Study on the antibacterial, anti-inflammatory, antipyretic and antitussive effects of total flavonoids of Viola thianschanica Maxim. |
WANG Xue SHI Yuzhu SI Lijun ZHAO Lijuan MA Xueping HUANG Hua |
Xinjiang Institute of Materia Medica, Xinjiang Uygur Autonomous Region, Urumqi 830004, China |
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Abstract Objective To investigate the antibacterial, anti-inflammatory, antipyretic and antitussive effects of total flavonoids of Viola thianschanica Maxim.. Methods The doubling dilution method in vitro and establishment of mice infection model of Staphylococcus aureus, Escherichia coli in vivo were used to investigate the antibacterial effect of total flavonoids of Viola thianschanica Maxim. in vivo and in vitro. The model mice with auricle swelling and model mice with increased peritoneal capillary permeability were used to investigate the anti-inflammatory effects. The model rats with fever induced by dry yeast were adopted to investigate the antipyretic effect. The model rats with cough induced by ammonia water were adopted to investigate the antitussive effect. Results The minimal inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) values of total flavonoids of Viola thianschanica Maxim. against Staphylococcus aureus were 1.95, 3.90 mg/mL respectively, and the MIC and MBC values of total flavonoids of Viola thianschanica Maxim. against Escherichia coli were 0.49, 0.98 mg/mL respectively. The total flavonoids of Viola thianschanica Maxim. had a significant protective effect on the infection model of Staphylococcus aureus and Escherichia coli in mice at 0.32 g/kg, the protective rates were 30% and 40% respectively. The total flavonoids of Viola thianschanica Maxim. could significantly inhibit auricle swelling induced by xylene in mice at 0.16, 0.32 g/kg, and could significantly inhibit capillary inflammatory exudation induced by glacial acetic acid in mice at 0.08, 0.16, 0.32 g/kg. The total flavonoids of Viola thianschanica Maxim. had a good inhibitory effect on fever induced by dry yeast in rats at 0.14, 0.28 g/kg. The total flavonoids of Viola thianschanica Maxim. had a significant inhibitory effect on cough induced by ammonia water, the inhibitory rate was 57.7% at 0.32 g/kg. Conclusion The total flavonoids extract of Viola thianschanica Maxim. has good antibacterial, anti-inflammatory, antipyretic and antitussive pharmacological activities, its mechanisms remain to be futher studied.
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[1] 秦燕,吴亦晴,尹成乐,等.天山堇菜的化学成分研究[J].中草药,2014,45(21):3057-3061.
[2] 吴建芳,李炳奇,薛梅,等.天山堇菜总黄酮和多糖的微波提取与含量测定[J].时珍国医国药,2010,21(5):1105-1107.
[3] 马秀敏,周晓英,张立,等.天山堇菜提取物的体外抗菌实验[J].时珍国医国药,2004,15(8):470.
[4] 吴建芳.天山堇菜中主要化学成分的提取分离及抗氧化活性研究[D].石河子:石河子大学生命科学学院,2010.
[5] 陈奇.中药药理研究方法学[M].2版.北京:人民卫生出版社,2006:274-278,294-296,298-301.
[6] 王翰华,杨晓春,崔明超,等.浙贝母花与宁海白枇杷花配伍的抗炎及抗菌作用[J].中成药,2018,40(1):46-50.
[7] 田淑霞,李长艳,张婧娴,等.东北铁线莲不同提取部位的抗炎镇痛作用研究[J].世界中医药,2018,13(8):2019-2022.
[8] 冯将,魏玉好,余波,等.中药复方及拆方的抗炎、镇痛、抑菌活性评价[J].中国兽药杂志,2017,51(12):30-35.
[9] 余昕,朱烨,欧丽兰,等.鸭跖草抗炎活性部位筛选及抗炎机制[J].中成药,2018,40(1):46-50.
[10] 卢彩会,牟德华.姜黄油的抗炎镇痛及体外抗氧化活性[J].食品科学,2018,39(1):243-248.
[11] 郑斌,杨瑞,解燕.杜仲炭抗炎镇痛作用研究[J].安徽农业科学,2017,45(16):126-127,165.
[12] 赵磊,张雅莉,张晓蕾,等.鹿茸蛋白水解肽的抗炎及肠吸收机制[J].中国食品学报,2018,18(10):45-51.
[13] 郑浩锋,许志威,陈佳敏,等.大蒜素在氨水诱导的小鼠实验性咳嗽中的镇咳作用及机制[J].中山大学学报,2015, 36(3):821-826
[14] 丘振文,黄晓其,唐洪梅,等.金沸草散镇咳祛痰作用的研究[J].四川中医,2013,31(7):33-34.
[15] 郑仁礼,彭波,陈敏,等.复方护肺颗粒镇咳祛痰平喘的药效学作用[J].中国医院药学杂志,2012,32(8):610-612.
[16] 刘学伟,曹敏,刘树敏.龙胆碱的解热作用及机制研究[J].中国实验方剂学杂志,2011,17(24):128-131.
[17] 苏春萌,康嘉熙,罗阳.柴胡注射液解热作用的谱-效关系研究[J].中国药房,2016,27(10):1340-1342.
[18] 闫婕,卫莹芳,龙飞,等.马尔康柴胡不同药用部位解热、保肝作用与急性毒性研究[J].世界科学技术-中医药现代化,2016,18(8):1368-1373.
[19] 马晓静,王岚,殷小杰,等.三黄泻心汤“炮制配伍”解热优势方药效及其作用机制研究[J].中国药物警戒,2016, 13(8):449-451.
[20] 王磊,李跟旺.广藿香抗菌消炎调节免疫作用的最新研究[J].西部中医药,2018,31(2):138-140.
[21] 李凤玲.羊耳菊水提物对肺炎克雷伯菌所致重症肺炎大鼠的抗炎效果及机制[J].世界中医药,2017,12(10):2438-2442.
[22] 吴超.复方大青颗粒解热抗炎作用的实验研究[J].浙江临床医学,2017,19(6):1046-1047.
[23] 许律捷,姜雯,庞晓丛,等.复方一枝蒿抗流感有效成分的网络药理学研究[J].药学学报,2017,52(5):745-752.
[24] 王雪,姚华,王林林,等.天山堇菜提取物体内外抗流感病毒作用的初步研究[J].时珍国医国药,2013,24(2):382-383. |
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