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Cytotoxicity and Anti - Herpes Activity of Selected Medicinal Plants Cited for Management of HIV Conditions in Kakamega County – Kenya

机译:肯尼亚卡卡梅加县被选为HIV感染管理用药的部分药用植物的细胞毒性和抗疱疹活性

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Aim: To determine safety and anti-herpes activity of selected medicinal plants cited by Community Health Workers in Mukhwa sub-location, Bukaya location in Kakamega County, Kenya. Study Design: Ethno-medical interview for selection of medicinal plants and In-vitro experiment for determination of safety and anti-herpes activity. Methodology: Eight medicinal plants were selected for safety and determination of anti-herpes activity of water extracts using Vero cell and Human herpes Virus type 1. The metabolism of 3 – (4, 5-Dimethylthiazole -2-y) -2, 5-diphenyltetra-zolium bromide (MTT) was used for cytotoxicity and different levels of extract antiviral experiments. End point titration technique (EPTT) was used for virus quantification and antiviral screening test. Place and Duration of the Study: Plant samples were collected in September 2013 in Mukhwa sub-location, the processing and biological experiments were carried out between March 2014 and October 2015 at the center of traditional medicine and drug research of Kenya Medical Research Institute, Nairobi. Results: Safety profile: Tithonia diversifolia (Whole root) gave maximum nontoxic extract concentration (MNC) at 20 μg/mL, extract concentration killing 50% of cells (CC50) was 460 μg/mL. Schkuhria pinnata (Leaves); MNC ?20 μg/mL, CC50 90 μg/mL. Entada abyssinica (Stem bark); MNC 20 μg/mL, CC50 50 >500 μg/mL. Croton macrostachyus (Stem bark); MNC 40 μg/mL, CC50 >500 μg/mL. Vernonia adoensis (Whole root); MNC 20 μg/mL, CC50 470 μg/mL. Plumeria alba (Leaves); MNC ?20 μg/mL, CC50 120 μg/mL. Caesalpinia decapetala (Whole root); MNC 20 μg/mL, CC50 500 μg/mL. Anti-herpes activity: The best anti-herpes activity was obtained from G. buchanii (Stem bark), giving an extract concentration inhibiting 50% of virus activity (IC50) at 20 μg/mL) and C. decapetala (Whole root) giving IC50 at 80 μg/mL. Therapeutic index of G. buchanii was ? 25 and that of C. decapetala was ? 6. Conclusion: Majority of the medicinal plants selected for anti-herpes activity have narrow none-toxic limits. Of all the selected medicinal plants , G. buchananii and C. decapetala are the most promising for selective anti-herpes activity.
机译:目的:确定肯尼亚卡卡梅加县布卡亚地区穆赫瓦(Mukhwa)子地区社区卫生工作者引用的精选药用植物的安全性和抗疱疹活性。研究设计:选择药用植物的民族医学访谈和确定安全性和抗疱疹活性的体外实验。方法:选择八种药用植物用于安全性和使用1型Vero细胞和人类疱疹病毒测定水提取物的抗疱疹活性。3 –(4,5-Dimethylthiazole -2-y)-2,5-的代谢二苯基溴化四氮唑(MTT)用于细胞毒性和不同水平的提取物抗病毒实验。终点滴定技术(EPTT)用于病毒定量和抗病毒筛选测试。研究的地点和持续时间:2013年9月在Mukhwa子地点采集了植物样品,于2014年3月至2015年10月在内罗毕肯尼亚医学研究所的传统医学和药物研究中心进行了加工和生物学实验。结果:安全性概况:广角铁(Ththonia diversifolia)(全根)的最大无毒提取物浓度(MNC)为20μg/ mL,杀死50%细胞(CC 50 )的提​​取物浓度为460μg/ mL。 Schkuhria pinnata(叶); MNC为20μg/ mL,CC 50 为90μg/ mL。 Entada abyssinica(茎皮); MNC 20μg/ mL,CC 50 50 50 50 470μg/ mL。鸡蛋花(叶子); MNC≤20μg/ mL,CC 50 120μg/ mL。凯撒(全根); MNC 20μg/ mL,CC 50 500μg/ mL。抗疱疹活性:最佳的抗疱疹活性来自布氏假丝酵母(S.树皮),提取物浓度在20μg/ mL时可抑制50%的病毒活性(IC 50 ),并且C. decapetala(全根),IC 50 的浓度为80μg/ mL。布氏芽孢杆菌的治疗指数为? 25和C. decapetala的是? 6.结论:为抗疱疹活性而选择的大多数药用植物具有狭窄的无毒极限。在所有选定的药用植物中,布氏假单胞菌和十足假丝酵母对选择性抗疱疹活性最有希望。

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