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In vivo Antiplasmodial Activity and GC-MS Analysis of Vernonia colorata (Willd) Drake Leaf

机译:紫叶锦鸡儿叶的体内抗血浆活性和GC-MS分析

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Aim: To analyse the phytochemical components using GC-MS technique and evaluate the antiplasmodial activity of crude extract and partitioned fractions of Vernonia colorata leaf. Study Design: Qualitative, gravimetric and Chromatographic methods of analysis were adopted for phytochemical analysis, while experimental design ( In vivo ) was used for antiplasmodial study. Place and Duration of Study: Department of chemistry and Biochemistry, Federal University of Technology Minna Niger State, Nigeria, between April 2014 to April 2015. Methodology: The crude extract and partitioned fractions were evaluated for their antiplasmodial activity in vivo against Plasmodium bergei at 200, 400 and 600 mg/kgbw using standard methods. The combined fractions obtained after column chromatography were analysed using GC-MS analysis. The antiplasmodial activity of V. colorata in mice infected with P. berghei showed effects of graded doses of the extract with dose dependent inhibition of parasitaemia with maximum effect at 600 mg/kg. The oral median lethal dose (LD50) in mice was also evaluated and estimated to be greater than 5000 mg/kg. GC-MS analysis was carried out on combined fractions (VC20) of V. colorata leaf. Results: The analysis showed major chemical constituents such as 9-octadecenoic acid (12.86%), 3, 11-tetradecadien-1-ol (19.90%), 13-docosenoic acid (13.86%) and 4-methyl-1-decene (24.07%). The antiplasmodial evaluation carried out in this research shows a considerable antiplasmodial activity of V. colorata.
机译:目的:利用气相色谱-质谱(GC-MS)技术分析植物化学成分,并评估粗叶紫草叶的粗提物和分离级分的抗血浆活性。研究设计:采用定性,重量分析和色谱分析方法进行植物化学分析,而实验设计(体内)用于抗疟原虫研究。研究的地点和持续时间:2014年4月至2015年4月,在尼日利亚米纳尼日尔州联邦技术大学化学与生物化学系。方法:在200℃下对粗提物和分配的级分进行了体内抗伯氏疟原虫的抗血浆活性的评估。 ,使用标准方法测定400和600 mg / kgbw。使用GC-MS分析法分析柱色谱法后获得的合并的级分。在感染伯氏疟原虫的小鼠中,V。colorata的抗疟原虫活性显示出分级剂量的提取物具有对寄生虫血症的剂量依赖性抑制作用,最大作用为600 mg / kg。还评估了小鼠的口服中值致死剂量(LD 50 ),估计其大于5000 mg / kg。对彩叶叶片的合并级分(VC 20 )进行了GC-MS分析。结果:分析显示主要化学成分包括9-十八碳烯酸(12.86%),3,11-十四碳烯-1-醇(19.90%),13-二十二碳酸(13.86%)和4-甲基-1-癸烯( 24.07%)。在这项研究中进行的抗疟原虫评估显示,V。colorata具有相当大的抗疟原虫活性。

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