Phytochemical Profiling and Larval Control of Erythrina variegata Methanol Fraction against Malarial and Filarial Vector.

Advances in Preventive Medicine Pub Date : 2019-04-16 eCollection Date: 2019-01-01 DOI:10.1155/2019/2641959
Mathalaimuthu Baranitharan, Barbara Sawicka, Jayapal Gokulakrishnan
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引用次数: 13

Abstract

Erythrina variegata (E. variegata) bioactive chemical has been the potential to be utilized as a good, eco-friendly approach for the control of mosquito population. In the present investigation, methanol extract using insecticidal compounds isolated against mosquito larvae kill assay was carried out. Secondary metabolism was characterized by thin layer chromatography, column chromatography, Fourier transform-infrared spectroscopy, gas chromatography-mass spectral, and identification of compound. Mosquito immature third instar larval, Anopheles stephensi, and Culex quinquefasciatus have been exposed to different concentrations of 50-250 µg/ml. Totally, larvae were death rate 98.2% (significant value 0.001b) from methanol extract and it is significant toxicity against larvae of An. stephensi and Cx. quinquefasciatus with LC50/LC99 values were 157.69/339.55 µg/ml and 137.67/297.33 µg/ml, respectively. FT-IR analysis in the functional groups such as alcohol, amines, amides, alkenes, 1 amines, aromatic amines, aliphatic amines, 1,2 amines, and alkyl halides searched the identity of secondary metabolites, which may act as 12-Octadecenoic acid, methyl ester compound and clearly indicates being phytochemical. Chemical constituents of twenty-five compounds were identified in the methanol extract. The major components were 12-Octadecenoic acid and methyl ester (37.31%). Compound molecules consist of carbon 19 atoms (gray), hydrogen 36 atoms (greenish blue), and oxygen 2 atoms (red), indicated by the different colors. The results were obtained suggesting that, in addition to their pharmaceutical and medicine sources, 12-Octadecenoic acid, methyl ester compound can also serve as a natural mosquito control.

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斑刺桐甲醇组分对疟疾和Filarial病媒的植物化学图谱及幼虫控制。
杂色刺桐(E.variegata)生物活性化学物质有潜力作为一种良好的、环保的方法来控制蚊子种群。在本研究中,使用分离的杀虫剂化合物对蚊子幼虫进行了甲醇提取物杀死试验。采用薄层色谱、柱色谱、傅立叶变换红外光谱、气相色谱-质谱、化合物鉴定等方法对二次代谢进行了表征。蚊子未成熟的三龄幼虫斯氏按蚊和致倦库蚊暴露在50-250µg/ml的不同浓度下。总的来说,甲醇提取物的幼虫死亡率为98.2%(显著值0.001b),对斯氏安和致倦库蚊幼虫具有显著毒性,LC50/LC99值分别为157.69/39.55µg/ml和137.67/297.33µg/ml。FT-IR分析在醇、胺、酰胺、烯烃、1胺、芳香胺、脂族胺、1、2胺和烷基卤化物等官能团中寻找次级代谢产物的身份,这些次级代谢产物可能是12-十八碳烯酸、甲酯化合物,清楚地表明是植物化学物。在甲醇提取物中鉴定出25种化合物的化学成分。主要成分是12-十八碳烯酸和甲酯(37.31%)。化合物分子由碳19个原子(灰色)、氢36个原子(绿蓝色)和氧2个原子(红色)组成,用不同的颜色表示。结果表明,除了它们的药物和药物来源外,12-十八碳烯酸甲酯化合物也可以作为一种天然的防蚊剂。
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