BIOINSECTICIDE POTENTIAL OF ETHANOL EXTRACTS FROM <i>Persea americana</i> (LAURACEAE) SEEDS ON <i>Aedes aegypti</i> MOSQUITOES

Silvia del Carmen Molina-Bertrán, Idelsy Chil-Núñez, Julio César Escalona-Arranz, Raimundo Nonato Picanço-Souto, Alejandro Felipe-González, Jesús García-Díaz, Paul Cos, Gabriel Llauradó-Maury, Humberto Joaquín Morris-Quevedo
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引用次数: 1

Abstract

Mosquitoes represent the most important agent disseminating infectious diseases like yellow fever, dengue, chikungunya, and malaria, among others. An essential strategy for its control is killing them at immature stages using industrial insecticides. However, those chemicals often generate resistance and affect the environment and human health. Agricultural and plant by-products constitute a new sustainable option to obtain harmless and eco-friendly bioinsecticides to prevent mosquitoes from spreading. This study aimed to investigate the phytochemical profile of Persea americana Mill (Lauraceae) seed extracts and their insecticide activity against Aedes aegypti at larval and pupal stages. The ethanol extracts from avocado seeds were obtained by Maceration/stirring (MaE) and Soxhlet extraction (SE) methods. The main chemical profile was determined by quantitative and UPLC assays. Insecticide activity was assessed by the exposition of mosquitoes at larval and pupal stages to seed extracts. Human cell lines were used to evaluate the cytotoxicity. Soxhlet methodology was more efficient in the extraction of P. americana seeds metabolites (42.13±1.76 mg/mL) compared with MaE (20.46±1.66 mg/mL) (p< 0.05). Additionally, SE showed a higher amount of polyphenols (5.12±0.18 mg/mL). The UPLC spectra analysis revealed the presence of polyphenols, mainly catechin, and neolignan constituents. Both extracts showed larvicidal and pupicidal effects, but SE was more active at lower concentrations. Moreover, no significant toxic effects on human monocytes and fibroblast cell lines were found after treatment. In sum, avocado seed by-products can be considered an eco-friendly insecticide and its use may help to substantially decrease the vector-transmitted diseases in developing countries.
美洲产乙醇提取物的生物杀虫剂潜力</i>(樟科)埃及伊蚊</i>蚊子
蚊子是传播黄热病、登革热、基孔肯雅热和疟疾等传染病的最重要媒介。控制其基本策略是使用工业杀虫剂在未成熟阶段杀死它们。然而,这些化学品往往产生抗药性,影响环境和人类健康。农业和植物副产品是获得无害和生态友好型生物杀虫剂以防止蚊子传播的一种新的可持续选择。本研究旨在研究美洲柏树(Persea americana Mill)种子提取物的植物化学特征及其对埃及伊蚊幼虫期和蛹期的杀虫活性。采用浸渍/搅拌(MaE)法和索氏提取(SE)法制备牛油果种子乙醇提取物。通过定量和超高效液相色谱法测定了主要化学成分。通过幼虫期和蛹期蚊子对种子提取物的暴露来评估杀虫剂的活性。用人细胞系评价其细胞毒性。Soxhlet法提取美洲藜种子代谢物(42.13±1.76 mg/mL)的效率高于MaE法(20.46±1.66 mg/mL) (p<0.05)。此外,SE中多酚含量较高(5.12±0.18 mg/mL)。UPLC光谱分析显示其含有多酚类物质,主要为儿茶素和新木质素。两种提取物均有杀幼虫和杀蛹的作用,但SE浓度越低活性越强。此外,治疗后未发现对人单核细胞和成纤维细胞系有明显的毒性作用。总之,鳄梨种子副产品可以被认为是一种生态友好的杀虫剂,它的使用可能有助于大大减少发展中国家的病媒传播疾病。
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