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包封茴香和罗勒精油于β-环糊精中用于新型生物农药制剂。

Encapsulation of Fennel and Basil Essential Oils in β-Cyclodextrin for Novel Biopesticide Formulation.

机构信息

Institute for Biological Research "Siniša Stanković"-National Institute of the Republic of Serbia, University of Belgrade, Bulevar despota Stefana 142, 11108 Belgrade, Serbia.

Faculty of Chemistry, University of Belgrade, Studentski trg 16, 11000 Belgrade, Serbia.

出版信息

Biomolecules. 2024 Mar 14;14(3):353. doi: 10.3390/biom14030353.

Abstract

β-cyclodextrin (β-CD) is a good host for the encapsulation of fennel and basil essential oils (FEO and BEO, respectively) and the formation of inclusion complexes (ICs) using the co-precipitation method. According to the results of the GC/MS analysis conducted in this study, monoterpenes and monoterpenoids were the dominant chemical groups in total FEO, while in BEO, these two groups occurred along with sesquiterpenes and sesquiterpenoids. The presence of dominant compounds from both EOs was validated using the FT-IR spectra of ICs, which indicated successful complexation. Analyses conducted using SPME/GC-MS showed the continuous emission of volatiles over 24 h from both ICs. Under SEM, particles of both ICs appeared to have a rectangular or rhomboid morphology and few aggregates. The insecticidal properties of EOs and ICs with β-CD were tested on the Colorado potato beetle (CPB) as a model pest. The inclusion complex of β-CD with FEO altered the developmental dynamic and body mass of the CPB. The initial increase in the proteolytic activity of CPB larvae fed with potato plants sprayed with ICs was not maintained for long, and the proteolytic efficacy of treated larvae remained in line with that of the control larvae. Future investigations will focus on manipulating the volume of EOs used and the treatment duration for optimal efficacy and potential application.

摘要

β-环糊精(β-CD)是包封茴香和罗勒精油(分别为 FEO 和 BEO)并使用共沉淀法形成包合物(ICs)的良好主体。根据本研究中进行的 GC/MS 分析结果,单萜和单萜类化合物是总 FEO 中的主要化学基团,而在 BEO 中,这两组化合物与倍半萜和倍半萜类化合物同时存在。使用 ICs 的 FT-IR 光谱验证了两种精油中主要化合物的存在,表明成功地进行了络合。使用 SPME/GC-MS 进行的分析表明,两种 ICs 在 24 小时内持续释放挥发性物质。在 SEM 下,两种 ICs 的颗粒似乎具有矩形或菱形形态,且很少有聚集。以马铃薯甲虫(CPB)为模式害虫,测试了含有 β-CD 的精油和 IC 的杀虫性能。与 FEO 形成的 β-CD 包合物改变了 CPB 的发育动态和体重。用 IC 喷洒的马铃薯植物喂养的 CPB 幼虫的初始蛋白酶活性增加并没有持续很长时间,处理过的幼虫的蛋白酶功效仍与对照幼虫保持一致。未来的研究将集中在操纵精油的使用量和处理时间,以达到最佳效果和潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7a9/10968348/6b2f8a440691/biomolecules-14-00353-g001.jpg

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