Hogenbom Jennifer, Jones Alysson, Wang Haozhe Vincent, Pickett Laura Jane, Faraone Nicoletta
Department of Chemistry, Acadia University, Wolfville, NS B4P 2R6, Canada.
Polymers (Basel). 2021 Jun 7;13(11):1892. doi: 10.3390/polym13111892.
Essential oils (EOs) are used in several pest management applications. Due to their volatility, EOs may experience bioactivity reduction, thus requiring protection to extend their properties. In the present study, we investigated the inclusion complex formation (IC) of β-cyclodextrin (β-CD) with selected EOs with known tick repellent activity using two co-precipitation methods. ICs were characterized by evaluating EO mass concentration and inclusion efficiency (% IE) and other instrumental methods. Co-precipitation method 2 yielded the highest EO mass concentration (88 ± 6 μg/mg β-CD) for the 1:1 molar ratio geranium Egyptian EO IC. The EO volatile release over time from the ICs was investigated by headspace SPME/GC-MS analysis. ICs were also tested in tick repellency bioassays. ICs reported significant tick repellent activity, with lemongrass IC performing best overall. Method 1 showed the best combination of high mass concentration EO, controlled volatile release, and tick repellency with lemongrass EO. The results demonstrated that β-CD had selectively encapsulated different EOs. Moreover, the formation of ICs may improve EO tick repellent properties protecting the active ingredients and providing a better, long-lasting repellent action. These findings will allow the development of more effective naturally derived repellent products to protect individuals from tick bites and prevent tick-borne illnesses.
精油(EOs)被用于多种害虫管理应用中。由于其挥发性,精油可能会出现生物活性降低的情况,因此需要加以保护以延长其性能。在本研究中,我们使用两种共沉淀方法研究了β-环糊精(β-CD)与具有已知蜱虫驱避活性的选定精油形成包合物(IC)的情况。通过评估精油质量浓度和包合效率(% IE)以及其他仪器方法对包合物进行了表征。对于1:1摩尔比的埃及天竺葵精油包合物,共沉淀方法2产生了最高的精油质量浓度(88±6μg/mg β-CD)。通过顶空固相微萃取/气相色谱-质谱分析研究了包合物中精油随时间的挥发性释放情况。包合物还在蜱虫驱避生物测定中进行了测试。包合物表现出显著的蜱虫驱避活性,总体上柠檬草包合物表现最佳。方法1显示出高质量浓度精油、可控挥发性释放以及柠檬草精油蜱虫驱避性的最佳组合。结果表明β-CD选择性地包封了不同的精油。此外,包合物的形成可能会改善精油的蜱虫驱避性能,保护活性成分并提供更好的长效驱避作用。这些发现将有助于开发更有效的天然衍生驱避产品,以保护个人免受蜱虫叮咬并预防蜱传疾病。