Fei Tao, Gwinn Kimberly, Leyva-Gutierrez Francisco M A, Wang Tong
Department of Food Science, The University of Tennessee, Knoxville, United States.
Department of Food Science and Engineering, Hainan University, China.
Heliyon. 2023 Apr 1;9(4):e15101. doi: 10.1016/j.heliyon.2023.e15101. eCollection 2023 Apr.
Nanoemulsions of a terpene-rich by-product (TP) from commercial cannabidiol (CBD) production were successfully formulated and characterized. An enriched terpene distillate (DTP) was also obtained from steam distillation of TP and used for making nanoemulsions. The effects of formulation conditions including the hydrophilic lipophilic balance (HLB) value of the surfactant, TP and surfactant content, and sonication time on the properties of the emulsions were analyzed. The optimal formulation conditions were determined as surfactant HLB value of 13, TP content of 5 wt% in water, surfactant content of 2 times of TP, and sonication time of 1.5 min. A scaled-up production of the optimal nanoemulsion was also achieved using a microfluidizer and the effect of pressure and number of passes on emulsion properties was determined. The stability of the nanoemulsions was evaluated and the DTP nanoemulsion was determined to be the most stable. The nanoemulsions with desirable properties were then selected and evaluated for their insecticidal activity against the legume pest, , with nanoemulsion of neem oil made under the same conditions as a control. Both TP and DTP nanoemulsions were found to exhibit excellent insecticidal activity, and the latter had the highest efficacy against the .
成功制备并表征了从商业大麻二酚(CBD)生产中富含萜烯的副产物(TP)的纳米乳液。还通过TP的水蒸气蒸馏获得了富含萜烯的馏出物(DTP),并用于制备纳米乳液。分析了配方条件(包括表面活性剂的亲水亲油平衡(HLB)值、TP和表面活性剂含量以及超声处理时间)对乳液性能的影响。确定最佳配方条件为表面活性剂HLB值为13、水中TP含量为5 wt%、表面活性剂含量为TP的2倍以及超声处理时间为1.5分钟。还使用微流化器实现了最佳纳米乳液的放大生产,并确定了压力和通过次数对乳液性能的影响。评估了纳米乳液的稳定性,确定DTP纳米乳液最稳定。然后选择具有理想性能的纳米乳液,并评估其对豆类害虫的杀虫活性,以在相同条件下制备的印楝油纳米乳液作为对照。发现TP和DTP纳米乳液均表现出优异的杀虫活性,且后者对该害虫的防治效果最高。