Guangxi Key Laboratory of Natural Polymer Chemistry and Physics, Nanning Normal University, Nanning 530001, P. R. China.
J Agric Food Chem. 2024 Feb 21;72(7):3374-3387. doi: 10.1021/acs.jafc.3c07824. Epub 2024 Feb 6.
The conversion of contact-killing pesticides into systemic pesticides can significantly enhance the bioavailability of pesticides, thereby reducing pesticide usage and environmental harm. A series of β-cyclodextrin fatty acid esters with varying branch chains were synthesized and employed as carriers in nanoformulation of insecticide. The investigation revealed that nanoformulations prepared using β-cyclodextrin octadecarboxylate (β-CDs) exhibited superior stability and remarkable systemic translocation within plants. Six contact-killing insecticide nanoformulations were developed utilizing β-CDs as carriers, and tests indicated that β-CDs significantly enhanced the systemic translocation of insecticides in plants compared to carrier-free nanoformulations. It was found that β-CDs increased the level of systemic translocation of insecticides by 5-12 times. Additionally, characterization results from λ-cyhalothrin-β-CDs nanoformulation demonstrated their superior ability to improve photolysis resistance, prolong release time, and extend insecticidal duration. Consequently, β-CDs can be utilized as a green additive in pesticide production to enhance the systemic translocation of pesticides in plants and increase their bioavailability.
将触杀型农药转化为内吸型农药,可以显著提高农药的生物利用度,从而减少农药的使用和对环境的危害。本研究合成了一系列具有不同支链的β-环糊精脂肪酸酯,并将其作为载体应用于杀虫剂的纳米制剂中。研究表明,以β-环糊精十八酸酯(β-CDs)为载体制备的纳米制剂在植物体内表现出更好的稳定性和显著的内吸转移能力。利用β-CDs 作为载体,开发了 6 种触杀型杀虫剂纳米制剂,试验表明,与无载体纳米制剂相比,β-CDs 显著提高了杀虫剂在植物体内的内吸转移。结果表明,β-CDs 将杀虫剂的内吸转移水平提高了 5-12 倍。此外,从氯氟氰菊酯-β-CDs 纳米制剂的表征结果中可以看出,它具有提高光解稳定性、延长释放时间和延长杀虫时间的优异性能。因此,β-CDs 可以作为农药生产中的绿色添加剂,以提高农药在植物体内的内吸转移,增加其生物利用度。