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一锅法制备载苦参碱树枝状介孔硅纳米农药用于 传病昆虫的非侵入性给药控制

"One-Pot" Method Preparation of Dendritic Mesoporous Silica-Loaded Matrine Nanopesticide for Noninvasive Administration Control of : The Vector Insect of .

机构信息

Shandong Forestry Pest Prevention and Control Engineering Technology Research Center, College of Plant Protection, Shandong Agricultural University, Tai'an 271018, China.

Ecology and Nature Conservation Institute, Chinese Academy of Forestry, Beijing 100091, China.

出版信息

ACS Biomater Sci Eng. 2024 Mar 11;10(3):1507-1516. doi: 10.1021/acsbiomaterials.3c01270. Epub 2024 Feb 19.

Abstract

is an important stem-boring pest in forestry. However, the complex living environment of creates a natural barrier to chemical control, resulting in a very limited control effect by traditional insecticidal pesticides. In this study, a stable pesticide dendritic mesoporous silica-loaded matrine nanopesticide (MAT@DMSNs) was designed by encapsulating the plant-derived pesticide matrine (MAT) in dendritic mesoporous silica nanoparticles (DMSNs). The results showed that MAT@DMSNs, sustainable nanobiopesticides with high drug loading capacity (80%) were successfully constructed. The release efficiency of DMSNs at alkaline pH was slightly higher than that at acidic pH, and the cumulative release rate of MAT was about 60% within 25 days. In addition, the study on the toxicity mechanism of MAT@DMSNs showed MAT@DMSNs were more effective than MAT and MAT (0.3% aqueous solutions) in touch and stomach toxicity, which might be closely related to their good dispersibility and permeability. Furthermore, MAT@DMSNs are also involved in water transport in trees, which can further transport the plant-derived insecticides to the target site and improve its insecticidal effect. Meanwhile, in addition, the use of essential oil bark penetrants in combination with MAT@DMSNs effectively avoids the physical damage to pines caused by traditional trunk injections and the development of new pests and diseases induced by the traditional trunk injection method, which provides a new idea for the application of biopesticides in the control of stem-boring pests in forestry.

摘要

是林业中重要的蛀干害虫。然而, 的复杂生活环境对化学防治形成了天然屏障,导致传统的杀虫农药的防治效果非常有限。在本研究中,通过将植物源农药苦参碱(MAT)包封在树枝状介孔硅纳米粒子(DMSNs)中,设计了一种稳定的农药树枝状介孔硅载苦参碱纳米农药(MAT@DMSNs)。结果表明,成功构建了具有高载药量(80%)的可持续纳米生物农药 MAT@DMSNs。DMSNs 在碱性 pH 下的释放效率略高于酸性 pH 下的释放效率,在 25 天内 MAT 的累积释放率约为 60%。此外,MAT@DMSNs 的毒性机制研究表明,MAT@DMSNs 在触杀和胃毒方面比 MAT 和 MAT(0.3%水溶液)更有效,这可能与其良好的分散性和渗透性密切相关。此外,MAT@DMSNs 还参与树木中的水分运输,可将植物源杀虫剂进一步输送到靶标部位,提高其杀虫效果。同时,此外,在 MAT@DMSNs 中加入精油树皮渗透剂,有效避免了传统树干注射对松树造成的物理损伤,以及传统树干注射方法诱导的新病虫害的发生,为生物农药在林业蛀干害虫防治中的应用提供了新的思路。

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