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田间用含氟虫腈的二氧化硅纳米胶囊诱捕白蚁群落的评估。

Evaluation of baiting fipronil-loaded silica nanocapsules against termite colonies in fields.

作者信息

Peters Brenton C, Wibowo David, Yang Guang-Ze, Hui Yue, Middelberg Anton P J, Zhao Chun-Xia

机构信息

Brenton Peters Consulting, Jindalee, QLD, 4074, Australia.

Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, St Lucia, QLD, 4072, Australia.

出版信息

Heliyon. 2019 Aug 10;5(8):e02277. doi: 10.1016/j.heliyon.2019.e02277. eCollection 2019 Aug.

Abstract

Various pesticide nanocarriers have been developed. However, their pest-control applications remain limited in laboratories. Herein, we developed silica nanocapsules encapsulating fipronil (SNC) and their engineered form, poly(ethyleneimine)-coated SNC (SNC-PEI), based on recombinant catalytic modular protein D4S2 and used them against termite colonies in fields. To achieve this, an integrated biomolecular bioprocess was developed to produce D4S2 for manufacturing SNC containing fipronil with high encapsulation efficiency of approximately 97% at benign reaction conditions and at scales sufficient for the field applications. PEI coating was achieved via electrostatic interactions to yield SNC-PEI with a slower release of fipronil than SNC without coating. As a proof-of-concept, bait toxicants containing varied fipronil concentrations were formulated and exposed to nine termite mounds, aiming to prolong fipronil release hence allowing sufficient time for termites to relocate the baits into and distribute throughout the colony, and to eliminate that colony. Some baits were relocated into the mounds, but colonies were not eliminated due to several reasons. We caution others interested in producing bait toxicants to be aware of the multilevel resistance mechanisms of the spp. "superorganism".

摘要

已经开发出了各种农药纳米载体。然而,它们在害虫防治方面的应用在实验室中仍然有限。在此,我们基于重组催化模块蛋白D4S2开发了包裹氟虫腈的二氧化硅纳米胶囊(SNC)及其工程形式——聚(乙烯亚胺)涂层的SNC(SNC-PEI),并将它们用于田间白蚁群落防治。为实现这一目标,我们开发了一种集成生物分子生物工艺来生产D4S2,用于制造含氟虫腈的SNC,在温和的反应条件下,其包封效率约为97%,且规模足以满足田间应用。通过静电相互作用实现PEI涂层,从而得到SNC-PEI,其氟虫腈的释放速度比未涂层的SNC慢。作为概念验证,我们配制了含有不同氟虫腈浓度的诱饵毒剂,并将其暴露于九个白蚁丘,旨在延长氟虫腈的释放时间,从而使白蚁有足够的时间将诱饵转移到蚁群中并在整个蚁群中分布,以消灭蚁群。一些诱饵被转移到蚁丘中,但由于多种原因,蚁群并未被消灭。我们提醒其他有兴趣生产诱饵毒剂的人,要注意该物种“超个体”的多级抗性机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1aa/6699461/8756f7fc0df3/gr1.jpg

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