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新型磁性可收集除草剂输送系统的制备与表征及其对水生植物光合系统 II 的植物毒性效应。

Fabrication and Characterization of a Novel Herbicide Delivery System with Magnetic Collectability and Its Phytotoxic Effect on Photosystem II of Aquatic Macrophyte.

机构信息

Department of Physics and Chemistry, School of Engineering, São Paulo State University (UNESP), Ilha Solteira, SP 15385-000, Brazil.

Natural Resources Program, Center for Natural Resources Studies (CERNA), Mato Grosso do Sul State University (UEMS), Dourados, Mato Grosso do Sul 79804-970, Brazil.

出版信息

J Agric Food Chem. 2020 Oct 7;68(40):11105-11113. doi: 10.1021/acs.jafc.0c03645. Epub 2020 Sep 23.

Abstract

The use of nano- and microparticles as a release system for agrochemicals has been increasing in agricultural sector. However, the production of eco-friendly and smart carriers that can be easily handled in the environment is still a challenge for this technology. In this context, we have developed a biodegradable release system for the herbicide atrazine with magnetic properties. Herein, we investigated the (a) physicochemical properties of the atrazine-loaded magnetic poly(ε-caprolactone) microparticles (MPs:ATZ), (b) in vitro release kinetic profile of the herbicide, and (c) phytotoxicity toward photosynthesis in the aquatic fern . The encapsulation efficiency of the herbicide in the MPs:ATZ was ca. 69%, yielding spherical microparticles with a diameter of ca. 100 μm, a sustained-release profile, and easily manipulated with an external magnetic field. Also, phytotoxicity issues showed that the MPs:ATZ maintained their herbicidal activity via inhibition of PSII, showing lower toxicity compared with the nonencapsulated ATZ at 0.01 and 0.02 μmol·L. Therefore, this technology may conveniently promote a novel magnetic controlled release of the herbicide ATZ (with the potential to be collected from a watercourse) and act as a nutrient boost to the nontarget plant, with good herbicidal activity and reduced risk to the environment.

摘要

作为农用化学品的释放系统,纳米和微米颗粒在农业领域的应用日益增多。然而,对于这项技术而言,生产具有环保和智能特性、且易于在环境中处理的载体仍然是一个挑战。在此背景下,我们开发了一种具有磁性的可生物降解的阿特拉津释放系统。在此,我们研究了(a)负载阿特拉津的磁性聚己内酯微球(MPs:ATZ)的物理化学性质,(b)除草剂的体外释放动力学特征,以及(c)对水生蕨类植物光合作用的植物毒性。除草剂在 MPs:ATZ 中的包封效率约为 69%,得到了直径约为 100μm 的球形微球,具有持续释放特性,并且可以通过外部磁场轻松操作。此外,植物毒性问题表明,MPs:ATZ 通过抑制 PSII 保持其除草活性,与非包封的 ATZ 相比,在 0.01 和 0.02μmol·L 时表现出较低的毒性。因此,这项技术可以方便地促进阿特拉津的新型磁性控制释放(有望从水道中收集),并作为非靶标植物的营养促进剂,具有良好的除草活性和降低对环境的风险。

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