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封装策略综述:从现在到未来。

Encapsulation Strategies for : From Now to the Future.

机构信息

Department of Agricultural Production Sciences, Faculty of Agronomy and Veterinary Sciences, São Paulo State University (UNESP), Jaboticabal, São Paulo 14884-900, Brazil.

Institute of Science and Technology, São Paulo State University (UNESP), Avenida Três de Março 511, Alto da Boa Vista, Sorocaba, São Paulo 18087-180, Brazil.

出版信息

J Agric Food Chem. 2021 Apr 28;69(16):4564-4577. doi: 10.1021/acs.jafc.0c07118. Epub 2021 Apr 13.

Abstract

(Bt) has been recognized for its high potential in the control of various agricultural pests. Developments in micro/nanotechnology have opened new perspectives for the production of more efficient formulations that can overcome some obstacles associated with its use in the field, such as formulation instability and loss of activity as a result of the degradation of pesticidal protein by its exposure to ultraviolet radiation, among other problems. This review describes current studies and recent discoveries related to Bt and processes for the encapsulation of Bt derivatives, such as Cry pesticidal proteins. Different techniques are described, such as extrusion, emulsion, spray drying, spray cooling, fluidized bed, lyophilization, coacervation, and electrospraying to obtain micro- and nanoparticulate systems. It is noteworthy that products based on microorganisms present less risk to the environment and non-target organisms. However, systematic risk assessment studies of these new Bt biopesticides are necessary, considering issues, such as interactions with other organisms, the formation of toxic secondary metabolites, or the interspecific transfer of genetic material. Given the great potential of these new formulations, a critical assessment is provided for their future use, considering the technological challenges that must be overcome to achieve their large-scale production for efficient agricultural use.

摘要

(Bt) 因其在控制各种农业害虫方面的巨大潜力而备受关注。微纳技术的发展为生产更高效的制剂开辟了新的视角,可以克服其在田间应用中存在的一些障碍,例如制剂不稳定以及由于杀虫蛋白暴露于紫外线辐射而降解导致的活性丧失等问题。本文综述了与 Bt 相关的最新研究进展以及 Bt 衍生物(如 Cry 杀虫蛋白)的包封工艺。描述了不同的技术,如挤出、乳液、喷雾干燥、喷雾冷却、流化床、冻干、凝聚和静电喷雾,以获得微纳颗粒系统。值得注意的是,基于微生物的产品对环境和非目标生物的风险较小。然而,有必要对这些新型 Bt 生物农药进行系统的风险评估研究,考虑到与其他生物的相互作用、有毒次生代谢物的形成或遗传物质的种间转移等问题。鉴于这些新型制剂具有巨大的潜力,本文对其未来的应用进行了批判性评估,考虑了为实现其在农业中的高效应用而必须克服的技术挑战。

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