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优化和验证 HS-GC/MS 方法用于控制微囊化特定生物引诱剂的释放研究,以生产靶向杀虫剂。

Optimization and Validation of HS-GC/MS Method for the Controlled Release Study of Microencapsulated Specific Bioattractants for Target-Plaguicide Production.

机构信息

Analytical Chemistry Department, Faculty of Science and Technology, University of the Basque Country (UPV/EHU), Barrio Sarriena s/n, 48940 Leioa, Spain.

出版信息

Molecules. 2021 Feb 13;26(4):996. doi: 10.3390/molecules26040996.

Abstract

Insect plagues are a problem often hard to solve due to the harmful effects caused by the pesticides used to combat them. Consequently, the pesticide market is increasingly trying to develop new technologies to prevent the unwanted effects that common plague treatments usually bring with them. In this work, four specific bioattractants of , extracted from fungi (β-ocimene, phenol, p-cresol, and indole) were microencapsulated with β-cyclodextrin in order to produce an economically and environmentally sustainable bait containing biocides in the near future. Cyclodextrins will retain these volatile compounds until their use by the consumer when the product comes into contact with water. Then, the bioattractants will be released in the medium in a controlled manner. An analytical methodology based on headspace extraction coupled to gas chromatography and mass spectrometry (HS-GC/MS) has been developed and validated following Environmental Protection Agency (EPA) and European Commission Directorate General for Health and Food Safety guidelines for the bioattractants controlled release study from the microencapsulated product. The analytical method has been shown to be accurate and precise and has the sensitivity required for controlled release studies of the four bioattractants analyzed. The release of the bioattractants from microencapsulated products achieved the "plateau" after 3 h in all cases.

摘要

昆虫灾害是一个难以解决的问题,因为用于防治它们的农药会产生有害影响。因此,农药市场正越来越努力地开发新技术,以防止常见虫害处理方法通常带来的不良影响。在这项工作中,从真菌中提取了四种特定的生物引诱剂(β-罗勒烯、苯酚、对甲酚和吲哚),并用β-环糊精对其进行微胶囊化,以便在不久的将来生产出一种经济和环境可持续的含有杀生物剂的诱饵。环糊精将保留这些挥发性化合物,直到消费者使用产品与水接触时才会释放。然后,生物引诱剂将以受控的方式在介质中释放。已经开发并验证了一种基于顶空提取与气相色谱和质谱联用 (HS-GC/MS) 的分析方法,该方法遵循美国环境保护署 (EPA) 和欧盟委员会卫生和食品安全总局的指南,用于从微胶囊化产品中研究生物引诱剂的控制释放。该分析方法被证明是准确和精确的,并且具有分析四种生物引诱剂的控制释放研究所需的灵敏度。在所有情况下,微胶囊化产品中生物引诱剂的释放在 3 小时后达到“平台期”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50a6/7917701/d9664902b2fd/molecules-26-00996-g001.jpg

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