环境响应性载体材料在农药控释中的应用研究进展
投稿时间:2017-12-14      点此下载全文 HTML
引用本文:郭明程,陈立萍,张佳,等.环境响应性载体材料在农药控释中的应用研究进展[J].农药学学报,2018,20(3):270-278.
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作者单位E-mail
郭明程 农业农村部 农药检定所, 北京 100125  
陈立萍 农业农村部 农药检定所, 北京 100125  
张佳 农业农村部 农药检定所, 北京 100125  
王晓军 农业农村部 农药检定所, 北京 100125  
袁善奎 农业农村部 农药检定所, 北京 100125  
杨峻 农业农村部 农药检定所, 北京 100125 yangjun2008@agri.gov.cn 
基金项目:国家重点研发计划(2017YFD0201000)
中文摘要:环境响应性载体材料是一种新兴的智能复合材料,能够响应酶、氧化还原、pH值、光、温度、电场、磁场和离子强度等环境刺激的变化,实现有效成分的靶向控制释放,在药物控释方面表现出突出的优越性,具有广阔的应用前景,已成为目前医药、食品和环境工程等领域的研究热点。文章综述了环境响应性载体材料的种类及其在农药领域的研究及应用状况,探讨了以环境响应性载体材料作为农药载体时存在的问题,并对其应用前景进行了展望。目前常见的环境响应性载体材料主要包括酶响应性载体材料、pH响应性载体材料、氧化还原响应性载体材料、光响应性载体材料及温度响应性载体材料等种类,已被广泛应用于药物传递、分离纯化、临床诊断以及酶和细胞的固定化等领域,其作为助剂在农药制剂加工中的应用尚处于基础阶段,在商业化与规模化应用等方面还有待进一步研究完善。
中文关键词:环境响应  智能  载体材料  纳米粒子  微囊  农药控释  研究进展
 
Recent progress on stimuli-responsive materials as pesticides controlled release carriers
Abstract:The stimuli-responsive carrier material is an emerging type of composite material, which can achieve self-regulated controlled-release in response to the change of enzyme, redox, pH, photoirradiation, temperature, electric field, magnetic field and ionic strength in external environment. Materials of this type exhibit excellent advantages for drug controlled-releasing and extensive application prospect. Therefore, they have attracted worldwide interest in the field of medicine, food and environmental engineering. The research progress in the field of stimuli-responsive carrier materials and their application as carrier of pesticides were discussed. Potential problems of employing stimuli-responsive carrier materials as pesticides controlled release carriers and its prospective were also discussed. Stimuli-responsive carrier materials, including enzyme-, pH-, redox-, photoirradiation- and temperature-responsive carrier materials, have been widely used in the field of drug delivery, purification, diagnostics, and immobilization of enzymes and cells. The application of stimuli-responsive carrier materials in pesticide formulation process is still in the basic stage, and need to be further studied in the aspects of commercialization and scale application.
Key words:stimuli-responsive  intelligent  carrier materials  nanoparticles  microcapsule  pesticides controlled release  recent progress
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