State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi 214122, Jiangsu, China.
College of Horticulture and Plant Protection, Yangzhou University, Yangzhou 225009, China.
Adv Colloid Interface Sci. 2021 Dec;298:102552. doi: 10.1016/j.cis.2021.102552. Epub 2021 Oct 20.
The fast developments in pesticide-loaded nanodelivery systems over the last decade have inspired many companies and research organizations to highlight potential applications by employing encapsulation approaches in order to protect the agricultural crops. This approach is being used to retard the indiscriminate application of conventional pesticides, as well as, to make ensure the environmental safety. This article shed light on the potential of colloidal delivery systems, particularly controlled releasing profiles of several pesticides with enhanced stability and improved solubility. Colloidal nanodelivery systems, being efficient nanoformulations, have the ability to boost up the pest-control competence for prolonged intervals thru averting the early degradation of active ingredients under severe ecofriendly circumstances. This work is thus aimed to provide critical information on the meaningful role of nanocarriers for loading of pesticides. The smart art of pesticide-loaded nanocarriers can be more fruitful owing to the use of lower amount of active ingredients with improved efficiency along with minimizing the pesticide loss. Also, the future research gaps regarding nano-pesticide formulations, such as role of nanomaterials as active ingredients are discussed briefly. In addition, this article can deliver valuable information to the readers while establishing novel pesticide-loaded nanocarriers for a wide range of applications in the agriculture sectors.
在过去十年中,载农药纳米递药系统的快速发展激发了许多公司和研究机构的兴趣,他们通过采用封装方法强调潜在的应用,以保护农业作物。这种方法被用于延缓传统农药的滥用,同时确保环境安全。本文重点介绍了胶体递药系统的潜力,特别是几种农药的控释特性,具有增强的稳定性和提高的溶解度。胶体纳米递药系统作为有效的纳米制剂,具有通过避免在恶劣的环保条件下活性成分的早期降解来提高害虫控制能力的能力,从而延长间隔时间。因此,这项工作旨在提供关于纳米载体对农药负载的重要信息。由于使用了改进的效率和最小化农药损失的低剂量活性成分,载农药纳米载体的巧妙艺术可以更加富有成效。此外,还简要讨论了关于纳米农药制剂的未来研究空白,例如纳米材料作为活性成分的作用。此外,本文在为农业部门的各种应用建立新型载农药纳米载体时,可以为读者提供有价值的信息。