以纳米乳剂为媒介的农药递送的最新进展:农业可持续性的启示

Rachna Gupta , Parth Malik , Ruma Rani , Raghu Solanki , Rakesh Kumar Ameta , Vibhuti Malik , Tapan Kumar Mukherjee
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引用次数: 0

摘要

自然友好型和可持续发展型做法是振兴现代农业做法的突出方面。开发用量最少、药效最强、环境恶化最小的广谱杀虫剂正迅速成为可靠的措施。与在动物和人体细胞中给药类似,纳米载体作为生物相容性和自然友好型辅助工具,正在迅速出现,用于向农作物输送杀虫剂。这些做法对于农业密集型的全球经济具有更重要的意义,因为在这些经济体中,大量的谋生手段最终都依赖于农业。纳米乳剂在药物输送方面取得了非凡的研究成果,通过纳米乳剂输送杀虫剂已成为保护环境,特别是水生栖息地的一种推动力。纳米乳剂可以选择不同的表面活性剂和辅助表面活性剂,从而设计出杀虫剂的缓释方案,并有针对性地消灭害虫。这些成果不仅大大减轻了农药的毒性,还减轻了农民的经济负担。对土壤和周围水体的威胁最为严重,几乎 90% 的无助杀虫剂都会以过量化学负荷的形式流入土壤或水体。具有不同亲水-亲油平衡和表面活性剂-共表面活性剂化学计量学特性的乳液,在向农作物施用杀虫剂方面具有独特的稳定性。有鉴于此,这篇综述文章重点介绍了乳化、独特的工作原理、物理化学特性驱动的性能控制参数,最后还讨论了过去五年在纳米载体介导的农药输送方面所做的尝试,以实现可持续农业和减少环境压力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent progress on nanoemulsions mediated pesticides delivery: Insights for agricultural sustainability

Nature friendly and sustainable practices have been the prominent aspects reviving the modern agricultural practices. Development of broad spectrum insecticides with the minimal use, maximum efficacy and least environmental deterioration are swiftly emerging as reliable measures. Analogous to drug delivery in animal and human cells, nanocarriers are swiftly emerging as biocompatible and nature friendly aids for pesticide delivery to the agricultural crops. These practices manifest a higher importance for the agriculturally intensive global economies, wherein substantial livelihood means are eventually dependent on agriculture. Amicably transcended from the extraordinary investigational success for drug delivery, trafficking of pesticides through nanoemulsions has emerged as a boost to safeguard the environment and aquatic habitats in particular. The nanoemulsions, with the option of varying surfactant and co-surfactants, engineer the slow release of pesticides which could be targeted for the pest specific elimination. The outcomes have already eased the farmer’s economy besides significantly moderating the toxicity. The threat to soil and surrounding water bodies has been the most significant, wherein almost 90% of the unaided pesticide used to run off as excessive chemical load in the soils or water bodies. The constitutional robustness of emulsions with varied hydrophilic-lipophilic balances and surfactant-co-surfactant stoichiometries have been the distinguishing aspect for the pesticide delivery to the crops. With such insights, this review article focuses on emulsification, the distinguishing working principles, physicochemical characterization driven performance control parameters and finally a discussion of past five year attempts encompassing nanocarrier mediated pesticide delivery for sustainable agriculture and reduced environmental stress.

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