São Paulo State University - UNESP, Institute of Science and Technology, Sorocaba, SP, Brazil.
Human and Natural Sciences Center, Federal University of ABC, Santo André, SP, Brazil.
J Nanobiotechnology. 2019 Sep 21;17(1):100. doi: 10.1186/s12951-019-0533-8.
Pesticides and fertilizers are widely used to enhance agriculture yields, although the fraction of the pesticides applied in the field that reaches the targets is less than 0.1%. Such indiscriminate use of chemical pesticides is disadvantageous due to the cost implications and increasing human health and environmental concerns. In recent years, the utilization of nanotechnology to create novel formulations has shown great potential for diminishing the indiscriminate use of pesticides and providing environmentally safer alternatives. Smart nano-based pesticides are designed to efficiently delivery sufficient amounts of active ingredients in response to biotic and/or abiotic stressors that act as triggers, employing targeted and controlled release mechanisms. This review discusses the current status of stimuli-responsive release systems with potential to be used in agriculture, highlighting the challenges and drawbacks that need to be overcome in order to accelerate the global commercialization of smart nanopesticides.
农药和化肥被广泛用于提高农业产量,然而,实际应用中只有不到 0.1%的农药能够到达目标区域。由于成本问题以及日益严重的人类健康和环境问题,这种不加区分地使用化学农药是不利的。近年来,纳米技术的应用为减少农药的滥用和提供更安全的环境替代品提供了巨大的潜力。智能纳米农药旨在通过靶向和控制释放机制,有效地输送足够数量的活性成分,以响应作为触发因素的生物和/或非生物胁迫。本文讨论了具有应用于农业潜力的刺激响应释放系统的现状,强调了为了加速智能纳米农药的全球化商业化,需要克服的挑战和缺点。