Department of Agriculture, Food and Environment, University of Pisa, via del Borghetto 80, 56124, Pisa, Italy.
School of Pharmacy, University of Camerino, Via Sant'Agostino 1, 62032, Camerino, Italy.
Environ Sci Pollut Res Int. 2018 Apr;25(11):10184-10206. doi: 10.1007/s11356-017-9752-4. Epub 2017 Jul 28.
The rapid spread of highly aggressive arboviruses, parasites, and bacteria along with the development of resistance in the pathogens and parasites, as well as in their arthropod vectors, represents a huge challenge in modern parasitology and tropical medicine. Eco-friendly vector control programs are crucial to fight, besides malaria, the spread of dengue, West Nile, chikungunya, and Zika virus, as well as other arboviruses such as St. Louis encephalitis and Japanese encephalitis. However, research efforts on the control of mosquito vectors are experiencing a serious lack of eco-friendly and highly effective pesticides, as well as the limited success of most biocontrol tools currently applied. Most importantly, a cooperative interface between the two disciplines is still lacking. To face this challenge, we have reviewed a wide number of promising results in the field of green-fabricated pesticides tested against mosquito vectors, outlining several examples of synergy with classic biological control tools. The non-target effects of green-fabricated nanopesticides, including acute toxicity, genotoxicity, and impact on behavioral traits of mosquito predators, have been critically discussed. In the final section, we have identified several key challenges at the interface between "green" nanotechnology and classic biological control, which deserve further research attention.
高度侵袭性的虫媒病毒、寄生虫和细菌的迅速传播,以及病原体和寄生虫及其节肢动物媒介的抗药性的发展,是现代寄生虫学和热带医学面临的巨大挑战。除了疟疾之外,生态友好型病媒控制计划对于控制登革热、西尼罗河热、基孔肯雅热和寨卡病毒以及其他虫媒病毒(如圣路易斯脑炎和日本脑炎)的传播至关重要。然而,控制蚊子媒介的研究工作严重缺乏环保且高效的杀虫剂,而且目前应用的大多数生物控制工具的效果也有限。最重要的是,这两个学科之间仍然缺乏合作界面。为了应对这一挑战,我们回顾了针对蚊子媒介的绿色制造杀虫剂领域的大量有前途的研究成果,概述了与经典生物控制工具协同作用的几个例子。我们还批判性地讨论了绿色制造纳米杀虫剂的非靶标效应,包括急性毒性、遗传毒性以及对蚊子捕食者行为特征的影响。在最后一节中,我们确定了“绿色”纳米技术与经典生物控制之间的界面上的几个关键挑战,这些挑战值得进一步研究关注。