Liu Yanxue, Zhang Yiwu, Xin Xin, Xu Xueying, Wang Gehui, Gao Shangkun, Qiao Luqin, Yin Shuyan, Liu Huixiang, Jia Chunyan, Shen Weixing, Xu Li, Ji Yingchao, Zhou Chenggang
College of Plant Protection, Shandong Agricultural University, Tai'an 271018, China.
Shandong Research Center for Forestry Harmful Biological Control Engineering and Technology, Shandong Agricultural University, Tai'an 271018, China.
Nanomaterials (Basel). 2022 May 30;12(11):1863. doi: 10.3390/nano12111863.
Pine wilt disease is a devastating forest disaster caused by , which has brought inestimable economic losses to the world's forestry due to lack of effective prevention and control measures. In this paper, a porous structure CuBTC was designed to deliver avermectin (AM) and a control vector insect Japanese pine sawyer (JPS) of , which can improve the biocompatibility, anti-photolysis and delivery efficacy of AM. The results illustrated the cumulative release of pH-dependent AM@CuBTC was up to 12 days (91.9%), and also effectively avoided photodegradation (pH 9.0, 120 h, retention 69.4%). From the traceable monitoring experiment, the AM@CuBTC easily penetrated the body wall of the JPS larvae and was transmitted to tissue cells though contact and diffusion. Furthermore, AM@CuBTC can effectively enhance the cytotoxicity and utilization of AM, which provides valuable research value for the application of typical plant-derived nerve agents in the prevention and control of forestry pests. AM@CuBTC as an environmentally friendly nanopesticide can efficiently deliver AM to the larval intestines where it is absorbed by the larvae. AM@CuBTC can be transmitted to the epidemic wood and dead wood at a low concentration (10 mg/L).
松材线虫病是由[未提及具体病因]引起的一种毁灭性森林灾害,由于缺乏有效的预防和控制措施,给世界林业带来了不可估量的经济损失。本文设计了一种多孔结构的CuBTC来递送阿维菌素(AM)以及松材线虫病的传播媒介昆虫日本松材线虫(JPS),其可以提高AM的生物相容性、抗光解性和递送效率。结果表明,pH依赖型AM@CuBTC的累积释放长达12天(91.9%),并且还有效避免了光降解(pH 9.0,120小时,保留率69.4%)。从可追溯监测实验来看,AM@CuBTC很容易穿透JPS幼虫的体壁,并通过接触和扩散传递到组织细胞。此外,AM@CuBTC可以有效增强AM的细胞毒性和利用率,这为典型植物源神经毒剂在林业害虫防治中的应用提供了有价值的研究价值。AM@CuBTC作为一种环境友好型纳米农药,可以有效地将AM递送至幼虫肠道,在那里被幼虫吸收。AM@CuBTC可以以低浓度(10毫克/升)传递到疫木和枯木中。