Department of Chemistry, College of Chemistry and Materials Science, Jinan University, Guangzhou 511436, China.
Shenzhen Longhua Maternity and Child Healthcare Hospital, Shenzhen 518110, China.
ACS Appl Mater Interfaces. 2023 Apr 5;15(13):16448-16459. doi: 10.1021/acsami.2c23241. Epub 2023 Mar 21.
Controlled-release delivery systems have been widely used to improve the efficacy and bioavailability of pesticides and minimize environmental risks. Herein, a fungicide carbendazim (CBZ)-loaded, a kind of nanovalve including trimethylammoniumpillar[5]arene (AP5), and methyl orange (MO)-functionalized mesoporous selenium (MSe) nanopesticides (CBZ@AP5/MSe⊃MO) were prepared. The nanovalve endowed CBZ@AP5/MSe⊃MO with a pH-responsive property, so the CBZ@AP5/MSe⊃MO can respond to the microenvironment of the pathogen (). First, MO was shed due to protonation, and AP5-functionalized MSe gradually dissolved in an acid environment. Finally, CBZ was released rapidly. It is reported that AP5 and MO as the host and guest functionalized mesoporous selenium (MSe) have never been applied to agriculture. release experiments showed that the cumulative release rate of CBZ at pH 4.5 was 1.74 times higher than that in a neutral environment. In addition, we found that the contact angle of the CBZ@AP5/MSe⊃MO in maize and rape leaves was effectively decreased, which could retain more in the leaves after washout. It can also decrease the dry biomass and the reducing sugar of . The CBZ@AP5/MSe⊃MO holds a good safety profile for plants, animal cells, and the environment owing to the targeted release properties. These results suggest that CBZ@AP5/MSe⊃MO is an environmentally friendly and effective drug-loaded system against . It provides a new strategy for the design and development of nanopesticides and the control of .
控释递送系统已广泛用于提高农药的疗效和生物利用度,并最小化环境风险。在此,制备了一种载有杀菌剂多菌灵(CBZ)的纳米阀,该纳米阀包括三甲基铵柱[5]芳烃(AP5)和甲基橙(MO)功能化介孔硒(MSe)纳米农药(CBZ@AP5/MSe⊃MO)。纳米阀赋予 CBZ@AP5/MSe⊃MO 对 pH 值的响应性,因此 CBZ@AP5/MSe⊃MO 可以响应病原体的微环境()。首先,由于质子化,MO 脱落,并且 AP5 功能化的 MSe 逐渐溶解在酸性环境中。最后,CBZ 被快速释放。据报道,AP5 和 MO 作为主体和客体功能化介孔硒(MSe)从未应用于农业。释放实验表明,在 pH 4.5 下 CBZ 的累积释放率比中性环境下高 1.74 倍。此外,我们发现 CBZ@AP5/MSe⊃MO 在玉米和油菜叶片中的接触角有效降低,在冲洗后可以在叶片中保留更多。它还可以降低 ()的干生物量和还原糖。由于靶向释放特性,CBZ@AP5/MSe⊃MO 对植物、动物细胞和环境具有良好的安全性。这些结果表明,CBZ@AP5/MSe⊃MO 是一种针对 的环保有效载药系统。它为纳米农药的设计和开发以及 的控制提供了新的策略。