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基于桃金娘烯醇的纳米纤维素/酰肼复合物的合成及其在植物保护中的抗真菌活性。

Synthesis of Myrtenal-Based Nanocellulose/Diacylhydrazine Complexes with Antifungal Activity for Plant Protection.

机构信息

School of Chemistry and Chemical Engineering, Guangxi University, Nanning, Guangxi 530004, People's Republic of China.

出版信息

J Agric Food Chem. 2021 Nov 10;69(44):12956-12965. doi: 10.1021/acs.jafc.1c02694. Epub 2021 Oct 29.

Abstract

In search of novel bioactive compounds with excellent and broad-spectrum antifungal activity and nanopesticides with sustained releasing property, a series of novel myrtenal-based diacylhydrazines were designed, synthesized, and characterized. The preliminary bioassay showed that myrtenal-based 2-picolinyl hydrazide exhibited better or comparable antifungal activity than that of the commercial fungicides boscalid and chlorothalonil against the tested fungi. Furthermore, myrtenal-based nanocellulose was designed as a nanopesticide carrier and prepared from two biomass materials, bleached bagasse pulp and turpentine oil. Drug-loading capacities (LCs) of these carriers and sustained releasing properties of corresponding complexes were also evaluated, and the results indicated that the esterification reaction in the different solvents would affect the micromorphology of carriers, which was the important influential factor for loading or releasing drugs. To our delight, complex (LC = 0.32, total releasing amount/time = 99.8%/168 h) showed a macroporous framework with the drug evenly distributed across the opening network and staged drug-releasing performance that deserved further study as a nanopesticide.

摘要

为了寻找具有良好广谱抗真菌活性的新型生物活性化合物和具有缓释性能的纳米农药,设计、合成并表征了一系列新型的基于薄荷醇的二酰肼。初步的生物测定表明,基于薄荷醇的 2-吡啶基酰肼对测试真菌的抗真菌活性优于商业杀菌剂肟菌酯和百菌清。此外,以生物质材料漂白蔗渣浆和松节油为原料,设计了基于薄荷醇的纳米纤维素作为纳米农药载体。还评估了这些载体的载药量(LC)和相应配合物的缓释性能,结果表明,不同溶剂中的酯化反应会影响载体的微观形态,这是载药或释药的重要影响因素。令我们高兴的是,配合物[LC=0.32,总释放量/时间=99.8%/168 h]表现出具有大孔骨架的形态,药物均匀分布在开口网络中,具有阶段性的药物释放性能,值得作为纳米农药进一步研究。

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