可持续的木质素纳米颗粒除草剂输送系统:制备,表征,和对目标和非目标植物的影响

IF 7.3 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Pedro H. C. de Lima, , , Maria C. Shiroma Buri, , , Rafaela S. Mendonça, , , Gabriel M. Favara, , , Érica R. Biscalchim, , , Mariana M. L. H. Forini, , , Luiz A. F. Cavalcante, , and , Renato Grillo*, 
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引用次数: 0

摘要

纳米科学的最新进展在保持作物产量的同时减少了除草剂的使用,而木质素等可持续材料已经成为除草剂输送的有前途的纳米载体。本文设计、表征了含阿特拉津的球形木质素纳米颗粒(SLNPs),并将其应用于靶植物和非靶植物。SLNPs_ATZ在动态光散射(DLS)和纳米颗粒跟踪分析(NTA)中分别表现为直径约为178 nm和136 nm的球形结构,加载效率为74.2%,168 h后释放率为43.26%。化学计算模型显示,阿特拉津和木质素之间的间隙能较低,具有较强的载体/生物活性相互作用。以亚致死剂量(30 μg/L)阿特拉津处理的油头莴苣进行水培试验28 d, SLNPs和SLNPs_ATZ处理的莴苣根长/茎面积与对照相比无显著变化。脂质过氧化和过氧化氢酶(生化试验)在阿特拉津处理与其他处理之间有显著差异。过氧化氢酶-1 (CAT1)和GST6基因的表达表明,SLNPs可能具有莴苣的耐胁迫性。此外,PER51基因结果显示SLNPs_ATZ和ATZ的损伤。通过杂草防治评价,发现SLNPs_ATZ对种子/幼苗萌发/发育可能存在干扰。这些发现表明木质素是开发纳米载体的可持续分子,具有基因表达和改善杂草控制的潜在作用。木质素纳米颗粒在靶植物和非靶植物中携带阿特拉津的制备、表征、基于dft的相互作用研究和评价木质素纳米颗粒是一种可持续的除草剂载体,对靶植物和非靶植物具有不同的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sustainable Lignin Nanoparticles for Herbicide Delivery Systems: Preparation, Characterization, and Effects on Target and Nontarget Plants

Recent advances in nanoscience have reduced herbicide usage while maintaining crop yields, and sustainable materials, such as lignin, have emerged as promising nanocarriers for herbicide delivery. Spherical lignin nanoparticles (SLNPs) with atrazine (SLNPs_ATZ) were designed, characterized, and applied to nontarget and target plants in this work. SLNPs_ATZ displayed spherical shapes with sizes near 178 nm by dynamic light scattering (DLS), and 136 nm by nanoparticle tracking analysis (NTA), with a 74.2% loading efficiency and a 43.26% release percentage after 168 h. Chemical computational modeling revealed lower gap energies between atrazine and lignin, indicating strong carrier/bioactive interactions. Hydroponic experiments were conducted with butterhead lettuce with sublethal doses of atrazine (30 μg/L) for 28 days, and lettuce treated with SLNPs and SLNPs_ATZ showed no significant changes in root length/shoot area compared to the control. Lipid peroxidation and catalase (biochemical tests) showed significant differences between lettuce treated with atrazine and all other treatments. Gene expression of catalase-1 (CAT1) and GST6 genes indicated a possible stress tolerance in lettuce by SLNPs. Moreover, PER51 gene results indicated damage from SLNPs_ATZ and ATZ. Based on the weed control assessment, seeds/seedlings showed possible germination/development interference by SLNPs_ATZ. These findings highlight lignin as a sustainable molecule for developing nanocarriers with potential effects on gene expression and improved weed control.

Preparation, characterization, DFT-based interaction studies, and evaluation of sustainable lignin nanoparticles carrying atrazine in target and nontarget plants. Lignin nanoparticles are sustainable carriers for herbicide delivery and can exhibit distinct effects on target and nontarget plants.

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来源期刊
ACS Sustainable Chemistry & Engineering
ACS Sustainable Chemistry & Engineering CHEMISTRY, MULTIDISCIPLINARY-ENGINEERING, CHEMICAL
CiteScore
13.80
自引率
4.80%
发文量
1470
审稿时长
1.7 months
期刊介绍: ACS Sustainable Chemistry & Engineering is a prestigious weekly peer-reviewed scientific journal published by the American Chemical Society. Dedicated to advancing the principles of green chemistry and green engineering, it covers a wide array of research topics including green chemistry, green engineering, biomass, alternative energy, and life cycle assessment. The journal welcomes submissions in various formats, including Letters, Articles, Features, and Perspectives (Reviews), that address the challenges of sustainability in the chemical enterprise and contribute to the advancement of sustainable practices. Join us in shaping the future of sustainable chemistry and engineering.
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