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可控界面组装一维类淀粉样蛋白纳米复合材料以增强纳米除草剂的利用。

Steerable Interfacial Assembly of 1D Amyloid-Like Protein Nanocomposites for Enhanced Nanoherbicide Utilization.

机构信息

School of Energy and Power Engineering, Jiangsu University, Zhenjiang, 212013, P. R. China.

School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang, 212013, P. R. China.

出版信息

Small. 2024 Nov;20(48):e2405106. doi: 10.1002/smll.202405106. Epub 2024 Sep 5.

Abstract

Conventional herbicide formulations suffer from serious problems such as easy drift, run-off and scouring into the environment, which pose enormous threats to human health and environmental safety. Herein, an innovative strategy is proposed to prepare oil-in-water nanoemulsions with long-term stability, enhanced droplet deposition, and improved nanoherbicide adhesion via steerable interfacial assembly of 1D amyloid-like protein nanocomposites. Bovine serum albumin (BSA) undergoes rapid amyloid-like aggregation upon reduction of its disulfide bond. The resulting phase-transitioned BSA (PTB) oligomers instantly self-assemble on the surface of cellulose nanofibers (CNF) to form the 1D PTB/CNF nanocomposites, which greatly expands the parameter space for interfacial assembly of amyloid-like proteins. The PTB/CNF nanocomposites exhibit excellent interfacial activity, enabling spontaneous adsorption at the oil-water interface to stabilize nanoemulsion. The excess PTB/CNF nanocomposites would also self-assemble at the air-aqueous interface upon spraying, resulting in efficient droplet deposition on (super)hydrophobic leaves. The deposited nanoherbicides show excellent resistance to wind/rain corrosion due to the robust amyloid-mediated adhesion, with a retention rate of more than 80% after severe scouring. Consequently, herbicide applications can be reduced by at least 30% compared to commercial emulsifiable concentrates, showing greater herbicidal efficiency. This study provides novel insights and approaches to promote sustainable agricultural development.

摘要

传统的除草剂制剂存在易漂移、流失和冲刷到环境中等严重问题,对人类健康和环境安全构成了巨大威胁。在此,提出了一种创新策略,通过可控制的 1D 类淀粉蛋白纳米复合材料的界面组装,制备具有长期稳定性、增强的液滴沉积和提高的纳米除草剂附着性的油包水纳米乳液。牛血清白蛋白(BSA)在其二硫键还原时迅速发生类淀粉样聚集。所得的相变 BSA(PTB)低聚物立即在纤维素纳米纤维(CNF)表面自组装形成 1D PTB/CNF 纳米复合材料,这极大地扩展了类淀粉样蛋白界面组装的参数空间。PTB/CNF 纳米复合材料表现出优异的界面活性,能够在油水界面自发吸附以稳定纳米乳液。在喷雾时,多余的 PTB/CNF 纳米复合材料也会在气液界面自组装,导致在(超)疏水性叶片上的液滴高效沉积。由于强大的淀粉样介导的附着,沉积的纳米除草剂表现出优异的抗风雨侵蚀能力,在严重冲刷后保留率超过 80%。因此,与商业可乳化浓缩物相比,除草剂的施用量可减少至少 30%,显示出更高的除草效率。本研究为促进可持续农业发展提供了新的思路和方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/072d/11600694/fe4f37fb8eeb/SMLL-20-2405106-g006.jpg

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