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基于纤维素纳米晶体的耐冲洗、pH 响应性抗 TMV 纳米免疫诱导剂。

Washout-Resistant, pH-Responsive Anti-TMV Nanoimmune Inducer Based on Cellulose Nanocrystals.

机构信息

College of Plant Protection, Southwest University, Chongqing 400715, China.

Chongqing Key Laboratory of Soft-Matter Material Chemistry and Function Manufacturing, Southwest University, Chongqing 400715, China.

出版信息

J Agric Food Chem. 2023 Nov 8;71(44):16542-16553. doi: 10.1021/acs.jafc.3c05733. Epub 2023 Oct 25.

Abstract

The application of antiplant virus agents on leaf surfaces faces challenges due to their vulnerability to wear, instability, and limited duration, which in turn jeopardizes plant health and yield. In recent years, high-aspect-ratio nanomaterials have gained prominence as powerful carriers for disease treatment, thanks to their exceptional penetrability and precise drug delivery capabilities. Here, we synthesized a pH-responsive nanoimmune inducer (CNC-AMO) with strong leaf adhesion through a Schiff base reaction, achieved by grafting amino-oligosaccharides (AMOs) on the surface of aldehyde-based CNC (CNC-CHO). Fourier transform infrared spectrometry, zeta potential, X-ray photoelectron spectroscopy, X-ray diffraction, transmission electron microscopy, atomic force microscopy, scanning electron microscopy, thermogravimetric analysis, and elemental analysis were used to characterize the CNC-AMO. The CNC-AMO displayed the capability for pH-responsive AMO release, showcasing its potential for targeted and controlled delivery. When applied to plants, the CNC-AMO exhibited impressive anti-TMV efficacy during a weeklong observation period. Meanwhile, the CNC-AMO exhibited remarkable adhesion and scouring resistance on the surfaces of the plant leaves. We strongly believe that the synergy of environmentally friendly synthetic materials, efficient plant virus control, and streamlined scalability positions CNC-AMOs as a promising pesticide for plant virus therapy.

摘要

叶面施药存在易磨损、不稳定、持效期短等问题,严重影响作物健康和产量。近年来,高长径比纳米材料因其优异的穿透性和精确的药物递送能力,作为一种强大的治疗疾病的载体而备受关注。本研究通过席夫碱反应,在基于醛的 CNC(CNC-CHO)表面接枝氨基寡糖(AMO),合成了一种具有强叶附著力的 pH 响应纳米免疫诱导剂(CNC-AMO)。傅里叶变换红外光谱、Zeta 电位、X 射线光电子能谱、X 射线衍射、透射电子显微镜、原子力显微镜、扫描电子显微镜、热重分析和元素分析对 CNC-AMO 进行了表征。CNC-AMO 表现出 pH 响应 AMO 释放的能力,显示出其靶向和控制释放的潜力。在植物上应用时,CNC-AMO 在一周的观察期内表现出了令人印象深刻的抗 TMV 效果。同时,CNC-AMO 在植物叶片表面表现出了优异的附著力和耐冲刷性。我们坚信,环保合成材料、高效植物病毒控制和简化的可扩展性的协同作用,使 CNC-AMO 成为一种有前途的植物病毒治疗农药。

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