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基于微针电化学传感器的集成植物葡萄糖监测系统。

An integrated plant glucose monitoring system based on microneedle-enabled electrochemical sensor.

机构信息

Laboratory of Agricultural Information Intelligent Sensing, School of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou, 310058, PR China; Hangzhou Academy of Agricultural Sciences, Hangzhou, 310024, PR China.

Laboratory of Agricultural Information Intelligent Sensing, School of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou, 310058, PR China; Innovation Platform of Micro/Nano Technology for Biosensing, ZJU-Hangzhou Global Scientific and Technological Innovation Center, Zhejiang University, Hangzhou, 311200, PR China.

出版信息

Biosens Bioelectron. 2024 Mar 15;248:115964. doi: 10.1016/j.bios.2023.115964. Epub 2023 Dec 21.

Abstract

Real-time monitoring of glucose concentration changes in plants and access to plant physiological information timely are of great significance to the development of precision agriculture. Here, we innovatively present an electrochemical sensing device that combines microneedle sensors and 3D printing technology to achieve real-time monitoring of glucose in plants in a minimally invasive manner. The device consists of two components: the inner part features a highly efficient sensing interface based on platinum wire (MPt-Au-Nafion-GOx-Pu), while the outer part consists of polymer microneedles formed by 3D printing. Additionally, the polymer hollow microneedle features a slender tip diameter of only 300 μm, minimizing plant damage during the detection procedure. The device shows good detection performance, with a limit of detection (LOD) of 33.3 μM and a detection sensitivity of 17 nA/μM·cm. It can detect glucose concentrations in the range of 100 μM to 100 mM, providing a unique solution for timely agronomic management of crops tool. By performing 12 h real-time monitoring and salt stress treat on tomato and aloe vera, the results verified the feasibility of integrated device applied to real-time glucose detection in plants.

摘要

实时监测植物中的葡萄糖浓度变化并及时获取植物生理信息,对精准农业的发展具有重要意义。在这里,我们创新性地提出了一种电化学传感装置,该装置结合了微针传感器和 3D 打印技术,以微创的方式实现植物中葡萄糖的实时监测。该装置由两部分组成:内部是基于铂丝(MPt-Au-Nafion-GOx-Pu)的高效传感界面,外部是由 3D 打印而成的聚合物微针。此外,聚合物中空微针的针尖直径仅为 300μm,在检测过程中最大限度地减少了对植物的损伤。该装置具有良好的检测性能,检测限(LOD)为 33.3μM,检测灵敏度为 17nA/μM·cm。它可以检测 100μM 至 100mM 范围内的葡萄糖浓度,为作物工具的及时农业管理提供了独特的解决方案。通过对番茄和芦荟进行 12 小时实时监测和盐胁迫处理,结果验证了集成设备应用于植物实时葡萄糖检测的可行性。

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