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利用电化学生物传感器揭示活植物中的钾离子和钠离子动力学。

Unveiling Potassium and Sodium Ion Dynamics in Living Plants with an Potentiometric Microneedle Sensor.

机构信息

Department of Chemistry, KTH Royal Institute of Technology, Teknikringen 30, SE-114 28 Stockholm, Sweden.

UCAM-SENS, Universidad Católica San Antonio de Murcia, UCAM HiTech, Avda. Andres Hernandez Ros 1, 30107 Murcia, Spain.

出版信息

ACS Sens. 2024 Oct 25;9(10):5214-5223. doi: 10.1021/acssensors.4c01352. Epub 2024 Sep 18.

Abstract

Potassium and sodium ions (K and Na) play crucial roles in influencing plant growth and health status. Unfortunately, current strategies to determine the concentrations of such ions are destructive for the plants because it is necessary to collect/extract the sap for further analysis and produce either scattered or delayed results. Here, we introduce a new potentiometric dual microneedle sensor for nondestructive, real-time, and continuous monitoring of K and Na concentrations in living plants. The developed sensors show a response time <5 s, close-to-Nernstian slope (∼55 mV dec), resiliency to five insertions on the stem, good repeatability (max. %RSD = 0.3%) and reversibility (max. %RSD = 3%), appropriate continuous operation for 24 h, and linear range of responses that cover expected plant physiological levels (5-50 mM for Na and 50-120 mM for K). Moreover, the accuracy was successfully investigated by comparing the results provided by the microneedle sensors to those obtained by a standard reference method (e.g., ion chromatography). Finally, we demonstrate that the developed analytical device is capable of tracking K and Na transportation from the hydroponic solution to the stem within 5-10 min. This research will contribute to establishing a new generation of analytical platforms for smart agriculture offering real-time information.

摘要

钾离子和钠离子(K 和 Na)在影响植物生长和健康状况方面发挥着关键作用。不幸的是,目前确定这些离子浓度的策略对植物是具有破坏性的,因为必须收集/提取汁液进行进一步分析,而且只能得到分散或延迟的结果。在这里,我们介绍了一种新的电位双微针传感器,用于无损、实时、连续监测活体植物中 K 和 Na 浓度。所开发的传感器具有<5 s 的响应时间、接近 Nernst 斜率(∼55 mV dec)、对茎上的五次插入具有弹性、良好的重复性(最大 %RSD = 0.3%)和可逆性(最大 %RSD = 3%)、适合连续 24 小时运行、以及响应范围可涵盖预期的植物生理水平(Na 为 5-50 mM,K 为 50-120 mM)。此外,通过将微针传感器提供的结果与标准参考方法(例如离子色谱法)获得的结果进行比较,成功地研究了准确性。最后,我们证明了所开发的分析设备能够在 5-10 分钟内跟踪从水培溶液到茎部的 K 和 Na 运输。这项研究将有助于为智能农业建立新一代分析平台,提供实时信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21d8/11519921/936b78ab3f75/se4c01352_0001.jpg

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