Microneedle Sensors for Ion Monitoring in Plants. One Step Closer to Smart Agriculture
Author/s
Wang, Qianyu; Molinero Fernández, Águeda; Acosta Motos, Jose Ramon; Crespo, Gastón A; Cuartero, MaríaDate
2025-07-25Discipline/s
FarmaciaSubject/s
Wearable sensorSap analysis
Ion signaling
Electrochemical sensor
Plant stress
Abstract
As global demand for food rises and agricultural systems face unprecedented stress from environmental challenges, understanding the role of ions (i.e., key nutrient components) in crop productivity has never been more critical. Unfortunately, current tools for ion analysis in plants rely on destructive sap collection that fails to capture the dynamic changes in ionic concentrations. On the other hand, noninvasive optical methods lack practicality for field applications due to their reliance on expensive equipment and complex operational procedures. Recent advancements in microneedle (MN) sensing technology have demonstrated significant potential for real-time monitoring of plants’ health by enabling the direct detection of various important biomarkers, including but not limited to ions. By offering a minimally invasive approach, MN sensors allow continuous in-planta monitoring with precise penetration into plant tissues, ensuring natural growth remains undisturbed. However, the applica...





