Microneedle-based electrochemical sensors for in planta chemical sensing: From analytical principles to field deployment
Fecha
2026-08-26Disciplina/s
FarmaciaMateria/s
Microneedle sensorsElectrochemical sensing
Plant bioanalysis
In planta monitoring
Precision agriculture
Resumen
By 2050, the global population is projected to approach 10 billion, requiring substantial increases in crop productivity under growing land, water, and climate constraints. In this context, plant wearables have emerged as powerful AgriTech tools, highlighted by the inclusion of wearable plant sensors in the World Economic Forum's Top 10 Emerging Technologies report of 2023 and autonomous biochemical sensing in 2025. Among these technologies, microneedle (MN) electrochemical sensors provide minimally invasive access to plant biofluids and are rapidly becoming a promising platform for real-time chemical monitoring in living plants. In this review, we examine the key design requirements, analytical challenges, and applications of MN-based in planta sensors for monitoring nutrients, agrochemicals, phytohormones, growth precursors, and stress biomarkers. We first discuss the plant–MN interface, relating plant organs, biofluid composition, and tissue mechanics to MN design considerations. We...





