Fast, Simple Electrochromic Biosensors for Point-of-Use Infectious Disease Diagnosis.

Publication date: Jul 29, 2025

Rapid and accurate diagnostics are essential for controlling infectious diseases, especially in low-resource settings. To enable broad implementation, there is a pressing need for point-of-use sensors that offer high sensitivity, portability, and user-friendliness. Electrochemical technologies, namely bipolar electrode (BPE) sensors, are promising because of their sensitivity and simplicity. However, traditional BPE sensors require complex equipment, hindering portability. Here, we present an electrochromic, BPE-based nucleic acid sensor that enables detection without additional equipment, making it ideal for point-of-care (POC) testing. Low cost, easily fabricated gold leaf electrodes are used as the substrate for electrochromic sensing. Through a nanostructuring step, the surface area of the gold is significantly increased, boosting the surface area for DNA probe immobilization and producing detectable color signals. These electrodes are integrated with microfluidics and a lithium-ion battery to yield an integrated system, which enables on-site, real-time viral detection with simplified preparation and detection on a single chip. We demonstrate sequence specific detection of SARS-CoV-2 RNA using loop-mediated isothermal amplification (LAMP) followed by Cas12a-mediated cleavage of ferrocene-tagged probes, offering a low-cost, equipment-free, and accurate diagnostic tool for infectious disease detection in resource-limited settings.

Concepts Keywords
Biosensors Accurate
Hindering Bpe
Isothermal Detection
Lithium Electrochromic
Viral Enables
Equipment
Infectious
Low
Point
Portability
Resource
Sensitivity
Sensors
Settings
Use

Semantics

Type Source Name
disease MESH Infectious Disease
pathway REACTOME Infectious disease
drug DRUGBANK S-propylamine-L-cysteine
disease IDO nucleic acid
drug DRUGBANK Gold
disease MESH immobilization
disease IDO site

Original Article

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