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Updated: Sep 5, 2026

Development and Functionalization of Electrolyte-Gated Graphene Field-Effect Transistor for Biomarker Detection
Published on: February 1, 2022
Bifunctional Laser-Induced Graphene Platforms for Integrated Electrochemical Sensing and Matrix-Free LDI-MS
Wimala Karintrithip1, Pumidech Puthongkham2,3, Pranee Rattanawaleedirojn4
1International Graduate Program of Nanoscience and Technology, Chulalongkorn University, Phayathai Road, Patumwan, Bangkok10330, Thailand.
Abstract:
This work introduces a dual-modality analytical platform based on laser-induced graphene (LIG) for the label-free, noninvasive detection of the prostate cancer biomarker sarcosine in human urine. The tunable porosity and high conductivity of LIG enable its bifunctional application as both a sensitive electrochemical electrode and an efficient matrix for laser desorption/ionization mass spectrometry (LDI-MS). Functionalized with sarcosine oxidase and gold nanoparticles (AuNPs), the platform leverages the strengths of both modalities: the AuNPs/LIG electrode provides rapid electrochemical screening with a low limit of detection (LOD) of 2 μM, while the LDI-MS modality offers highly selective, matrix-free confirmation with an enhanced ultralow LOD of 500 nM. Both modalities share a wide linear range (5-50 μM), falling well below the clinical urinary threshold of 20 μM. By combining speed and simplicity from electrochemical sensing with the high sensitivity and molecular specificity of MS analysis on a single device, this platform demonstrates the orthogonal capabilities of LIG for robust, pretreatment-free cancer biomarker diagnostics.
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