Chemistry - A European Journal · 2012 · 136 citations · 42 references
Microfluidic paper‑based analytical devices (μPADs) have been shown to enable low‑cost diagnostic tools for healthcare and environmental monitoring. The study introduces electrochemiluminescence (ECL) into μPADs and develops a wax‑patterned 3D paper‑based ECL immunoassay with high specificity, performance, and sensitivity for point‑of‑care testing. Using a home‑made device holder, the ECL reaction is triggered at room temperature with a tris(bipyridine)ruthenium–tri‑n‑propylamine system, enabling detection of carcinoembryonic antigen in clinical serum samples. This work expands the repertoire of sensitive and specific detection modes available to μPADs.
Abstract Recent research on microfluidic paper‐based analytical devices (μPADs) has shown that paper has great potential for the fabrication of low‐cost diagnostic devices for healthcare and environmental monitoring applications. Herein, electrochemiluminescence (ECL) was introduced for the first time into μPADs that were based on screen‐printed paper‐electrodes. To further perform high‐specificity, high‐performance, and high‐sensitivity ECL on μPADs for point‐of‐care testing (POCT), ECL immunoassay capabilities were introduced into a wax‐patterned 3D paper‐based ECL device, which was characterized by SEM, contact‐angle measurement, and electrochemical impedance spectroscopy. With the aid of a home‐made device‐holder, the ECL reaction was triggered at room temperature. By using a typical tris(bipyridine)ruthenium–tri‐ n ‐propylamine ECL system, this paper‐based ECL 3D immunodevice was applied to the diagnosis of carcinoembryonic antigens in real clinical serum samples. This contribution further expands the number of sensitive and specific detection modes of μPADs.
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Electrochemiluminescence (ECL)
Mark Richter · Chemical Reviews · 2004 · 2.5K citations
Andres W. Martinez, Scott T. Phillips, Emanuel Carrilho et al. · Analytical Chemistry · 2008 · 1.4K citations · Full text