Fabrication of a simple 3D-printed microfluidic device with embedded electrochemiluminescence detection for rapid determination of sibutramine in dietary supplements

The design and fabrication of a simple 3D-printed platform with embedded electrochemiluminescence (ECL) detection for sibutramine determination is described. The microfluidic platform was fabricated by the fused deposition 3D-printing technique with polylactic acid filament, facilitated by computer-...

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Veröffentlicht in:Mikrochimica acta (1966) 2023-04, Vol.190 (4), p.145-145, Article 145
Hauptverfasser: Praoboon, Nisachon, Tangkuaram, Tanin, Kruefu, Viruntachar, Pookmanee, Pusit, Phaisansuthichol, Sirirat, Kuimalee, Surasak, Laorodphan, Nattapol, Satienperakul, Sakchai
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Sprache:eng
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Zusammenfassung:The design and fabrication of a simple 3D-printed platform with embedded electrochemiluminescence (ECL) detection for sibutramine determination is described. The microfluidic platform was fabricated by the fused deposition 3D-printing technique with polylactic acid filament, facilitated by computer-aided design (CAD). A three-electrode system was integrated into the device using graphene carbon paste as a working electrode, Ag/AgCl wire as a reference, and a graphite rod as a counter electrode. A further modification was carried out by applying bimetallic Au-Pt nanoparticle-supported multi-walled carbon nanotubes (MWCNT-Au-Pt) on the working electrode surface to enhance the electrocatalytic performance by exploiting the unique properties of nanomaterials. The analytical feasibility of the CAD-ECL sensor was tested through its application for the determination of sibutramine in dietary supplements. Under the optimized conditions, based on the enhancing effect of luminol emission, the device exhibited a linear calibration curve of the logarithmic sibutramine concentration versus ECL intensity in the range 5 × 10 −3 to 1 ng mL −1 . The limit of detection was 3 pg mL −1 with a relative standard deviation of 1.7% ( n  = 15). The 3D-printed prototype can be successfully applied to a small-scale analysis in a simple and cost-effective approach. Graphical Abstract
ISSN:0026-3672
1436-5073
DOI:10.1007/s00604-023-05725-y