López-Aparicio Jehú, Hautefeuille Mathieu, Herrera-Domínguez Sara, Razo-de-León Adriana, Cano-Jorge Mariel, Rojas-Benito Ixchetl, Centeno-Sierra Mariana, Fiordelisio-Coll Tatiana, Stern-Forgach Catalina Elizabeth
Facultad de Ciencias, Universidad Nacional Autónoma de México, Ciudad de México, México.
Laboratorio Nacional de Soluciones Biomiméticas para Diagnóstico y Terapia, Facultad de Ciencias, UNAM, Ciudad de México, México.
Biomed Microdevices. 2017 Mar;19(1):5. doi: 10.1007/s10544-016-0145-0.
In this work, we report a simple fabrication method for microelectrodes on a polymethylmethacrylate substrate, using a low-cost laser platform based on a CD-DVD unit for direct rapid-prototyping. We used this laser microfabrication technique to etch any desired design on polymethylmethacrylate substrates to produce microchannels with controlled geometry, with a highly repeatable micron-scale resolution. Those shallow microchannels were then filled with a conductive paste of material of our choice that was converted into microelectrodes of desired shapes and geometries after drying. To validate our process, different geometries, sizes and materials were used as electrodes, and then tested for amperometry and impedance measurements. Development of these microelectrodes is motivated by their potential application in sensors and biosensors, such as glucose and cell counting, as demonstrated in this paper.