Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5031399 | Biosensors and Bioelectronics | 2017 | 7 Pages |
Abstract
In this context, we developed a novel 384-multiwell microelectrode array (MMEA) based measurement system for the sensitive label-free real-time monitoring of neurodegenerative processes by impedance spectroscopy. With respect to the needs of productive screening systems for robust and reproducible measurements on high numbers of plates, we focused on reducing the critical contacting of more than 400 electrodes for a 384-MMEA. Therefore, we introduced an on top array of immersive counter electrodes that are individually addressed by a multiplexer and connected all measurement electrodes on the 384-MMEA to a single contact point. More strikingly, our novel approach provided a comparable signal stability and sensitivity similar to an array with integrated counter electrodes. Next, we optimized a SH-SY5Y cell based tauopathy model by introducing a novel 5-fold Tau mutation eliminating the need of artificial tauopathy induction. In combination with our novel 384-MMEA based measurement system, the concentration and time dependent neuroregenerative effect of the kinase inhibitor SRN-003-556 could be quantitatively monitored. Thus, our novel screening system could be a useful tool to identify and develop potential novel therapeutics in the field of Tau-related neurodegenerative diseases.
Related Topics
Physical Sciences and Engineering
Chemistry
Analytical Chemistry
Authors
Heinz-Georg Jahnke, Dana Krinke, Diana Seidel, Katharina Lilienthal, Sabine Schmidt, Ronny Azendorf, Michael Fischer, Till Mack, Frank Striggow, Holger Althaus, Andreas Schober, Andrea A. Robitzki,