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Martins Da Ponte, R. (author), Gaio, N. (author), van Zeijl, H.W. (author), Vollebregt, S. (author), Dijkstra, Paul (author), Dekker, R. (author), Serdijn, W.A. (author), Giagka, Vasiliki (author)
One of the many applications of organ-on-a-chip (OOC) technology is the study of biological processes in human induced pluripotent stem cells (iPSCs) during pharmacological drug screening. It is of paramount importance to construct OOCs equipped with highly compact in situ sensors that can accurately monitor, in real time, the extracellular...
journal article 2021
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Waafi, Affan K. (author), Gaio, N. (author), Quiros Solano, W.F. (author), Dijkstra, Paul (author), Sarro, Pasqualina M (author), Dekker, R. (author)
We present the first Organ-on-Chip equipped with a low-impedance Poly(3,4-ethylenedioxythiophene) polystyrene sulfonate (PEDOT:PSS) MicroElectrode Array (MEA). The novel device allows simultaneous mechanical stimulation with a stretchable PDMS membrane and electrical monitoring via the PEDOT:PSS MEA of multiple in vitro cell cultures. The...
journal article 2020
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Gaio, N. (author), Waafi, A. (author), Vlaming, M.L.H. (author), Boschman, E. (author), Dijkstra, P. (author), Nacken, O. (author), Braam, S.R. (author), Boucsein, C. (author), Sarro, Pasqualina M (author), Dekker, R. (author)
This work presents the first multi-well plate that allows for simultaneous mechanical stimulation and electrical monitoring of multiple in-vitro cell cultures in parallel. Each well of the plate is equipped with an Organ-on-Chip (OOC) device consisting of a stretchable micro-electrode array (MEA). For the first time, a film assisted molding ...
conference paper 2018