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Quiros Solano, W.F. (author), Gaio, N. (author), Silvestri, C. (author), Arik, Y.B. (author), Stassen, O.M.J.A. (author), van der Meer, A.D. (author), Bouten, C.V.C. (author), van den Berg, A. (author), Dekker, R. (author), Sarro, Pasqualina M (author)
We present a novel method to easily and reliably transfer highly porous, large area, thin microfabricated Polydimethylsiloxane (PDMS) porous membranes on Lab-on-Chip (LOC) and Organ-on-Chip (OOC) devices. The use of silicon as carrier substrate and a water-soluble sacrificial layer allows a simple and reproducible transfer of the membranes to...
conference paper 2018
document
Mastrangeli, Massimo (author), Aydogmus, H. (author), Dostanic, M. (author), Motreuil-Ragot, P.A. (author), Revyn, N. (author), de Wagenaar, B. (author), Dekker, R. (author), Sarro, Pasqualina M (author)
Stemming from the convergence of tissue engineering and microfluidics, organ-on-chip (OoC) technology can reproduce in vivo-like dynamic microphysiological environments for tissues in vitro. The possibility afforded by OoC devices of realistic recapitulation of tissue and organ (patho)physiology may hold the key to bridge the current...
conference paper 2021
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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
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Gaio, N. (author), van Meer, B. (author), Quiros Solano, W.F. (author), Bergers, L. (author), van de Stolpe, A. (author), Mummery, CL (author), Sarro, Pasqualina M (author), Dekker, R. (author)
Organ-on-Chips (OOCs) are micro-fabricated devices which are used to culture cells in order to mimic functional units of human organs. The devices are designed to simulate the physiological environment of tissues in vivo. Cells in some types of OOCs can be stimulated in situ by electrical and/or mechanical actuators. These actuations can mimic...
journal article 2016
document
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
document
Quiros Solano, W.F. (author), Gaio, N. (author), Stassen, O.M.J.A. (author), Arik, Y.B. (author), Silvestri, C. (author), Van Engeland, N.C.A. (author), Van der Meer, A. (author), Passier, R. (author), Sahlgren, C.M. (author), Bouten, C.V.C. (author), van den Berg, A. (author), Dekker, R. (author), Sarro, Pasqualina M (author)
We present a novel and highly reproducible process to fabricate transferable porous PDMS membranes for PDMS-based Organs-on-Chips (OOCs) using microelectromechanical systems (MEMS) fabrication technologies. Porous PDMS membranes with pore sizes down to 2.0 μm in diameter and a wide porosity range (2–65%) can be fabricated. To overcome issues...
journal article 2018
document
Quiros Solano, W.F. (author), Gaio, N. (author), Silvestri, C. (author), Pandraud, G. (author), Dekker, R. (author), Sarro, Pasqualina M (author)
Organ-on-chip (OOC) is becoming the alternative tool to conventional in vitro screening. Heart-on-chip devices including microstructures for mechanical and electrical stimulation have been demonstrated to be advantageous to study structural organization and maturation of heart cells. This paper presents the development of metal and polymeric...
journal article 2019
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