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Aydogmus, H. (author), Hu, M. (author), Ivancevic, Lovro (author), Frimat, Jean Philippe (author), van den Maagdenberg, Arn M.J.M. (author), Sarro, Pasqualina M (author), Mastrangeli, Massimo (author)
Continuous monitoring of tissue microphysiology is a key enabling feature of the organ-on-chip (OoC) approach for in vitro drug screening and disease modeling. Integrated sensing units are particularly convenient for microenvironmental monitoring. However, sensitive in vitro and real-time measurements are challenging due to the inherently...
journal article 2023
document
Kasi, D.G. (author), de Graaf, M.N.S. (author), Motreuil-Ragot, P.A. (author), Frimat, Jean-Phillipe M. S. (author), Ferrari, Michel D. (author), Sarro, Pasqualina M (author), Mastrangeli, Massimo (author), van den Maagdenberg, Arn M.J.M. (author), Mummery, Christine (author), Orlova, Valeria (author)
Organ-on-a-chip (OoC) and microfluidic devices are conventionally produced using microfabrication procedures that require cleanrooms, silicon wafers, and photomasks. The prototyping stage often requires multiple iterations of design steps. A simplified prototyping process could therefore offer major advantages. Here, we describe a rapid and...
journal article 2022
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Revyn, N. (author), Hu, Michel H.Y. (author), Frimat, Jean-Philippe (author), de Wagenaar, B. (author), van den Maagdenberg, Arn M.J.M. (author), Sarro, Pasqualina M (author), Mastrangeli, Massimo (author)
We present preliminary recordings on chip of three-dimensional (3D) electric neuronal activity from cultures of cortical neurons derived from human-induced pluripotent stem cells (hiPSCs). The recordings were obtained through 3D microelectrode arrays (MEAs) composed of truncated, 90 μm-high Si micropyramids endowed with multiple, electrically...
conference paper 2022
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Revyn, N. (author), Hu, Michel (author), Frimat, Jean-Philippe (author), van den Maagdenberg, Arn M.J.M. (author), Sarro, Pasqualina M (author), Mastrangeli, Massimo (author)
poster 2021
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Aydogmus, H. (author), van Ginkel, H.J. (author), Galiti, A-D. (author), Hu, M.H.Y. (author), Frimat, J-P. (author), van den Maagdenberg, A.M.J.M. (author), Zhang, Kouchi (author), Mastrangeli, Massimo (author), Sarro, Pasqualina M (author)
poster 2021
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Aydogmus, H. (author), van Ginkel, H.J. (author), Galiti, Anna-Danai (author), Hu, Michel (author), Frimat, Jean-Philippe (author), van den Maagdenberg, Arn (author), Zhang, Kouchi (author), Mastrangeli, Massimo (author), Sarro, Pasqualina M (author)
Continuous monitoring of tissue microphysiology is a key enabling feature of the organ-on-chip (OoC) approach for drug screening and disease modeling. Sensing charged species in OoC tissue microenvironments is thereby essential. However, the inherently small (i.e., cm) size of OoC devices poses the challenging requirement to integrate...
conference paper 2021
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Motreuil-Ragot, P.A. (author), Hunt, A. (author), Kasi, Dhanesh (author), Brajon, B. (author), van den Maagdenberg, Arn M.J.M. (author), Orlova, Valeria (author), Mastrangeli, Massimo (author), Sarro, Pasqualina M (author)
Organ-on-chip (OoC) devices are in rising demand for high-throughput and low-cost development and toxico-logical screening of chemicals and pharmaceuticals, as they accurately mimic in vitro physiological conditions as in the human body. In particular, OoCs are urgently needed for screening cardiovascular drug toxicity. Physiological relevance...
conference paper 2020
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de Rijk, T.M. (author), Hu, Michel (author), Frimat, Jean-Philippe (author), van den Maagdenberg, Arn M.J.M. (author), Sarro, Pasqualina M (author), Mastrangeli, Massimo (author)
In vitro study of high-level neurobiological systems requires three-dimensional (3D) neuronal cultures [1]. Meas-uring responses along all three spatial dimensions is critical to record electric activity inside 3D neuronal models, such as organoids and other 3D brain tissue constructs. However, this lies beyond the capacity of 2D microelec-trode...
poster 2020
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Motreuil-Ragot, P.A. (author), Hunt, A. (author), Kasi, Danesh (author), Brajon, B. (author), van den Maagdenberg, Arn M.J.M. (author), Orlova, Valeria (author), Mastrangeli, Massimo (author), Sarro, Pasqualina M (author)
•Actuation has been succesfully performed for 2h30 with no side effects nor<br/>delimination of the human tissue <br/>•0.1 % strain has been achieved during the actutaion mode, close to the<br/>strain experienced in vivo by vSMCs <br/>•0.72 V/mm sensitivity has been shown on the sensing mode <br/>•Batch fabrication and downscaling will be...
poster 2019
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