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. 2023 May 15:228:115223.
doi: 10.1016/j.bios.2023.115223. Epub 2023 Mar 11.

A mesh microelectrode array for non-invasive electrophysiology within neural organoids

Affiliations

A mesh microelectrode array for non-invasive electrophysiology within neural organoids

Matthew McDonald et al. Biosens Bioelectron. .

Abstract

Organoids are emerging in vitro models of human physiology. Neural models require the evaluation of functional activity of single cells and networks, which is commonly measured by microelectrode arrays. The characteristics of organoids clash with existing in vitro or in vivo microelectrode arrays. With inspiration from implantable mesh electronics and growth of organoids on polymer scaffolds, we fabricated suspended hammock-like mesh microelectrode arrays for neural organoids. We have demonstrated the growth of organoids enveloping these meshes and the culture of organoids on meshes for up to one year. Furthermore, we present proof-of-principle recordings of spontaneous electrical activity across the volume of an organoid. Our concept enables a new class of microelectrode arrays for in vitro models of three-dimensional electrically active tissue.

Keywords: Brain organoid; Electrophysiology; In vitro test system; Microelectrode array; Microphysiological system.

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Conflict of interest statement

Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.

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