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A Simple; Robust Method for Cellular Electrical Interfacing Using Molecular Patterning

delete2026-04-14
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PRE
AI
J
Jason D. Fabbri *
J
John W. Stanton
R
Richard Z. Zhuang
A
Amirali Zangiabadi
G
Gordana Vunjak‐Novakovic
K
Kenneth L. Shepard
DOI:10.1021/acsami.5c25911delete
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Abstract

Abstract

En 中文
We present a simple and robust strategy for improving the signal levels of microelectrode array (MEA) recordings from cultures of electrically excitable cells through the engineering of the dielectric surface surrounding the electrodes. A patterned two-component self-assembled monolayer (SAM)–cell membrane interface introduced onto this dielectric surface improves the seal impedance between the cell and MEA, increasing the amplitude of the recorded signals to more closely approach intracellular potentials. Application of this technique to cardiomyocytes derived from human induced pluripotent stem cells (iPSC) results in an almost 3-fold improvement in intracellular-like recording yield compared to traditional Matrigel coatings and a 3-fold increase in signal amplitude compared to a single-component SAM. This technique is simple to translate to most commercial and custom MEAs, including high-density complementary metal-oxide-semiconductor (CMOS) MEAs, and can be easily combined with nanowires, micromushrooms, and optimized electroporation sequences for further signal-level enhancements.
Keywords:
Coating materials
Electrochemical cells
Electrodes
Interfaces
Silica
self-assembled monolayer
microelectrode array
electrophysiology
intracellular recordings
cardiomyocytes
human induced pluripotent stem cells

Journal

A
ACS Applied Materials & Interfaces
IF:
0
Papers:
1.6K
Citations:
0

Organization

C
Columbia University
Scholars:
7.1W
Papers: 6.4W
Citations: 263
C
columbia university
Scholars:
4.6K
Papers: 2.0K
Citations: 2