Transparent Intracellular Sensing Platform with Si Needles for Simultaneous Live Imaging

Vertically ordered Si needles are of particular interest for long-term intracellular recording owing to their capacity to infiltrate living cells with negligible damage and minimal toxicity. Such intracellular recordings could greatly benefit from simultaneous live cell imaging without disrupting th...

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Veröffentlicht in:ACS nano 2023-12, Vol.17 (24), p.25014-25026
Hauptverfasser: Park, Woohyun, Kim, Eun Mi, Jeon, Yale, Lee, Junsang, Yi, Jonghun, Jeong, Jinheon, Kim, Bongjoong, Jeong, Byeong Guk, Kim, Dong Rip, Kong, Hyunjoon, Lee, Chi Hwan
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container_end_page 25026
container_issue 24
container_start_page 25014
container_title ACS nano
container_volume 17
creator Park, Woohyun
Kim, Eun Mi
Jeon, Yale
Lee, Junsang
Yi, Jonghun
Jeong, Jinheon
Kim, Bongjoong
Jeong, Byeong Guk
Kim, Dong Rip
Kong, Hyunjoon
Lee, Chi Hwan
description Vertically ordered Si needles are of particular interest for long-term intracellular recording owing to their capacity to infiltrate living cells with negligible damage and minimal toxicity. Such intracellular recordings could greatly benefit from simultaneous live cell imaging without disrupting their culture, contributing to an in-depth understanding of cellular function and activity. However, the use of standard live imaging techniques, such as inverted and confocal microscopy, is currently impeded by the opacity of Si wafers, typically employed for fabricating vertical Si needles. Here, we introduce a transparent intracellular sensing platform that combines vertical Si needles with a percolated network of Au–Ag nanowires on a transparent elastomeric substrate. This sensing platform meets all prerequisites for simultaneous intracellular recording and imaging, including electrochemical impedance, optical transparency, mechanical compliance, and cell viability. Proof-of-concept demonstrations of this sensing platform include monitoring electrical potentials in cardiomyocyte cells and in three-dimensionally engineered cardiovascular tissue, all while conducting live imaging with inverted and confocal microscopes. This sensing platform holds wide-ranging potential applications for intracellular research across various disciplines such as neuroscience, cardiology, muscle physiology, and drug screening.
doi_str_mv 10.1021/acsnano.3c07527
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subjects Cell Survival
Microscopy
Myocytes, Cardiac
Nanowires
Needles
title Transparent Intracellular Sensing Platform with Si Needles for Simultaneous Live Imaging
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