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Three-Dimensional Control of Ion Channel Function through Optogenetics and Co-Culture
Author(s) -
Viviana Agus,
Paola Picardi,
Loredana Redaelli,
Lia Scarabottolo,
Stefan Lohmer
Publication year - 2017
Publication title -
slas discovery
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.907
H-Index - 75
eISSN - 2472-5560
pISSN - 2472-5552
DOI - 10.1177/2472555217722990
Subject(s) - optogenetics , bottleneck , ion channel , control channel , drug discovery , computer science , channel (broadcasting) , biological system , computational biology , nanotechnology , biochemical engineering , biophysics , chemistry , biology , neuroscience , materials science , bioinformatics , telecommunications , biochemistry , engineering , embedded system , telecommunications link , receptor
The lack of miniaturized and cost-effective methods to control cellular excitability with dosable and temporally precise electrical perturbations represents a long-lasting and unsolved bottleneck for ion channel drug discovery pipelines. Here we developed a high-throughput-compatible fluorescent-based cellular assay that combines optogenetics and co-culture approaches to obtain spatial, temporal, and quantitative control of ion channel activity. The modularity and increased flexibility of control of this light-tandem assay, combined with contained costs and compatibility with conventional drug-screening platforms, make this system suitable for temporally precise screening of ion channel function in controlled conformations and can also be used to recapitulate other complexly regulated biological processes.

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