Author
Listed:
- Michael Rieger
(University of Bern)
- Christian Dellenbach
(University of Bern)
- Johannes vom Berg
(Institute of Laboratory Animal Science, University of Zürich)
- Jane Beil-Wagner
(Institute of Laboratory Animal Science, University of Zürich)
- Ange Maguy
(University of Bern)
- Stephan Rohr
(University of Bern)
Abstract
During the last decade, cardiac optogenetics has turned into an essential tool for investigating cardiac function in general and for assessing functional interactions between different myocardial cell types in particular. To advance exploitation of the unique research opportunities offered by this method, we develop a panoramic opto-electrical measurement and stimulation (POEMS) system for mouse hearts. The core of the experimental platform is composed of 294 optical fibers and 64 electrodes that form a cup which embraces the entire ventricular surface of mouse hearts and enables straightforward ‘drop&go’ experimentation. The flexible assignment of fibers and electrodes to recording or stimulation tasks permits a precise tailoring of experiments to the specific requirements of individual optogenetic constructs thereby avoiding spectral congestion. Validation experiments with hearts from transgenic animals expressing the optogenetic voltage reporters ASAP1 and ArcLight-Q239 demonstrate concordance of simultaneously recorded panoramic optical and electrical activation maps. The feasibility of single fiber optical stimulation is proven with hearts expressing the optogenetic voltage actuator ReaChR. Adaptation of the POEMS system to larger hearts and incorporation of additional sensors can be achieved by redesigning the system-core accordingly.
Suggested Citation
Michael Rieger & Christian Dellenbach & Johannes vom Berg & Jane Beil-Wagner & Ange Maguy & Stephan Rohr, 2021.
"Enabling comprehensive optogenetic studies of mouse hearts by simultaneous opto-electrical panoramic mapping and stimulation,"
Nature Communications, Nature, vol. 12(1), pages 1-13, December.
Handle:
RePEc:nat:natcom:v:12:y:2021:i:1:d:10.1038_s41467-021-26039-8
DOI: 10.1038/s41467-021-26039-8
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