A micro-LED array based platform for spatio-temporal optogenetic control of various cardiac models

Author:

Junge Sebastian,Ricci Signorini Maria Elena,Al Masri Masa,Gülink Jan,Brüning Heiko,Kasperek Leon,Szepes Monika,Bakar Mine,Gruh Ina,Heisterkamp Alexander,Torres-Mapa Maria Leilani

Abstract

AbstractOptogenetics relies on dynamic spatial and temporal control of light to address emerging fundamental and therapeutic questions in cardiac research. In this work, a compact micro-LED array, consisting of 16 × 16 pixels, is incorporated in a widefield fluorescence microscope for controlled light stimulation. We describe the optical design of the system that allows the micro-LED array to fully cover the field of view regardless of the imaging objective used. Various multicellular cardiac models are used in the experiments such as channelrhodopsin-2 expressing aggregates of cardiomyocytes, termed cardiac bodies, and bioartificial cardiac tissues derived from human induced pluripotent stem cells. The pacing efficiencies of the cardiac bodies and bioartificial cardiac tissues were characterized as a function of illumination time, number of switched-on pixels and frequency of stimulation. To demonstrate dynamic stimulation, steering of calcium waves in HL-1 cell monolayer expressing channelrhodopsin-2 was performed by applying different configurations of patterned light. This work shows that micro-LED arrays are powerful light sources for optogenetic control of contraction and calcium waves in cardiac monolayers, multicellular bodies as well as three-dimensional artificial cardiac tissues.

Funder

Horizon 2020

Federal Ministry of Education and Research, Germany

REBIRTH

German Research Foundation, Hearing4all

Gottfried Wilhelm Leibniz Universität Hannover

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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