Stop the beat to see the rhythm: excitation-contraction uncoupling in cardiac research

Author:

Swift Luther M.12,Kay Matthew W.3ORCID,Ripplinger Crystal M.4ORCID,Posnack Nikki Gillum1256ORCID

Affiliation:

1. Children’s National Heart Institute, Children’s National Hospital, Washington, District of Columbia

2. Sheikh Zayed Institute for Pediatric Surgical Innovation, Children’s National Hospital, Washington, District of Columbia

3. Department of Biomedical Engineering, George Washington University, Washington, District of Columbia

4. Department of Pharmacology, University of California, Davis, California

5. Department of Pediatrics, George Washington University, Washington, District of Columbia

6. Department of Pharmacology and Physiology, George Washington University, Washington, District of Columbia

Abstract

Optical mapping is an imaging technique that is extensively used in cardiovascular research, wherein parameter-sensitive fluorescent indicators are used to study the electrophysiology and excitation-contraction coupling of cardiac tissues. Despite many benefits of optical mapping, eliminating motion artifacts within the optical signals is a major challenge, as myocardial contraction interferes with the faithful acquisition of action potentials and intracellular calcium transients. As such, excitation-contraction uncoupling agents are frequently used to reduce signal distortion by suppressing contraction. When compared with other uncoupling agents, blebbistatin is the most frequently used, as it offers increased potency with minimal direct effects on cardiac electrophysiology. Nevertheless, blebbistatin may exert secondary effects on electrical activity, metabolism, and coronary flow, and the incorrect administration of blebbistatin to cardiac tissue can prove detrimental, resulting in erroneous interpretation of optical mapping results. In this “Getting It Right” perspective, we briefly review the literature regarding the use of blebbistatin in cardiac optical mapping experiments, highlight potential secondary effects of blebbistatin on cardiac electrical activity and metabolic demand, and conclude with the consensus of the authors on best practices for effectively using blebbistatin in optical mapping studies of cardiac tissue.

Funder

Tobacco-Related Disease Research Program, University of California

HHS | NIH | National Heart, Lung, and Blood Institute

Publisher

American Physiological Society

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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