| Literature DB >> 34400840 |
Lyudmyla Borysova1, Y Y Hanson Ng1, Edward S Wragg1, Lillian E Wallis1, Emily Fay1, Raimondo Ascione2, Kim A Dora3.
Abstract
Ca2+ handling within cardiac myocytes underpins coordinated contractile function within the beating heart. This protocol enables high spatial and temporal Ca2+ imaging of ex vivo multicellular myocardial strips. The endocardial surface is retained, and strips of 150-300-µm thickness are dissected, loaded with Ca2+ indicators and mounted within 1.5 h. A list of the equipment and reagents used and the key methodological aspects allowing the use of this technique on strips from any chamber of the mammalian heart are described. We have successfully used this protocol on human, pig and rat biopsy samples. On use of this protocol with intact endocardial endothelium, we demonstrated that the myocytes develop asynchronous spontaneous Ca2+ events, which can be ablated by electrically evoked Ca2+ transients, and subsequently redevelop spontaneously after cessation of stimulation. This protocol thus offers a rapid and reliable method for studying the Ca2+ signaling underpinning cardiomyocyte contraction, in both healthy and diseased tissue.Entities:
Mesh:
Year: 2021 PMID: 34400840 DOI: 10.1038/s41596-021-00590-6
Source DB: PubMed Journal: Nat Protoc ISSN: 1750-2799 Impact factor: 13.491