Jing Gao, Xiaolu Shi, Hong He, Juhong Zhang, Ding Lin, Guosheng Fu, Dongwu Lai
Journal: Journal of visualized experiments : JoVE 2018
PMID: 28994760
Intracellular calcium recycling plays a critical role in regulation of systolic and diastolic function in cardiomyocytes. Cardiac sarcoplasmic reticulum (SR) serves as a Ca reservoir for contraction, which reuptakes intracellular Ca during relaxation. The SR Ca reserve available for beats is determinate for cardiac contractibility, and the removal of intracellular Ca is critical for cardiac diastolic function. Under some pathophysiological conditions, such as diabetes and heart failure, impaired calcium clearance and SR Ca store in cardiomyocytes may be involved in the progress of cardiac dysfunction. Here, we describe a protocol to evaluate SRCa reserve and diastolic Ca removal. Briefly, a single cardiomyocyte was enzymatically isolated, and the intracellular Ca fluorescence indicated by Fura-2 was recorded by a calcium imaging system. To employ caffeine for inducing total SR Ca release, we preset an automatic perfusion switch program by interlinking the stimulation system and the perfusion system. Then, the mono-exponential curve fitting was used for analyzing decay time constants of calcium transients and caffeine-induced calcium pulses. Accordingly, the contribution of the SR Ca-ATPase (SERCA) and Na-Ca exchanger (NCX) to diastolic calcium removal was evaluated.
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