Cardiomyocytes from failing human hearts showed no significant changes in the geometrical dimensions of the transverse-axial tubule system compared to non-failing myocardium.
Observational
Contrary to previous reports suggesting alterations in cardiac hypertrophy and failure, this study found no significant structural alterations in the transverse-axial tubule system of cardiomyocytes from failing human hearts.
Objective. The transverse-axial tubule system (TATS) of cardiomyocytes allows a spatially coordinated conversion of electrical excitation into an intracellular Ca(2+) signal and consequently contraction. Previous reports have indicated alterations of structure and/or volume of the TATS in cardiac hypertrophy and failure, suggesting a contribution to the impairment of excitation contraction coupling. To test whether structural alterations are present in human heart failure, the TATS was visualized in myocytes from failing and non-failing human hearts. Methods and Results. In freshly isolated myocytes, the plasmalemmal membranes were labeled with Di-8-ANEPPS and imaged using two-photon excitation at 780 nm. Optical sections were taken every 300 nm through the cells. After deconvolution, the TATS was determined within the 3D data sets, revealing no significant difference in normalized surface area or volume. To rule out possible inhomogeneity in the arrangement of the TATS, Euclidian distance maps were plotted for every section, allowing to measure the closest distance between any cytosolic and any membrane point. There was a trend towards greater spacing in cells from failing hearts, without statistical significance. Conclusion. Only small changes, but no significant changes in the geometrical dimensions of the TATS were observed in cardiomyocytes from failing compared to non-failing human myocardium.
Ohler et al. (Thu,) conducted a observational in Heart failure. Heart failure vs. Non-failing human hearts was evaluated on Geometrical dimensions of the transverse-axial tubule system (normalized surface area, volume, and spacing). Cardiomyocytes from failing human hearts showed no significant changes in the geometrical dimensions of the transverse-axial tubule system compared to non-failing myocardium.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: