From the Institute of Cardiovascular Sciences, Faculty of Medical and Human Sciences, University of Manchester, United Kingdom.
Circ Res. 2013 Nov 8;113(11):1219-30. doi: 10.1161/CIRCRESAHA.113.301348. Epub 2013 Sep 17.
The organization of the transverse-tubular (t-t) system and relationship to the sarcoplasmic reticulum (SR) underpins cardiac excitation-contraction coupling. The architecture of the SR, and relationship with the t-ts, is not well characterized at the whole-cell level. Furthermore, little is known regarding changes to SR ultrastructure in heart failure.
The aim of this study was to unravel interspecies differences and commonalities between the relationship of SR and t-t networks within cardiac myocytes, as well as the modifications that occur in heart failure, using a novel high-resolution 3-dimensional (3D) imaging technique.
Using serial block face imaging coupled with scanning electron microscopy and image analysis, we have generated 3D reconstructions of whole cardiomyocytes from sheep and rat left ventricle, revealing that the SR forms a continuous network linking t-ts throughout the cell in both species. In sheep, but not rat, the SR has an intimate relationship with the sarcolemma forming junctional domains. 3D reconstructions also reveal details of the sheep t-t system. Using a model of tachypacing-induced heart failure, we show that there are populations of swollen and collapsed t-ts, patches of SR tangling, and disorder with rearrangement of the mitochondria.
We provide the first high-resolution 3D structure of the SR network showing that it forms a cell-wide communication pipeline facilitating Ca(2+) diffusion, buffering, and synchronicity. The distribution of the SR within the cell is related to interspecies differences in excitation-contraction coupling, and we report the first detailed analysis of SR remodeling as a result of heart failure.
横管(t-t)系统的组织与肌浆网(SR)的关系是心脏兴奋-收缩偶联的基础。SR 的结构及其与 t-ts 的关系在全细胞水平上尚未得到很好的描述。此外,对于心力衰竭时 SR 超微结构的变化知之甚少。
本研究旨在利用一种新的高分辨率三维(3D)成像技术,揭示 SR 与 t-t 网络在心肌细胞内的关系的种间差异和共性,以及心力衰竭时发生的变化。
我们使用连续块面成像结合扫描电子显微镜和图像分析,对来自绵羊和大鼠左心室的全心肌细胞进行了 3D 重建,结果表明 SR 在两种物种中都形成了一个连续的网络,将 t-ts 连接到整个细胞。在绵羊中,但不是在大鼠中,SR 与肌膜形成紧密的连接域,形成连接域。3D 重建还揭示了绵羊 t-t 系统的细节。利用快速起搏诱导心力衰竭的模型,我们发现存在肿胀和塌陷的 t-ts 群体、SR 纠结的斑块以及线粒体排列紊乱和重排。
我们提供了 SR 网络的首个高分辨率 3D 结构,表明它形成了一个细胞范围的通信管道,促进 Ca(2+)扩散、缓冲和同步。SR 在细胞内的分布与兴奋-收缩偶联的种间差异有关,我们报告了心力衰竭时 SR 重塑的首次详细分析。