Robinson T F, Cohen-Gould L, Remily R M, Capasso J M, Factor S M
Adv Myocardiol. 1985;5:243-55. doi: 10.1007/978-1-4757-1287-2_19.
The extracellular matrix of heart muscle contains a considerable variety of structures. We have systematically studied the morphology of these structures using several methods of fixation and microscopy. Endomysial connections between cells are comprised of struts of collagen [1] as well as combinations of elastin fibers, collagen fibers, and microfibrils. The rest of the extracellular matrix is filled with a polyanionic lattice of unit collagen fibrils, microthreads, and granules. In the course of these investigations, we have observed regions of structural continuity across the sarcolemma, from endomysial collagen struts to Z-bands. We have also correlated the mechanical resistance to stretch with orientation of epimysial collagen fibers and sarcomere lengths in living as well as fixed rat papillary muscles. Our observations suggest that the extracellular skeletal framework plays an important role in normal cardiac function.
心肌的细胞外基质包含相当多种类的结构。我们使用多种固定方法和显微镜技术系统地研究了这些结构的形态。细胞间的肌内膜连接由胶原支柱[1]以及弹性纤维、胶原纤维和微原纤维的组合构成。细胞外基质的其余部分充满了由单位胶原纤维、微丝和颗粒组成的聚阴离子晶格。在这些研究过程中,我们观察到了从肌内膜胶原支柱到Z线,跨越肌膜的结构连续性区域。我们还将活体和固定大鼠乳头肌中对拉伸的机械阻力与肌外膜胶原纤维的取向和肌节长度进行了关联。我们的观察结果表明,细胞外骨骼框架在正常心脏功能中起着重要作用。