Bildyug N B, Voronkina I V, Smagina L V, Yudintseva N M, Pinaev G P
Institute of Cytology, Russian Academy of Sciences, Russia.
Biochemistry (Mosc). 2015 Oct;80(10):1318-26. doi: 10.1134/S0006297915100132.
The highly organized contractile apparatus of cardiomyocytes in heart tissue allows for their continuous contractility, whereas extracellular matrix components are synthesized and spatially organized by fibroblasts and endothelial cells. However, reorganization of the cardiomyocyte contractile apparatus occurs upon their 2D cultivation, which is accompanied by transient loss of their contractility and acquired capability of extracellular matrix synthesis (Bildyug, N. B., and Pinaev, G. P. (2013) Tsitologiya, 55, 713-724). In this study, matrix metalloproteinases were investigated at different times of cardiomyocyte 2D cultivation and 3D cultivation in collagen gels. It was found that cardiomyocytes in 2D culture synthesize matrix metalloproteinases MMP-2 and MMP-9, wherein their amount varies with the cultivation time. The peak MMP-9 amount is at early cultivation time, when the reorganization of cardiomyocyte contractile apparatus occurs, and the MMP-2 peak precedes the recovery of the initial organization of their contractile apparatus. Upon cardiomyocyte cultivation in 3D collagen gels, in which case their contractile apparatus does not rearrange, a steady small amount of MMP-2 and MMP-9 is observed. These data indicate that the cardiomyocyte contractile apparatus reorganization in culture is associated with synthesis and spatial organization of their own extracellular matrix.
心脏组织中心肌细胞高度有序的收缩装置使其能够持续收缩,而细胞外基质成分则由成纤维细胞和内皮细胞合成并进行空间组织。然而,心肌细胞在二维培养时其收缩装置会发生重组,这伴随着收缩性的短暂丧失以及获得细胞外基质合成能力(比尔迪格,N. B.,和平涅夫,G. P.(2013年)《组织学》,55卷,713 - 724页)。在本研究中,对心肌细胞在二维培养以及在胶原凝胶中三维培养的不同时间点的基质金属蛋白酶进行了研究。结果发现,二维培养的心肌细胞合成基质金属蛋白酶MMP - 2和MMP - 9,其含量随培养时间而变化。MMP - 9含量的峰值出现在培养早期,此时心肌细胞收缩装置发生重组,而MMP - 2的峰值出现在其收缩装置初始组织恢复之前。在心肌细胞于三维胶原凝胶中培养时,此时其收缩装置不会重新排列,观察到稳定少量的MMP - 2和MMP - 9。这些数据表明,培养中的心肌细胞收缩装置重组与其自身细胞外基质的合成及空间组织有关。