Institute Pasteur Cenci-Bolognetti, DAHFMO-Unit of Histology and Medical Embryology, IIM, Sapienza University of Rome, Italy.
Sci Rep. 2013;3:1420. doi: 10.1038/srep01420.
The object of this study was to develop an in vitro bioengineered three-dimensional vascularized skeletal muscle tissue, named eX-vivo Muscle Engineered Tissue (X-MET). This new tissue contains cells that exhibit the characteristics of differentiated myotubes, with organized contractile machinery, undifferentiated cells, and vascular cells capable of forming "vessel-like" networks. X-MET showed biomechanical properties comparable with that of adult skeletal muscles; thus it more closely mimics the cellular complexity typical of in vivo muscle tissue than myogenic cells cultured in standard monolayer conditions. Transplanted X-MET was able to mimic the activity of the excided EDL muscle, restoring the functionality of the damaged muscle. Our results suggest that X-MET is an ideal in vitro 3D muscle model that can be employed to repair muscle defects in vivo and to perform in vitro studies, limiting the use of live animals.
本研究的目的是开发一种体外生物工程三维血管化骨骼肌组织,命名为 eX-vivo Muscle Engineered Tissue (X-MET)。这种新组织包含表现出分化肌管特征的细胞,具有组织化的收缩机制、未分化的细胞和能够形成“类似血管”网络的血管细胞。X-MET 表现出与成人骨骼肌相当的生物力学特性;因此,与在标准单层培养条件下培养的成肌细胞相比,它更能模拟体内肌肉组织的典型细胞复杂性。移植的 X-MET 能够模拟 EDL 肌肉的活动,恢复受损肌肉的功能。我们的结果表明,X-MET 是一种理想的体外 3D 肌肉模型,可用于体内修复肌肉缺陷,并进行体外研究,从而限制活体动物的使用。