Department of Biomechatronic Engineering, College of Biotechnology and Bioengineering , Sungkyunkwan University (SKKU) , Suwon , Gyeonggi-Do 16419 , South Korea.
Department of Otolaryngology , Chonnam National University Medical School , Gwangju 61469 , South Korea.
Nano Lett. 2019 Dec 11;19(12):8612-8620. doi: 10.1021/acs.nanolett.9b03182. Epub 2019 Nov 22.
Contact guidance can promote cell alignment and is thus widely employed in tissue regeneration. In particular, skeletal muscle consists of long fibrous bundles of multinucleated myotubes formed by the fusion and differentiation of the satellite cells of myoblasts. Herein, a functional bioink and cell-printing process supplemented with an electric field are proposed for obtaining highly aligned myoblasts in a collagen-based bioink. To achieve the goal, we mixed Au nanowires (GNWs) with the collagen-based bioink to provide aligned topographical cues to the laden cells. Because the aligned GNWs could clearly provide topographical cues to the cells, we adjusted various processing parameters (flow rate, nozzle speed, and processing temperature) and applied an external electric field to optimally align the GNWs. By selecting an appropriate condition, the GNWs in the printed C2C12-laden structure were well aligned in the printing direction, and they eventually induced a high degree of myoblast alignment and efficient myotube formation. Through the several in vitro cellular activities and in vivo works revealing the myogenesis of the cell-laden structure, we conclude that the collagen/GNW-based cell-laden structure fabricated using the proposed method is a new prospective platform for the effective formation of muscle tissues.
接触引导可以促进细胞排列,因此被广泛应用于组织再生。特别是骨骼肌由肌原细胞的卫星细胞融合和分化形成的长纤维束多核肌管组成。在此,提出了一种功能性生物墨水和细胞打印工艺,并辅以电场,以在基于胶原蛋白的生物墨水中获得高度排列的成肌细胞。为了实现这一目标,我们将金纳米线 (GNWs) 与基于胶原蛋白的生物墨混合,为负载细胞提供排列的地形线索。由于排列整齐的 GNWs 可以清晰地为细胞提供地形线索,我们调整了各种处理参数(流速、喷嘴速度和处理温度)并施加外部电场以最佳地对齐 GNWs。通过选择适当的条件,打印的 C2C12 负载结构中的 GNWs 在打印方向上得到很好的对齐,最终诱导出高度的成肌细胞对齐和有效的肌管形成。通过几项体外细胞活性和体内实验揭示细胞负载结构的成肌作用,我们得出结论,使用所提出的方法制造的基于胶原蛋白/GNW 的细胞负载结构是一种新的有前途的肌肉组织有效形成的平台。