Cha Sung Ho, Lee Hyun Jong, Koh Won-Gun
Department of Chemical and Biomolecular Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul, 120-749 South Korea.
Biomater Res. 2017 Jan 11;21:1. doi: 10.1186/s40824-016-0087-x. eCollection 2017.
The topographical cue is major influence on skeletal muscle cell culture because the structure is highly organized and consists of long parallel bundles of multinucleated myotubes that are formed by differentiation and fusion of myoblast satellite cells. In this technical report, we fabricated a multiscale scaffold using electrospinning and poly (ethylene glycol) (PEG) hydrogel micropatterns to monitor the cell behaviors on nano- and micro-alignment combined scaffolds with different combinations of angles.
We fabricated multiscale scaffolds that provide biocompatible and extracellular matrix (ECM)-mimetic environments via electrospun nanofiber and PEG hydrogel micro patterning. MTT assays demonstrated an almost four-fold increase in the proliferation rate during the 7 days of cell culture for all of the experimental groups. Cell orientation and elongation were measured to confirm the myogenic potential. On the aligned fibrous scaffolds, more than 90% of the cells were dispersed ± 20° of the fiber orientation. To determine cell elongation, we monitored nuclei aspect ratios. On a random nanofiber, the cells demonstrated an aspect ratio of 1.33, but on perpendicular and parallel nanofibers, the aspect ratio was greater than 2. Myosin heavy chain (MHC) expression was significantly higher i) on parallel compared to random fibers, ii) the 100 μm compared to the 200 μm line pattern. We confirmed the disparate trends of myotube formation that can be provoked through multi-dimensional scaffolds.
We studied more favorable environments that induce cell alignment and elongation for myogenesis by combining nano- and micro-scale patterns. The fabricated system can serve as a novel multi-dimensional platform to study in vitro cell behaviors.
地形线索对骨骼肌细胞培养有重大影响,因为其结构高度有序,由成肌细胞卫星细胞分化融合形成的多核肌管的长平行束组成。在本技术报告中,我们使用静电纺丝和聚乙二醇(PEG)水凝胶微图案制作了一种多尺度支架,以监测细胞在具有不同角度组合的纳米和微排列组合支架上的行为。
我们通过静电纺丝纳米纤维和PEG水凝胶微图案制作了提供生物相容性和细胞外基质(ECM)模拟环境的多尺度支架。MTT分析表明,所有实验组在细胞培养7天期间增殖率几乎增加了四倍。测量细胞取向和伸长以确认成肌潜力。在排列的纤维支架上,超过90%的细胞分散在纤维取向±20°范围内。为了确定细胞伸长,我们监测了细胞核纵横比。在随机纳米纤维上,细胞的纵横比为1.33,但在垂直和平行纳米纤维上,纵横比大于2。肌球蛋白重链(MHC)表达在以下方面显著更高:i)与随机纤维相比,在平行纤维上;ii)与200μm线图案相比,在100μm上。我们证实了通过多维支架可引发的肌管形成的不同趋势。
我们通过结合纳米和微米尺度图案研究了更有利于诱导细胞排列和伸长以促进成肌的环境。所制作的系统可作为研究体外细胞行为的新型多维平台。