Huang Ngan F, Patel Shyam, Thakar Rahul G, Wu Jun, Hsiao Benjamin S, Chu Benjamin, Lee Randall J, Li Song
Joint Graduate Program in Bioengineering, University of California San Francisco/University of California Berkeley, 94720-1762, USA.
Nano Lett. 2006 Mar;6(3):537-42. doi: 10.1021/nl060060o.
Skeletal muscle consists of parallel bundles of myotubes formed by the fusion of myoblasts. We fabricated nanofibrous and micropatterned polymers as cell culture substrates to guide the morphogenesis of muscular tissue. The nanoscale and microscale topographic features regulate cell and cytoskeleton alignment, myotube assembly, myotube striation, and myoblast proliferation. This bottom-up approach from nanoscale to tissue level demonstrates the potential of nanofibrous polymers for engineering the assembly of cell and tissue structure.
骨骼肌由成肌细胞融合形成的平行肌管束组成。我们制备了纳米纤维和微图案化聚合物作为细胞培养底物,以引导肌肉组织的形态发生。纳米级和微米级的地形特征调节细胞和细胞骨架的排列、肌管组装、肌管条纹以及成肌细胞增殖。这种从纳米级到组织水平的自下而上的方法证明了纳米纤维聚合物在构建细胞和组织结构组装方面的潜力。