Division of Materials Technology, School of Materials Science and Engineering, Nanyang Technological University, Singapore, Singapore.
Tissue Eng Part C Methods. 2010 Oct;16(5):1011-21. doi: 10.1089/ten.TEC.2009.0604.
Direct laser writing on biodegradable polymer to create microchannels for aligning cells is presented here. This technique offers the advantages of ease-of-manufacturing, ease-of-design, high-speed single-step fabrication, and noncontacting to the material. In this work, microchannels of 100 microm width, 100 microm depth, and 50 microm intervals were created on a biodegradable polymer film directly using a Ti-sapphire femtosecond pulsed laser. Multiscale topological features were achieved as a result of the laser beam-material interaction. These topological features were used to guide cell alignment in the microchannels. We present results on the morphology of poly(L-lactide-co-epsilon-caprolactone) copolymer micromachined by femtosecond laser and demonstrate the attachment and alignment of C2C12 myoblast cells in the microchannels. C2C12 cells exhibited favorable attachment in the channels after 1 day of seeding. High degree of alignment was observed after 4 days as cells proliferated into a confluent patch inside the channels. This work demonstrated the potential of wavy surface features combined with appropriate channel size for high-density cell alignment using direct laser writing. This method also offers the opportunity to incorporate multiscale topological guidance on other biodegradable polymer implants, such as vascular scaffolds and stents, which require directed cell organization.
本文介绍了一种在可生物降解聚合物上直接激光写入以创建用于细胞对齐的微通道的方法。该技术具有易于制造、易于设计、高速单步制造以及与材料非接触的优点。在这项工作中,使用钛宝石飞秒脉冲激光直接在可生物降解聚合物薄膜上制造了 100μm 宽、100μm 深和 50μm 间隔的微通道。由于激光与材料的相互作用,实现了多尺度拓扑特征。这些拓扑特征被用来引导细胞在微通道中对齐。我们展示了飞秒激光微加工聚(L-丙交酯-共-ε-己内酯)共聚物的形貌,并证明了 C2C12 成肌细胞在微通道中的附着和对齐。细胞接种 1 天后,在通道中表现出良好的附着。培养 4 天后,当细胞在通道内增殖成致密斑块时,观察到高度的对齐。这项工作证明了使用直接激光写入,结合适当的通道尺寸,利用波状表面特征实现高密度细胞对齐的潜力。该方法还为其他可生物降解聚合物植入物(如血管支架和支架)提供了机会,这些植入物需要定向的细胞组织,可在其上结合多尺度拓扑引导。