Department of Anatomy and Cell Biology, College of Medicine, Hanyang University, 17 Haengdang-dong, Seongdong-gu, Korea.
Biomaterials. 2010 May;31(15):4360-6. doi: 10.1016/j.biomaterials.2010.02.012. Epub 2010 Mar 3.
Human embryonic stem cells (hESCs) are pluripotent cells that have the potential to be used for tissue engineering and regenerative medicine. Repairing nerve injury by differentiating hESCs into a neuronal lineage is one important application of hESCs. Biochemical and biological agents are widely used to induce hESC differentiation. However, it would be better if we could induce differentiation of hESCs without such agents because these factors are expensive and it is difficult to control the optimal concentrations for efficient differentiation with reduced side effects. Moreover, the mechanism of differentiation induced by these factors is still not fully understood. In this study, we present evidence that nanoscale ridge/groove pattern arrays alone can effectively and rapidly induce the differentiation of hESCs into a neuronal lineage without the use any differentiation-inducing agents. Using UV-assisted capillary force lithography, we constructed nanoscale ridge/groove pattern arrays with a dimension and alignment that were finely controlled over a large area. Human embryonic stem cells seeded onto the 350-nm ridge/groove pattern arrays differentiated into neuronal lineage after five days, in the absence differentiation-inducing agents. This nanoscale technique could be used for a new neuronal differentiation protocol of hESCs and may also be useful for nanostructured scaffolding for nerve injury repair.
人类胚胎干细胞(hESCs)是多能细胞,具有用于组织工程和再生医学的潜力。通过将 hESC 分化为神经元谱系来修复神经损伤是 hESC 的一个重要应用。广泛使用生化和生物制剂来诱导 hESC 分化。然而,如果我们可以在没有这些试剂的情况下诱导 hESC 分化,那将会更好,因为这些因素昂贵,并且难以控制用于高效分化的最佳浓度,同时减少副作用。此外,这些因素诱导分化的机制仍不完全清楚。在这项研究中,我们提供了证据表明,纳米级脊/槽图案阵列本身可以有效地和快速地诱导 hESC 分化为神经元谱系,而无需使用任何诱导分化的试剂。我们使用紫外辅助毛细作用力光刻技术,构建了在大面积上具有精细控制的尺寸和对准的纳米级脊/槽图案阵列。在没有分化诱导剂的情况下,接种到 350nm 脊/槽图案阵列上的人类胚胎干细胞在五天后分化为神经元谱系。这种纳米技术可用于 hESC 的新的神经元分化方案,也可能对用于神经损伤修复的纳米结构支架有用。