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Laser Photoablation of Guidance Microchannels into Hydrogels Directs Cell Growth in Three Dimensions

机译:引导微通道进入水凝胶的激光光烧蚀指导细胞在三个维度上的生长

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摘要

Recent years have seen rapid progress in the engineering and application of biomaterials with controlled biological, physical, and chemical properties, and the development of associated methods for micropatterning of three-dimensional tissue-engineering scaffolds. A remaining challenge is the development of robust, flexible methods that can be used to create physical guidance structures in cell-seeded scaffolds independently of environmental constraints. Here we demonstrate that focal photoablation caused by pulsed lasers can generate guidance structures in transparent hydrogels, with feature control down to the micron scale. These photopatterned microchannels guide the directional growth of neurites from dorsal root ganglia. We characterize the effect of laser properties and biomaterial properties on microchannel formation in PEGylated fibrinogen hydrogels, and the effect of photoablation on neural outgrowth. This strategy could lead to the development of a new generation of guidance channels for treating nerve injuries, and the engineering of structured three-dimensional neuronal or nonneuronal networks.
机译:近年来,在具有受控的生物学,物理和化学性质的生物材料的工程和应用以及在三维组织工程支架的微图案化相关方法的开发方面,已经取得了长足的进步。尚待解决的挑战是开发鲁棒,灵活的方法,该方法可用于在不受环境限制的情况下在播种细胞的支架中创建物理引导结构。在这里,我们证明了由脉冲激光引起的聚焦光烧蚀可以在透明水凝胶中产生引导结构,并控制至微米级的特征。这些光图案化的微通道指导背根神经节神经突的定向生长。我们表征了激光特性和生物材料特性对聚乙二醇化纤维蛋白原水凝胶中微通道形成的影响,以及光消融对神经生长的影响。这种策略可能会导致新一代治疗神经损伤的指导渠道的发展,以及结构化三维神经元或非神经元网络的工程化。

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