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3D Printing of Layered Gradient Pore Structure of Brain-like Tissue

机译:3D印刷脑状组织的分层梯度孔隙结构

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摘要

The pathological research and drug development of brain diseases require appropriate brain models. Given the complex, layered structure of the cerebral cortex, as well as the constraints on the medical ethics and the inaccuracy of animal models, it is necessary to construct a brain-like model in vitro. In this study, we designed and built integrated three-dimensional (3D) printing equipment for cell printing/culture, which can guarantee cell viability in the printing process and provide the equipment foundation for manufacturing the layered structures with gradient distribution of pore size. Based on this printing equipment, to achieve the purpose of printing the layered structures with multiple materials, we conducted research on the performance of bio-inks with different compositions and optimized the printing process. By extruding and stacking materials, we can print the layered structure with the uniform distribution of cells and the gradient distribution of pore sizes. Finally, we can accurately print a structure with 30 layers. The line width (resolution) of the printed monolayer structure was about 478 mm, the forming accuracy can reach 97.24%, and the viability of cells in the printed structure is as high as 94.5%.
机译:脑病的病理研究和药物开发需要适当的脑模型。鉴于大脑皮质的复杂分层结构,以及对医学伦理学的约束以及动物模型的不准确性,有必要在体外构建脑状模型。在本研究中,我们设计和建立了用于细胞印刷/培养的集成三维(3D)印刷设备,可以保证在印刷过程中的细胞活力,并为制造具有孔径梯度分布的层状结构提供设备基础。基于该印刷设备,为了达到用多种材料印刷分层结构的目的,我们对不同组成的生物油墨的性能进行了研究,并优化了印刷过程。通过挤出和堆叠材料,我们可以用细胞的均匀分布和孔径的梯度分布打印层状结构。最后,我们可以准确地打印有30层的结构。印刷单层结构的线宽(分辨率)约为478mm,形成精度可达到97.24%,印刷结构中细胞的可行性高达94.5%。

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