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Layer-By-Layer: The Case for 3D Bioprinting Neurons to Create Patient-Specific Epilepsy Models

机译:逐层:3D生物打印神经元以创建患者特定的癫痫模型的案例

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摘要

The ability to create three-dimensional (3D) models of brain tissue from patient-derived cells, would open new possibilities in studying the neuropathology of disorders such as epilepsy and schizophrenia. While organoid culture has provided impressive examples of patient-specific models, the generation of organised 3D structures remains a challenge. 3D bioprinting is a rapidly developing technology where living cells, encapsulated in suitable bioink matrices, are printed to form 3D structures. 3D bioprinting may provide the capability to organise neuronal populations in 3D, through layer-by-layer deposition, and thereby recapitulate the complexity of neural tissue. However, printing neuron cells raises particular challenges since the biomaterial environment must be of appropriate softness to allow for the neurite extension, properties which are anathema to building self-supporting 3D structures. Here, we review the topic of 3D bioprinting of neurons, including critical discussions of hardware and bio-ink formulation requirements.
机译:从患者来源的细胞创建脑组织的三维(3D)模型的能力将为研究诸如癫痫和精神分裂症等疾病的神经病理学提供新的可能性。尽管类器官文化为患者特定模型提供了令人印象深刻的示例,但组织3D结构的产生仍然是一个挑战。 3D生物打印是一项快速发展的技术,其中封装在合适的生物墨水基质中的活细胞被打印以形成3D结构。 3D生物打印可以提供通过逐层沉积来组织3D神经元种群的能力,从而概括神经组织的复杂性。但是,由于生物材料环境必须具有适当的柔软性以允许神经突延伸,而神经元细胞的打印对于构建自支撑3D结构却是一种厌恶,因此印刷神经元细胞提出了特殊的挑战。在这里,我们回顾了神经元3D生物打印的主题,包括对硬件和生物墨水配方要求的重要讨论。

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