Chapter 8. 3D Tissue Modelling of the Central Nervous System

Seokyoung Bang, Seung Ryeol Lee, N. Jeon
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Abstract

In this chapter, we introduce a recapitulation of 3D brain tissue on a microfluidic platform. Reconstruction of specific features of the brain, rather than entire features, is a better strategy because of the complexity of the brain. Here, we would like to introduce two important features of the brain: the neural circuit and the blood–brain barrier. The structural and functional features of these were engineered in in vitro platforms. For the in vitro neural circuit, 3D axon bundle and synapse formation between the pre-synaptic and post-synaptic neuron group were focused on. These features were recapitulated by injecting Matrigel into the microfluidic platform and then modifying the internal density pattern of the Matrigel using a micro-post array and hydrostatic pressure. For the in vitro blood–brain barrier, the low permeability of the vascular network could be obtained by mimicking many direct contacts between the vascular network and the astrocytes. These features were created by constructing a co-culture system capable of supplying different media both inside and outside the vascular network. Recapitulation of 3D brain tissue in these microfluidic platforms may lead to improvements in neuroscience and neuropharmacology.
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第八章。中枢神经系统的三维组织建模
在本章中,我们介绍了在微流控平台上三维脑组织的概述。由于大脑的复杂性,重建大脑的特定特征,而不是整个特征,是一个更好的策略。在这里,我们想介绍大脑的两个重要特征:神经回路和血脑屏障。这些结构和功能特征在体外平台上进行了工程设计。体外神经回路主要观察突触前神经元组和突触后神经元组的三维轴突束和突触形成。通过将Matrigel注入微流控平台,然后使用微柱阵列和静水压力修改Matrigel的内部密度模式,再现了这些特征。对于体外血脑屏障,可以通过模拟血管网络与星形胶质细胞之间的许多直接接触来获得低通透性的血管网络。这些特征是通过构建一个能够在血管网络内外提供不同培养基的共培养系统而产生的。在这些微流控平台上再现三维脑组织可能会导致神经科学和神经药理学的改进。
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