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Engineering three-dimensional microenvironments towards in vitro disease models of the central nervous system

机译:工程三维微环境朝向中枢神经系统的体外疾病模型

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摘要

The central nervous system (CNS) has a highly complex biophysical and biochemical environment. Despite decades of intensive research, it is still an enormous challenge to restore its functions and regenerate lost or damaged CNS tissues. Current treatment strategies remain sub-optimal because of (1) the hostile microenvironment created post CNS injury, and (2) insufficient understanding of the pathophysiology of acute and chronic CNS diseases. Two-dimensional (2D) in vitro models have provided tremendous insights into a wide range of cellular interactions. However, they fail to recapitulate the complex cellular, topographical, biochemical, and mechanical stimuli found within the natural three-dimensional (3D) CNS. Also, the growing ethical needs to use fewer animals for research further necessitates 3D in vitro models to mimic all or part of the CNS. In this review, we critically appraise the status quo and design considerations of 3D in vitro neural disease and injury models that resemble in vivo conditions. This review mainly focuses on the most recent advances in tissue engineering techniques such as microfluidics, organs-on-a-chip and stem cell technology. Furthermore, we review recent models aiming to elucidate the underlying pathophysiology of CNS diseases. If armed with deeper understanding, it will be possible to develop high-throughput drug screening platforms and new treatments for CNS diseases and injuries.
机译:中枢神经系统(CNS)具有高度复杂的生物物理和生物化学环境。尽管有数十年的密集研究,但仍然是恢复其功能和再生丢失或受损的CNS组织仍然是一项巨大挑战。目前的治疗策略仍然是次优,因为(1)敌对的CNS损伤创建的敌对微环境,和(2)对急性和慢性CNS疾病的病理生理学的理解不足。二维(2D)体外模型对广泛的细胞相互作用提供了巨大的见解。然而,它们未能重新承载在天然三维(3D)CNS内的复杂细胞,地形,生物化学和机械刺激。此外,越来越多的道德需要使用较少的动物进行研究进一步需要3D体外模型来模拟所有或部分CNS。在本综述中,我们批判性地评估了3D体外神经疾病的现状和设计考虑,类似于体内条件的损伤模型。本综述主要侧重于组织工程技术的最新进展,例如微流体,芯片和干细胞技术。此外,我们审查了最近的模型,旨在阐明CNS疾病的潜在病理生理学。如果掌握更深入的理解,则可以开发高通量药物筛查平台和用于CNS疾病和伤害的新治疗方法。

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