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用于重建中枢神经系统疾病的人类微型大脑。

Human mini-brains for reconstituting central nervous system disorders.

机构信息

Institute of Quantum Biophysics, Sungkyunkwan University, Suwon, Republic of Korea.

Department of Biophysics, Sungkyunkwan University, Suwon, Republic of Korea.

出版信息

Lab Chip. 2023 Mar 1;23(5):964-981. doi: 10.1039/d2lc00897a.

Abstract

Neurological disorders in the central nervous system (CNS) are progressive and irreversible diseases leading to devastating impacts on patients' life as they cause cognitive impairment, dementia, and even loss of essential body functions. The development of effective medicines curing CNS disorders is, however, one of the most ambitious challenges due to the extremely complex functions and structures of the human brain. In this regard, there are unmet needs to develop simplified but physiopathologically-relevant brain models. Recent advances in the microfluidic techniques allow multicellular culture forming miniaturized 3D human brains by aligning parts of brain regions with specific cells serving suitable functions. In this review, we overview designs and strategies of microfluidics-based human mini-brains for reconstituting CNS disorders, particularly Alzheimer's disease (AD), Parkinson's disease (PD), traumatic brain injury (TBI), vascular dementia (VD), and environmental risk factor-driven dementia (ERFD). Afterward, the applications of the mini-brains in the area of medical science are introduced in terms of the clarification of pathogenic mechanisms and identification of promising biomarkers. We also present expanded model systems ranging from the CNS to CNS-connecting organ axes to study the entry pathways of pathological risk factors into the brain. Lastly, the advantages and potential challenges of current model systems are addressed with future perspectives.

摘要

中枢神经系统(CNS)中的神经紊乱是进行性和不可逆转的疾病,它们会导致认知障碍、痴呆,甚至丧失基本的身体功能,从而给患者的生活带来毁灭性的影响。然而,由于人脑结构和功能极其复杂,开发治疗 CNS 紊乱的有效药物是最具挑战性的目标之一。在这方面,人们需要开发简化但与病理生理学相关的大脑模型。微流控技术的最新进展允许通过将脑区的部分与具有适当功能的特定细胞对齐来形成微型化的 3D 人类大脑,从而进行多细胞培养。在这篇综述中,我们概述了基于微流控的人类迷你脑用于重建 CNS 紊乱的设计和策略,特别是阿尔茨海默病(AD)、帕金森病(PD)、创伤性脑损伤(TBI)、血管性痴呆(VD)和环境风险因素驱动的痴呆(ERFD)。之后,我们介绍了迷你脑在医学领域的应用,包括阐明发病机制和鉴定有前途的生物标志物。我们还展示了从 CNS 到 CNS 连接器官轴的扩展模型系统,以研究病理风险因素进入大脑的途径。最后,我们讨论了当前模型系统的优缺点和潜在挑战,并提出了未来的展望。

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