[神经微生理系统(MPS)的潜力]。

Ikuro Suzuki
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引用次数: 0

摘要

利用人源性神经细胞的体外化合物评价开始纳入微生理系统(MPS)。神经MPS不仅包括微流体装置,而且最近也认识到神经类器官是可行的MPS平台。利用微流体装置的神经MPS的历史是广泛的,随着控制细胞体定位和神经突生长的模型的发展,以及通过异质细胞类型的连接模拟神经元投射的模型。本文介绍了通过机器学习预测周围神经病变的例子,应用于微流体装置中的细胞体和神经突图像,以及运动神经元-骨骼肌模型的构建。此外,它还讨论了使用反映生物脑结构的脑类器官对Dravet综合征禁忌症药物的反应。在神经MPS的药物发现应用中,开发和利用适合特定目标的MPS至关重要,以确保未来进展的生物学相关性和可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[The potential of neural microphysiological systems (MPS)].

In vitro compound evaluation using human-derived neural cells is beginning to incorporate microphysiological systems (MPS). Neural MPS includes not only microfluidic devices but has also recently recognized neural organoids as viable MPS platforms. The history of neural MPS utilizing microfluidic devices is extensive, with the development of models that control the positioning of cell bodies and neurite outgrowth, as well as models that mimic neuronal projections through the connection of heterogeneous cell types. This paper presents examples of predicting peripheral neuropathy through machine learning applied to images of cell bodies and neurites in microfluidic devices, as well as the construction of a motor neuron-skeletal muscle model. Additionally, it discusses the responses to contraindicated drugs in Dravet syndrome using brain organoids that reflect biological brain structures. In drug discovery applications of neural MPS, it is essential to develop and utilize appropriate MPS tailored to specific objectives, ensuring biological relevance and reliability for future advancements.

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来源期刊
Folia Pharmacologica Japonica
Folia Pharmacologica Japonica Pharmacology, Toxicology and Pharmaceutics-Pharmacology
CiteScore
0.40
自引率
0.00%
发文量
132
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