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用于人类海马体类器官的三维液态金属神经界面

Three-dimensional liquid metal-based neuro-interfaces for human hippocampal organoids.

机构信息

Department of Biomedical Engineering, Southern University of Science and Technology, Shenzhen, China.

Mechanobiology Institute, National University of Singapore, Singapore, Singapore.

出版信息

Nat Commun. 2024 May 14;15(1):4047. doi: 10.1038/s41467-024-48452-5.

Abstract

Human hippocampal organoids (hHOs) derived from human induced pluripotent stem cells (hiPSCs) have emerged as promising models for investigating neurodegenerative disorders, such as schizophrenia and Alzheimer's disease. However, obtaining the electrical information of these free-floating organoids in a noninvasive manner remains a challenge using commercial multi-electrode arrays (MEAs). The three-dimensional (3D) MEAs developed recently acquired only a few neural signals due to limited channel numbers. Here, we report a hippocampal cyborg organoid (cyb-organoid) platform coupling a liquid metal-polymer conductor (MPC)-based mesh neuro-interface with hHOs. The mesh MPC (mMPC) integrates 128-channel multielectrode arrays distributed on a small surface area (~2*2 mm). Stretchability (up to 500%) and flexibility of the mMPC enable its attachment to hHOs. Furthermore, we show that under Wnt3a and SHH activator induction, hHOs produce HOPX and PAX6 progenitors and ZBTB20PROX1 dentate gyrus (DG) granule neurons. The transcriptomic signatures of hHOs reveal high similarity to the developing human hippocampus. We successfully detect neural activities from hHOs via the mMPC from this cyb-organoid. Compared with traditional planar devices, our non-invasive coupling offers an adaptor for recording neural signals from 3D models.

摘要

人诱导多能干细胞 (hiPSC) 衍生的人类海马体类器官 (hHO) 已成为研究神经退行性疾病(如精神分裂症和阿尔茨海默病)的有前途的模型。然而,使用商业多电极阵列 (MEA) 以非侵入方式获取这些游离类器官的电信息仍然是一个挑战。最近开发的三维 (3D) MEA 由于通道数量有限,仅获取了少量神经信号。在这里,我们报告了一种海马体半机械人器官 (cyb-organoid) 平台,该平台将基于液态金属-聚合物导体 (MPC) 的网格神经接口与 hHO 相结合。网格 MPC(mMPC) 集成了分布在小表面积 (~2*2 毫米) 上的 128 通道多电极阵列。mMPC 的拉伸性(高达 500%)和灵活性使其能够附着在 hHO 上。此外,我们表明,在 Wnt3a 和 SHH 激活剂诱导下,hHO 产生 HOPX 和 PAX6 祖细胞和 ZBTB20PROX1 颗粒状神经元。hHO 的转录组特征与人发育中的海马体高度相似。我们通过 cyb-organoid 中的 mMPC 成功地从 hHO 中检测到神经活动。与传统的平面设备相比,我们的非侵入式耦合为从 3D 模型记录神经信号提供了一种适配器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c67a/11094048/85e60b0b3513/41467_2024_48452_Fig1_HTML.jpg

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