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利用光学界面实现3D神经元构建体的类通路激活。

Pathway-like Activation of 3D Neuronal Constructs with an Optical Interface.

作者信息

Omidi Saeed, Berdichevsky Yevgeny

机构信息

Department of Bioengineering, Lehigh University, Bethlehem, PA 18015, USA.

Department of Electrical and Computer Engineering, Lehigh University, Bethlehem, PA 18015, USA.

出版信息

Biosensors (Basel). 2025 Mar 12;15(3):179. doi: 10.3390/bios15030179.

Abstract

Three-dimensional neuronal organoids, spheroids, and tissue mimics are increasingly used to model cognitive processes in vitro. These 3D constructs are also used to model the effects of neurological and psychiatric disorders and to perform computational tasks. The brain's complex network of neurons is activated via feedforward sensory pathways. Therefore, an interface to 3D constructs that models sensory pathway-like inputs is desirable. In this work, an optical interface for 3D neuronal constructs was developed. Dendrites and axons extended by cortical neurons within the 3D constructs were guided into microchannel-confined bundles. These neurite bundles were then optogenetically stimulated, and evoked responses were evaluated by calcium imaging. Optical stimulation was designed to deliver distinct input patterns to the network in the 3D construct, mimicking sensory pathway inputs to cortical areas in the intact brain. Responses of the network to the stimulation possessed features of neuronal population code, including separability by input pattern and mixed selectivity of individual neurons. This work represents the first demonstration of a pathway-like activation of networks in 3D constructs. Another innovation of this work is the development of an all-optical interface to 3D neuronal constructs, which does not require the use of expensive microelectrode arrays. This interface may enable the use of 3D neuronal constructs for investigations into cortical information processing. It may also enable studies into the effects of neurodegenerative or psychiatric disorders on cortical computation.

摘要

三维神经元类器官、球体和组织模拟物越来越多地用于在体外模拟认知过程。这些三维结构还用于模拟神经和精神疾病的影响以及执行计算任务。大脑复杂的神经元网络通过前馈感觉通路被激活。因此,需要一个与三维结构的接口,该接口能够模拟类似感觉通路的输入。在这项工作中,开发了一种用于三维神经元结构的光学接口。三维结构中皮层神经元延伸出的树突和轴突被引导到微通道限制的束中。然后对这些神经突束进行光遗传学刺激,并通过钙成像评估诱发反应。光学刺激旨在向三维结构中的网络传递不同的输入模式,模拟完整大脑中感觉通路对皮层区域的输入。网络对刺激的反应具有神经元群体编码的特征,包括按输入模式可分离以及单个神经元的混合选择性。这项工作首次展示了三维结构中网络的类似通路激活。这项工作的另一项创新是开发了一种用于三维神经元结构的全光学接口,该接口不需要使用昂贵的微电极阵列。该接口可能使三维神经元结构能够用于研究皮层信息处理。它还可能使人们能够研究神经退行性或精神疾病对皮层计算的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a190/11940104/85a41ee18cb9/biosensors-15-00179-g004.jpg

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