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体外和体内分析神经元极性。

In Vitro and In Vivo Analysis of Neuronal Polarity.

机构信息

Cell and Tissue Imaging Center, St. Jude Children's Research Hospital, Memphis, Tennessee, USA.

Center for Neuroscience, Indian Institute of Science, Bangalore, Karnataka, India.

出版信息

Methods Mol Biol. 2024;2831:113-132. doi: 10.1007/978-1-0716-3969-6_9.

Abstract

Neuronal development is characterized by the unidirectional flow of signal from the axon to the dendrites via synapses. Neuronal polarization is a critical step during development that allows the specification of the different neuronal processes as a single axon and multiple dendrites both structurally and functionally, allowing the unidirectional flow of information. Along with extrinsic and intrinsic signaling, a whole network of molecular complexes involved in positive and negative feedback loops play a major role in this critical distinction of neuronal processes. As a result, neuronal morphology is drastically altered during establishment of polarity. In this chapter, we discuss how we can analyze the morphological alterations of neurons in vitro in culture to assess the development and polarity status of the neuron. We also discuss how these studies can be conducted in vivo, where polarity studies pose a greater challenge with promising results for addressing multiple pathological conditions. Our experimental model is limited to rodent hippocampal/cortical neurons in culture and cortical neurons in brain tissues, which are well-characterized model systems for understanding neuronal polarization.

摘要

神经元的发育过程的特点是信号沿着轴突通过突触单向传递到树突。神经元极化是发育过程中的一个关键步骤,它允许将不同的神经元过程指定为单个轴突和多个树突,无论是在结构上还是在功能上,从而允许信息的单向流动。除了外在和内在的信号,一个涉及正反馈和负反馈回路的分子复合物网络在这个关键的神经元过程区分中起着主要作用。因此,在建立极性的过程中,神经元的形态发生了剧烈的变化。在本章中,我们讨论了如何在体外培养中分析神经元的形态变化,以评估神经元的发育和极性状态。我们还讨论了如何在体内进行这些研究,其中极性研究具有更大的挑战性,但对于解决多种病理状况具有有希望的结果。我们的实验模型仅限于体外培养的啮齿动物海马/皮质神经元和脑组织中的皮质神经元,它们是理解神经元极化的很好的模型系统。

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