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A low-cost microwell device for high-resolution imaging of neurite outgrowth in 3D

机译:一种低成本的微孔设备,可对3D神经突生长进行高分辨率成像

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摘要

Objective. Current neuronal cell culture is mostly performed on two-dimensional (2D) surfaces, which lack many of the important features of the native environment of neurons, including topographical cues, deformable extracellular matrix, and spatial isotropy or anisotropy in three dimensions. Although three-dimensional (3D) cell culture systems provide a more physiologically relevant environment than 2D systems, their popularity is greatly hampered by the lack of easy-to-make-and-use devices. We aim to develop a widely applicable 3D culture procedure to facilitate the transition of neuronal cultures from 2D to 3D. Approach. We made a simple microwell device for 3D neuronal cell culture that is inexpensive, easy to assemble, and fully compatible with commonly used imaging techniques, including super-resolution microscopy. Main results. We developed a novel gel mixture to support 3D neurite regeneration of Aplysia bag cell neurons, a system that has been extensively used for quantitative analysis of growth cone dynamics in 2D. We found that the morphology and growth pattern of bag cell growth cones in 3D culture closely resemble the ones of growth cones observed in vivo. We demonstrated the capability of our device for high-resolution imaging of cytoskeletal and signaling proteins as well as organelles. Significance. Neuronal cell culture has been a valuable tool for neuroscientists to study the behavior of neurons in a controlled environment. Compared to 2D, neurons cultured in 3D retain the majority of their native characteristics, while offering higher accessibility, control, and repeatability. We expect that our microwell device will facilitate a wider adoption of 3D neuronal cultures to study the mechanisms of neurite regeneration.
机译:目的。当前的神经元细胞培养大多在二维(2D)表面上进行,而二维表面缺少神经元本机环境的许多重要特征,包括地形线索,可变形的细胞外基质以及三维空间异向性或各向异性。尽管三维(3D)细胞培养系统提供的生理环境比2D系统更重要,但是由于缺乏易于制造和使用的设备,其普及受到了极大的阻碍。我们旨在开发一种广泛适用的3D培养程序,以促进神经元文化从2D过渡到3D。方法。我们制造了一种用于3D神经元细胞培养的简单微孔设备,该设备价格便宜,易于组装,并且与包括超分辨率显微镜在内的常用成像技术完全兼容。主要结果。我们开发了一种新型凝胶混合物来支持Aplysia袋细胞神经元的3D神经突再生,该系统已被广泛用于2D生长锥动力学的定量分析。我们发现3D培养中袋状细胞生长锥的形态和生长模式与体内观察到的生长锥非常相似。我们证明了我们设备对细胞骨架和信号蛋白以及细胞器进行高分辨率成像的能力。意义。神经元细胞培养已成为神经科学家研究受控环境中神经元行为的宝贵工具。与2D相比,以3D培养的神经元保留了其大多数自然特征,同时提供了更高的可访问性,控制性和可重复性。我们希望我们的微孔设备将促进3D神经元文化的广泛采用,以研究神经突再生的机制。

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  • 来源
    《Journal of neural engineering》 |2018年第3期|035001.1-035001.11|共11页
  • 作者单位

    Department of Biological Sciences, Purdue University, West Lafayette, IN 47907, United States of America;

    Weldon School of Biomedical Engineering, Purdue University, West Lafayette, IN 47907, United States of America;

    Department of Biological Sciences, Purdue University, West Lafayette, IN 47907, United States of America;

    Weldon School of Biomedical Engineering, Purdue University, West Lafayette, IN 47907, United States of America,Purdue Institute of Inflammation, Immunology and Infectious Disease, Purdue University,West Lafayette, IN, United States of America,Purdue Institute for Integrative Neuroscience, Purdue University, West Lafayette, IN 47907,United States of America;

    Department of Biological Sciences, Purdue University, West Lafayette, IN 47907, United States of America ,Purdue Institute for Integrative Neuroscience, Purdue University, West Lafayette, IN 47907,United States of America,Bindley Bioscience Center, Purdue University, West Lafayette, IN 47907, United States of America,Birck Nanotechnology Center, Purdue University, West Lafayette, IN 47907, United States of America;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    3D culture; neuron; neurite outgrowth; high resolution imaging; growth cone,cytoskeleton; cell culture;

    机译:3D文化;神经元神经突生长高分辨率成像;生长锥;细胞骨架;细胞培养;

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