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控制神经细胞和神经胶质细胞的形态及生长:表面形貌的影响。

Controlling the morphology and outgrowth of nerve and neuroglial cells: The effect of surface topography.

作者信息

Simitzi C, Ranella A, Stratakis E

机构信息

Institute of Electronic Structure and Laser (IESL), Foundation for Research and Technology-Hellas (FORTH), Heraklion 71003, Greece.

Institute of Electronic Structure and Laser (IESL), Foundation for Research and Technology-Hellas (FORTH), Heraklion 71003, Greece.

出版信息

Acta Biomater. 2017 Mar 15;51:21-52. doi: 10.1016/j.actbio.2017.01.023. Epub 2017 Jan 7.

Abstract

UNLABELLED

Unlike other tissue types, like epithelial tissue, which consist of cells with a much more homogeneous structure and function, the nervous tissue spans in a complex multilayer environment whose topographical features display a large spectrum of morphologies and size scales. Traditional cell cultures, which are based on two-dimensional cell-adhesive culture dishes or coverslips, are lacking topographical cues and mainly simulate the biochemical microenvironment of the cells. With the emergence of micro- and nano-fabrication techniques new types of cell culture platforms are developed, where the effect of various topographical cues on cellular morphology, proliferation and differentiation can be studied. Different approaches (regarding the material, fabrication technique, topographical characteristics, etc.) have been implemented. The present review paper aims at reviewing the existing body of literature on the use of artificial micro- and nano-topographical features to control neuronal and neuroglial cells' morphology, outgrowth and neural network topology. The cell responses-from phenomenology to investigation of the underlying mechanisms- on the different topographies, including both deterministic and random ones, are summarized.

STATEMENT OF SIGNIFICANCE

There is increasing evidence that physical cues, such as topography, can have a significant impact on the neural cell functions. With the aid of micro-and nanofabrication techniques, new types of cell culture platforms are developed and the effect of surface topography on the cells has been studied. The present review article aims at reviewing the existing body of literature reporting on the use of various topographies to study and control the morphology and functions of cells from nervous tissue, i.e. the neuronal and the neuroglial cells. The cell responses-from phenomenology to investigation of the underlying mechanisms- on the different topographies, including both deterministic and random ones, are summarized.

摘要

未标注

与其他组织类型不同,如上皮组织由结构和功能更为均匀的细胞组成,神经组织分布在一个复杂的多层环境中,其地形特征呈现出广泛的形态和大小尺度。传统的细胞培养基于二维细胞粘附培养皿或盖玻片,缺乏地形线索,主要模拟细胞的生化微环境。随着微纳制造技术的出现,新型细胞培养平台得以开发,在这些平台上可以研究各种地形线索对细胞形态、增殖和分化的影响。已经实施了不同的方法(涉及材料、制造技术、地形特征等)。本综述旨在回顾关于利用人工微纳地形特征来控制神经元和神经胶质细胞形态、生长和神经网络拓扑结构的现有文献。总结了细胞在不同地形(包括确定性和随机性地形)上从现象学到潜在机制研究的反应。

重要性声明

越来越多的证据表明,物理线索,如地形,可对神经细胞功能产生重大影响。借助微纳制造技术,开发了新型细胞培养平台,并研究了表面地形对细胞的影响。本综述文章旨在回顾现有文献,这些文献报道了利用各种地形来研究和控制神经组织细胞(即神经元和神经胶质细胞)的形态和功能。总结了细胞在不同地形(包括确定性和随机性地形)上从现象学到潜在机制研究的反应。

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