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Advanced cell culture platforms: a growing quest for emulating natural tissues

机译:先进的细胞培养平台:越来越多的追求天然组织

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摘要

In the body, cells inhabit within a complex three-dimensional (3D) extracellular matrix that provides physical and chemical signals to regulate the cell fate. Cultured cells in Petri dishes and tissue culture flasks (2D) receive completely different environmental cues compared to natural tissues, causing radical alterations in cell morphology and function. Three-dimensional culture models have been able to revolutionize biomedical applications by better emulating natural tissues. However, sample handling and high-throughput screening can be challenging with 3D cell culture. Moreover, most 3D matrices are unable to quantify intracellular mechanics due to their structurally undefined surface characteristics. Therefore, highly structured surfaces (21/2D) comprising various micro- and nano-patterns were introduced to address these limitations. The topographical substrates have also been shown to retain in vivo cell functionalities, such as proliferative capacity. Here, we review recent advancements in modulation of surface patterns that have been able to control cell adhesion in two or three dimensions, and their impacts on the cell behavior. Finally, we provide a comparison between 2D, 21/2D and 3D systems and present several clinical applications of non-planar substrates.
机译:在体内,细胞居住在复杂的三维(3D)细胞外基质中,提供物理和化学信号来调节细胞命运。与天然组织相比,培养皿中的培养细胞和组织培养烧瓶(2D)接受完全不同的环境线索,导致细胞形态和功能的根本改变。三维培养模型能够通过更好地模拟自然组织来彻底改变生物医学应用。然而,样品处理和高通量筛选可能与3D细胞培养有挑战性。此外,由于其结构未定义的表面特性,大多数3D矩阵由于其结构未定义的表面特性而不能定量细胞内力学。因此,引入了包含各种微型和纳米图案的高度结构化表面(21 / 2d)以解决这些限制。还证明了地形衬底以保留体内细胞官能团,例如增殖能力。在这里,我们审查了最近的表面模式调制的进步,该方面是能够控制两种或三维的细胞粘附的表面图案,以及它们对细胞行为的影响。最后,我们提供了2D,21 / 2D和3D系统之间的比较,并在非平面基板的几个临床应用中提供了几种临床应用。

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  • 来源
    《Materials Horizons》 |2019年第1期|共27页
  • 作者单位

    Ryerson Univ Fac Engn &

    Architectural Sci Dept Chem Engn Toronto ON M5B 2K3 Canada;

    Univ Montreal Fac Pharm CP 6128 Succursale Ctr Ville Montreal PQ H3C 3J7 Canada;

    Ryerson Univ Fac Engn &

    Architectural Sci Dept Chem Engn Toronto ON M5B 2K3 Canada;

    Ryerson Univ Fac Engn &

    Architectural Sci Dept Chem Engn Toronto ON M5B 2K3 Canada;

    Univ Montreal Fac Pharm CP 6128 Succursale Ctr Ville Montreal PQ H3C 3J7 Canada;

    Ryerson Univ Fac Engn &

    Architectural Sci Dept Chem Engn Toronto ON M5B 2K3 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
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