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首页> 外文期刊>Micron: The international research and review journal for microscopy >A new technique for studying directional cell migration in a hydrogel-based three-dimensional matrix for tissue engineering model systems
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A new technique for studying directional cell migration in a hydrogel-based three-dimensional matrix for tissue engineering model systems

机译:研究基于水凝胶的三维矩阵的组织工程模型系统中定向细胞迁移的新技术

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Cell migration has a key role in biological processes, e.g. malignancy, wound healing, immune response and morphogenesis. Studying migration and factors that influence it is beneficial, e.g. for developing drugs to suppress metastasis, heal wounds faster or enhance the response to infection. Though the majority of the literature describes two-dimensional (2D) migration studies in culture dishes, a more realistic approach is to study migration in three-dimensional (3D) constructs. However, simple-to-implement, straight-forward standardized quantitative techniques for analysis of migration rates of cell colonies in 3D are still required in the field. Here, we describe a new model system for quantifying directional migration of colonies in a hyaluronic acid (oxi-HA) and adipic acid dihydrazide (ADH) hydrogel-based 3D matrix. We further demonstrate that our previously reported image processing technique for measuring migration in 2D (Topman et al., 2011, 2012) is extendable for analyzing the rates of migration of cells that directionally migrate in the hydrogel and are fluorescently stained with a 4',6-diamidino-2-phenylindole (DAPI) nuclear stain. Together, the present experimental setup and image processing algorithm provide a standard test bench for measuring migration rates in a fully automated, robust assay which is useful for high-throughput screening in large-scale drug evaluations, where effects on migration in a 3D matrix are sought.
机译:细胞迁移在生物学过程中具有关键作用,例如恶性肿瘤,伤口愈合,免疫反应和形态发生。研究移民及其影响因素是有益的,例如用于开发抑制转移的药物,更快地治愈伤口或增强对感染的反应。尽管大多数文献描述了培养皿中的二维(2D)迁移研究,但更现实的方法是研究三维(3D)构造中的迁移。然而,在该领域中仍然需要用于3D细胞集落迁移率分析的简单,直接的标准化定量技术。在这里,我们描述了一种新的模型系统,用于量化透明质酸(oxi-HA)和己二酸二酰肼(ADH)基于水凝胶的3D基质中菌落的定向迁移。我们进一步证明,我们先前报道的用于测量2D迁移的图像处理技术(Topman等,2011,2012)可扩展用于分析在水凝胶中定向迁移并被4'荧光染色的细胞的迁移速率, 6-二mid基-2-苯基吲哚(DAPI)核染色。总之,当前的实验装置和图像处理算法提供了一个标准测试平台,用于在全自动,稳健的测定中测量迁移速率,这对于大规模药物评估中的高通量筛选非常有用,其中对3D矩阵中的迁移产生了影响寻求。

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