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A simple 3D cellular chemotaxis assay and analysis workflow suitable for a wide range of migrating cells

机译:适用于多种迁移细胞的简单3D细胞趋化性测定和分析工作流程

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摘要

Cellular migration plays a crucial role within multicellular organisms enabling organ development, wound healing and efficient immune responses, but also metastasis. Therefore, it is crucial to dissect the underlying mechanisms. Directed migration and invasion are most efficient in response to chemotactic signals. To study cell migration and chemotactic responses, current experimental setups use either simplified 2D, tissue-mimetic 3D (e.g. collagen matrices) or environments. While the experiments are closest to the real physiological situation, they require animal experiments and are thus ill-suited for screening purposes. 3D matrices, on the other hand, can mimic conditions in many respects thus serving as instructive settings for the initial dissection of cell migration and chemotaxis. However, performing 3D chemotaxis assays has its limitations due to the delicate nature of most available setups and the tedious and time-consuming manual quantification process. Here, we present
机译:细胞迁移在多细胞生物体内起着至关重要的作用,从而使器官发育,伤口愈合和有效的免疫反应以及转移成为可能。因此,剖析基本机制至关重要。定向迁移和入侵是响应趋化信号最有效的方法。为了研究细胞迁移和趋化反应,当前的实验设置使用简化的2D,模拟组织的3D(例如胶原蛋白基质)或环境。虽然这些实验最接近实际的生理情况,但它们需要进行动物实验,因此不适用于筛选目的。另一方面,3D矩阵可以在许多方面模拟条件,因此可以作为细胞迁移和趋化性初始解剖的指导性设置。但是,由于大多数可用设置的微妙特性以及繁琐且耗时的手动定量过程,执行3D趋化性测定法有其局限性。在这里,我们介绍

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