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A cell migration device that maintains a defined surface with no cellular damage during wound edge generation

机译:一种细胞迁移装置,可在伤口边缘生成过程中保持定义的表面而无细胞损伤

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摘要

Studying the rate of cell migration provides insight into fundamental cell biology as well as a tool to assess the functionality of synthetic surfaces and soluble environments used in tissue engineering. The traditional tools used to study cell migration include the fence and wound healing assays. In this paper we describe the development of a microchannel based device for the study of cell migration on defined surfaces. We demonstrate that this device provides a superior tool, relative to the previously mentioned assays, for assessing the propagation rate of cell wave fronts. The significant advantage provided by this technology is the ability to maintain a virgin surface prior to the commencement of the cell migration assay. Here, the device is used to assess rates of mouse fibroblasts (NIH 3T3) and human osteosarcoma (SaOS2) cell migration on surfaces functionalized with various extracellular matrix proteins as a demonstration that confining cell migration within a microchannel produces consistent and robust data. The device design enables rapid and simplistic assessment of multiple repeats on a single chip, where surfaces have not been previously exposed to cells or cellular secretions.
机译:研究细胞迁移的速度不仅可以洞悉基本的细胞生物学,还可以评估组织工程中使用的合成表面和可溶性环境的功能。用于研究细胞迁移的传统工具包括围栏和伤口愈合分析。在本文中,我们描述了基于微通道的设备的发展,该设备用于研究在定义表面上的细胞迁移。我们证明,相对于前面提到的测定法,该设备提供了一种优越的工具,用于评估细胞波前沿的传播速率。该技术提供的显着优势是能够在细胞迁移试验开始之前保持原始表面的能力。在这里,该设备用于评估用各种细胞外基质蛋白功能化的表面上的小鼠成纤维细胞(NIH 3T3)和人骨肉瘤(SaOS2)细胞的迁移率,以证明将细胞迁移限制在微通道内可产生一致且可靠的数据。该设备的设计能够对单个芯片上的多个重复进行快速而简单的评估,而以前没有将表面暴露于细胞或细胞分泌物中。

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