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首页> 外文期刊>The international journal of artificial organs >Development of cone and plate-type rheometer for quantitative analysis of endothelial cell detachment by shear stress.
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Development of cone and plate-type rheometer for quantitative analysis of endothelial cell detachment by shear stress.

机译:锥板式流变仪的开发,用于定量分析剪切应力引起的内皮细胞脱落。

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摘要

We developed an apparatus, which has a structure based on a cone and plate-type rheometer, to facilitate quantitative analysis of the detachment process of endothelial cells (EC) from diverse materials including 3-dimensional scaffolds such as plate, membrane and porous-shaped materials. As an artificial vascular model, a material inoculated with EC to a polycarbonate membrane coated with laminin was prepared. In consequence, reduced cell number, medium volume, and material size was enough to evaluate cell detachment from various materials by shear stress in our system. When shear stress was loaded to a material with EC, the ratio retained of initially inoculated cells decreased with time. Increase of magnitude of shear stress also decreased the ratio. We conclude that our apparatus could analyze quantitatively detachment of EC with ease for screenings to find materials that enhance adhesive force of EC. To produce artificial blood vessels with small diameter, our apparatus could become a useful instrument.
机译:我们开发了一种设备,该设备具有基于锥板式流变仪的结构,以便于定量分析内皮细胞(EC)从多种材料(包括板,膜和多孔状3D支架)中的分离过程材料。作为人造血管模型,制备了将EC接种到涂有层粘连蛋白的聚碳酸酯膜上的材料。因此,减少的细胞数量,中等体积和材料尺寸足以评估我们系统中剪切应力引起的细胞与各种材料的分离。当将剪切应力加载到具有EC的材料上时,最初接种的细胞的保留比例随时间降低。剪应力大小的增加也降低了比率。我们得出的结论是,我们的设备可以轻松地定量分析EC的分离性,以进行筛选,以发现增强EC粘附力的材料。为了生产小直径的人造血管,我们的设备可以成为有用的仪器。

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