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A study of the initial adhesive force of cells on silk fibroin-based materials using micropipette aspiration

机译:用微量移液器吸取细胞对丝素蛋白基材料的初始粘附力的研究

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摘要

With the development of biomaterials, more attention is paid to the adhesion characteristics between cells and materials. It is necessary to study the adhesive force with a suitable method. Silk fibroin (SF) is widely investigated in biomedical application due to its novel biocompatibility and mechanical properties. In this article, the micropipette aspiration method and measurement pattern of uniform cells in round shape (UCR) was used to study the initial adhesive force of three types of cells on pure silk fibroin films (SFFs). We also compared the adhesive forces of modified SFFs with that of pure SFFs. The results of adhesive force in the initial adhesive stage were in concordance with the results of MTT assay and microscope observation, which were confirmed by the above three cell lines and four kinds of SFFs. The results indicated UCR was an efficient and quantitative measurement pattern in initial adhesion stage. This article also provides a useful method in identifying initial cell-materials interactions.
机译:随着生物材料的发展,人们越来越关注细胞与材料之间的粘附特性。有必要用合适的方法研究粘合力。丝素蛋白(SF)由于其新颖的生物相容性和机械性能而在生物医学应用中得到了广泛研究。本文采用微量移液管抽吸方法和圆形均匀细胞(UCR)测量模式研究了三种类型的细胞在纯丝素蛋白膜(SFF)上的初始粘附力。我们还比较了改性SFF与纯SFF的粘合力。上述三种细胞系和四种SFFs证实了初始粘合阶段的粘合力结果与MTT分析和显微镜观察的结果一致。结果表明,UCR是初始粘附阶段的一种有效且定量的测量模式。本文还提供了一种有用的方法来识别初始单元格材料交互作用。

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