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Magnetic nanoparticles for the measurement of cell mechanics using force-induced remnant magnetization spectroscopy

机译:测量磁纳米粒子的细胞机械使用及残余磁化光谱学

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摘要

Cell mechanics is a crucial indicator of cell function and health, controlling important biological activities such as cell adhesion, migration, and differentiation, wound healing, and tissue integrity. Particularly, the adhesion of cancer cells to the extracellular matrix significantly contributes to cancer progression and metastasis. Here we develop magnetic nanoparticle-based force-induced remnant magnetization spectroscopy (FIRMS) as a novel method to measure cell adhesion force. Before FIRMS experiments, interactions of magnetic nanoparticles (MNPs) with cells were investigated from a cell mechanics perspective. Subsequently adhesion force for three commonly used cancer cell lines was quantified by FIRMS. Our results indicated that the application of MNPs produced indistinguishable effects on cell viability and cell mechanical properties under experimental conditions for the FIRMS method. Then cell adhesion force was obtained, which provides force information on different cancer cell types. Our work demonstrates that MNP-based FIRMS can be applied to probe cell adhesion force and offer an alternate means for understanding cell mechanics.
机译:细胞的细胞力学是一个至关重要的指标功能和健康,控制很重要细胞粘附等生物活性,迁移和分化,伤口愈合,和组织的完整性。肿瘤细胞的细胞外基质大大有助于癌症恶化和转移。nanoparticle-based及残余磁化光谱学(公司)作为小说方法测量细胞的粘附力。公司实验中,磁场的相互作用纳米颗粒(基于)细胞进行调查从细胞力学的角度。粘附力三个常用的癌症细胞系被公司量化。表明,基于生产的应用无法区分对细胞生存能力的影响细胞力学性能实验公司的条件方法。附着力得到,它提供了力量不同的癌症细胞类型的信息。工作表明MNP-based公司可以应用于探测细胞粘附力和提供一个理解细胞力学的替代方式。

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