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首页> 外文期刊>Materials Chemistry Frontiers >Manipulation of cellular orientation and migration by internalized magnetic particles
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Manipulation of cellular orientation and migration by internalized magnetic particles

机译:操纵细胞取向和迁移通过内化磁性粒子

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The quick response of magnetic nanoparticles (MNPs) to an external field provides a unique way for cellular manipulation in a remote and non-contact mode. In this work, we demonstrate the modulation of cellular behaviors including orientation and migration based on internalized Fe3O4 nanoparticles in a particle-concentration dependent manner. After being treated with MNPs at low concentrations (e.g. 0.277 mg mL~(-1)), the internalized particles separately distributed around the nuclei, and somewhat influenced the orientation of the cells along the direction of the external magnetic field. In contrast, when the concentration of MNPs was high enough (e.g. 2.770 mg mL~(-1 )), the particles formed clusters within the cells and moved towards the edges of the cell in the direction of the magnetic field, leading to an obvious morphological change and subsequently a directed migration of the cells. This result shows a facile way to manipulate cell behaviors with excellent biocompatibility and its potential application in the biomedical field such as in tissue engineering.
机译:磁性纳米颗粒的快速反应(基于)外部领域提供了一种独特的方式在远程和细胞操纵非接触模式。包括细胞的调制行为基于内化的取向和迁移Fe3O4纳米粒子浓度依赖的方式。在低浓度(例如0.277毫克毫升~ (1)),内化粒子分别分布在原子核周围,有些影响沿着方向取向的细胞外部磁场。基于浓度足够高(例如。2.770毫克毫升~(1)),粒子形成集群在细胞和走向的边缘细胞的方向磁场,导致一个明显的形态学变化和随后细胞的定向迁移。这个结果显示了一个简单的方式来操纵细胞具有优良的生物相容性和其行为生物医学领域的应用前景例如在组织工程。

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