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Turning Diamagnetic Microbes into Multinary Micro-Magnets: Magnetophoresis and Spatio-Temporal Manipulation of Individual Living Cells

机译:将抗磁性微生物转变为多元微磁体:磁泳和单个活细胞的时空操纵。

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摘要

Inspired by the biogenic magnetism found in certain organisms, such as magnetotactic bacteria, magnetic nanomaterials have been integrated into living cells for bioorthogonal, magnetic manipulation of the cells. However, magnetized cells have so far been reported to be only binary system (on/off) without any control of magnetization degree, limiting their applications typically to the simple accumulation or separation of cells as a whole. In this work, the magnetization degree is tightly controlled, leading to the generation of multiple subgroups of the magnetized cells, and each subgroup is manipulated independently from the other subgroups in the pool of heterogeneous cell-mixtures. This work will provide a strategic approach to tailor-made fabrication of magnetically functionalized living cells as micro-magnets, and open new vistas in biotechnological and biomedical applications, which highly demand the spatio-temporal manipulation of living cells.
机译:受某些生物(例如趋磁细菌)中生物磁性的启发,磁性纳米材料已被整合到活细胞中,以对细胞进行生物正交的磁性操纵。然而,迄今为止,据报道,磁化细胞仅仅是二元系统(开/关),没有任何磁化度的控制,通常将它们的应用限制为整个细胞的简单积累或分离。在这项工作中,磁化程度受到严格控制,从而导致磁化细胞的多个子组的生成,并且每个子组的操作均与异质细胞混合物池中的其他子组无关。这项工作将提供一种战略方法,以定制化方式制造磁性功能化的活细胞,作为微磁体,并在生物技术和生物医学应用中打开新的前景,这对活细胞的时空操作提出了很高的要求。

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