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Long magnetic nanochains assembled by magnetotactic bacteria in a directional field

机译:趋磁细菌在定向场中组装的长磁性纳米链

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A new species of single-cell magnetotactic bacteria, the NMV-1 bacteria, has been found by us. Each NMV-1 bacterium synthesizes itself a chain of magnetic nanoparticles inside its body. When an external magnetic field is applied, long bacteria chains come into being in the direction of the field in the water. More than 30 μm long chains of live bacteria have been observed. Length of bacteria chains is field dependant: the higher the magnetic field is, the longer the bacteria chains are. The bacteria chains orientation is controllable and the chains can be stably trapped. The mechanism of the assembly of long bacteria chains is also discussed. The results show that, while an external magnetic field is applied, the NMV-1 bacteria have strong enough interactions between each other to assemble long bacteria chains. After positioning the bacteria chain, cellular membranes of the bacteria were removed by cell lysis, leaving long chains of magnetic nanoparticles on a substrate. These magnetic nanochains can be potentially used as building blocks for magnetic nanostructures.
机译:我们发现了一种新的单细胞趋磁细菌NMV-1细菌。每个NMV-1细菌都会在自身体内合成磁性纳米颗粒链。当施加外部磁场时,水中的长细菌链沿磁场方向形成。已经观察到超过30μm的活细菌长链。细菌链的长度取决于场强:磁场越高,细菌链越长。细菌链的方向是可控的,链可以被稳定地捕获。还讨论了长细菌链组装的机理。结果表明,在施加外部磁场的同时,NMV-1细菌之间具有足够强的相互作用,以组装长细菌链。定位细菌链后,通过细胞裂解去除细菌的细胞膜,从而在基质上留下磁性纳米颗粒的长链。这些磁性纳米链可以潜在地用作磁性纳米结构的基础。

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