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A magnetosome chain viewed as a bio-elastic magnet

机译:被视为生物弹性磁铁的磁小体链

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In light of the coarse-grained Monte Carlo numerical simulation method, the magnetosome chain stability of magnetotactic bacteria is analysed and discussed. This discrete chain of magnetic nanoparticles, encapsulated in a lipid membrane and flanked by filaments, orients bacteria in the geomagnetic field as a compass needle. Each magnetosome is a magnetite or greigite nanocrystal encapsulated in a soft lipid shell. This structure is modelled by a hard core with a magnetic dipole embedded and a cloud of electric dipoles which are able to move and rotate over the magnetic spherical core. In the present paper, some of the many possibilities of the model by varying the control parameters of the system are explored. Magnetic particles arrange in long linear clusters when the coating is removed. However, linear but twisted chains of magnetic particles emerge when there are electric dipoles in the coating shell. A unique linear and straight chain is not observed in any 3D numerical simulation; this result is in agreement with a real living system of bacteria in a geomagnetic field when proteins that form the filament are absent. Finally, the stability and magnetization of a magnetosome chain of 30 beads in one dimension set up are discussed resembling a real chain. The results suggest that a magnetosome chain not only orients bacteria but also should be considered as a potential storage of elastic energy.
机译:根据粗糙粒度的蒙特卡洛数值模拟方法,对趋磁细菌的磁小体链稳定性进行了分析和讨论。磁性纳米颗粒的离散链封装在脂质膜中,两侧是细丝,将地磁场中的细菌定向为罗盘针。每个磁小体是包裹在软脂质壳中的磁铁矿或辉绿岩纳米晶体。这种结构由嵌入磁偶极子的硬核和能够在磁球核上移动和旋转的电偶极子云模拟。在本文中,通过改变系统的控制参数,探索了模型的许多可能性中的一些可能性。去除涂层后,磁性颗粒排列成长的线性簇。但是,当涂层壳中有电偶极子时,会出现磁性粒子的线性但扭曲的链。在任何3D数值模拟中均未观察到独特的线性和直链。当缺少形成细丝的蛋白质时,该结果与地磁场中细菌的真实生活系统相符。最后,讨论了类似于真实链的一维建立的30个磁珠的磁小体链的稳定性和磁化强度。结果表明,磁小体链不仅可以定向细菌,而且还应被视为潜在的弹性能量存储。

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