IEEE Trans Nanobioscience. 2018 Oct;17(4):555-559. doi: 10.1109/TNB.2018.2878085. Epub 2018 Oct 25.
Magnetotactic bacteria are a group of organisms deeply studied in the last years due to their interesting magnetic behavior and potential applications in nanometrology, hyperthermia, and biosensor devices. One intrinsic common characteristic is the presence, inside the bacteria, of magnetic nanoparticles called magnetosomes. The role of magnetosomes as bacterial tools to orient the bacteria and find new habitats is universally accepted, but the way they develop still is not fully understood. A strain of Magnetospirillum magnetotacticum was grown and investigated at the nanoscale using transmission electron microscopy and atomic/magnetic force microscopy techniques. Magnetosomes were observed as well as long filaments with magnetic response that could be associated to the actin-like filaments being crucial to allow the nanoparticles orientation and magnetosomes formation. To the best of our knowledge, this paper is the first to visualize these reproducible long-range size magnetic crystalline structures.
磁性细菌是近年来受到深入研究的一类生物体,因为它们具有有趣的磁性行为和在纳米计量学、高温治疗和生物传感器设备中的潜在应用。一个内在的共同特征是,在细菌内部存在称为磁小体的磁性纳米颗粒。磁小体作为细菌定向和寻找新栖息地的工具的作用是被普遍接受的,但它们的发育方式仍不完全清楚。使用透射电子显微镜和原子/磁力显微镜技术,对一株趋磁螺旋菌进行了纳米级生长和研究。观察到了磁小体以及具有磁性响应的长丝,这些长丝可能与肌动蛋白样丝有关,这些丝对于允许纳米颗粒定向和磁小体形成至关重要。据我们所知,本文首次可视化了这些可重复的长程尺寸磁性结晶结构。