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在趋磁细菌中对单个磁小体链的磁成像。

Magnetic imaging of individual magnetosome chains in magnetotactic bacteria.

机构信息

Instituto de Ciencia de Materiales de Madrid, CSIC, 28049 Madrid, Spain.

Instituto de Ciencia de Materiales de Madrid, CSIC, 28049 Madrid, Spain; Dpto. de Física de la Materia Condensada and IFIMAC, UAM, 28049 Madrid, Spain.

出版信息

Biomater Adv. 2024 Oct;163:213969. doi: 10.1016/j.bioadv.2024.213969. Epub 2024 Jul 23.

Abstract

While significant advances have been made in exploring and uncovering the promising potential of biomagnetic materials, persistent challenges remain on various fronts, notably in the characterization of individual elements. This study makes use of advanced modes of Magnetic Force Microscopy (MFM) and tailored MFM probes to characterize individual magnetotactic bacteria in different environments. The characterization of these elements posed a significant challenge, as the magnetosomes, besides presenting low magnetic signal, are embedded in bacteria of much larger size. To overcome this, customed Atomic Force Microscopy probes are developed through various strategies, enhancing sensitivity in different environments, including liquids. Furthermore, employing MFM imaging under an in-situ magnetic field provides an opportunity to gather quantitative data regarding the critical fields of these individual chains of nanoparticles. This approach marks a substantial advancement in the field of MFM for biological applications, enabling the detection of magnetosomes under different conditions.

摘要

虽然在探索和揭示生物磁学材料的巨大潜力方面已经取得了重大进展,但在各个方面仍然存在持续的挑战,特别是在单个元素的表征方面。本研究利用先进的磁力显微镜(MFM)模式和定制的 MFM 探针来表征不同环境中的单个磁细菌。这些元素的表征是一个重大挑战,因为磁小体除了具有较低的磁信号外,还嵌入在尺寸大得多的细菌中。为了克服这一难题,通过各种策略开发了定制的原子力显微镜探针,提高了在包括液体在内的不同环境中的灵敏度。此外,在原位磁场下进行 MFM 成像,为这些纳米粒子链的临界场提供了定量数据的收集机会。这种方法标志着生物应用领域的 MFM 领域取得了重大进展,能够在不同条件下检测磁小体。

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