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Properties of Magnetite Nanoparticles Produced by Magnetotactic Bacteria

Properties of Magnetite Nanoparticles Produced by Magnetotactic Bacteria
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摘要 The magnetic nanoparticles(magnetite) were prepared through the fermentation of the Magnetospirillum strain WM-1 newly isolated by our group. The samples were characterized by TEM, SAED, XRD, rock magnetic analysis, and Mossbauer spectroscopy. TEM and SAED measurements showed that the magnetosomes formed by strain WM-1 were single crystallites of high perfection with a cubic spinel structure of magnetite. X-ray measurements also fitted very well with standard Fe3O4 reflections with an inverse spinel structure of the magnetite core. The size of crystal as calculated by the Debye-Scherrer’s equation was approximately 55 nm. Rock magnetic analysis showed WM-1 synthesized single-domain magnetite magnetosomes, which were arranged in the form of linear chain. The high delta ratio((δFC / δZFC = 4) supported the criteria of Moskowitz test that there were intact magnetosomes chains in cells. The Verwey transition occurred at 105 K that closed to stoochiometric magnetite in composition. These observations provided useful insights into the biomineralization of magnetosomes and properties of M. WM-1 and potential application of biogenic magnetite in biomaterials and biomagnetism. The magnetic nanoparticles(magnetite) were prepared through the fermentation of the Magnetospirillum strain WM-1 newly isolated by our group. The samples were characterized by TEM, SAED, XRD, rock magnetic analysis, and Mossbauer spectroscopy. TEM and SAED measurements showed that the magnetosomes formed by strain WM-1 were single crystallites of high perfection with a cubic spinel structure of magnetite. X-ray measurements also fitted very well with standard Fe3O4 reflections with an inverse spinel structure of the magnetite core. The size of crystal as calculated by the Debye-Scherrer’s equation was approximately 55 nm. Rock magnetic analysis showed WM-1 synthesized single-domain magnetite magnetosomes, which were arranged in the form of linear chain. The high delta ratio((δFC / δZFC = 4) supported the criteria of Moskowitz test that there were intact magnetosomes chains in cells. The Verwey transition occurred at 105 K that closed to stoochiometric magnetite in composition. These observations provided useful insights into the biomineralization of magnetosomes and properties of M. WM-1 and potential application of biogenic magnetite in biomaterials and biomagnetism.
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2014年第6期1317-1322,共6页 武汉理工大学学报(材料科学英文版)
基金 Funded by the Specialized Research Fund for Doctoral Program of Higher Education of China(No.20114219110002) the Natural Science Foundation of Hubei Provice(Nos.2014CFB810 and 2014CFB812) the Educational Department of Hubei Province of China(No.D20131107)
关键词 biogenic magnetite magnetotactic bacteria property magnetosome biomineralization biogenic magnetite magnetotactic bacteria property magnetosome biomineralization
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  • 1高峻,肖天,孙松,陈冠军,赵勇,吴龙飞.新型海洋趋磁细菌YSC-1的分离及其特异性磁性纳米材料磁小体的研究[J].高技术通讯,2004,14(5):44-47. 被引量:12
  • 2潘永信,邓成龙,刘青松,N.Petersen,朱日祥.趋磁细菌磁小体的生物矿化作用和磁学性质研究进展[J].科学通报,2004,49(24):2505-2510. 被引量:34
  • 3Frankel R B. Biological permanent magnets. Hyperfine Interactions, 2003,151/152:145 ~ 153
  • 4P6sfai M, Buseck P R, Bazylinski D A, et al. Reaction sequence of iron sulfide minerals in bacteria and their use as biomarkers.Science, 1998,280:880 ~ 883
  • 5P6sfai M, Buseck P R, Bazylinski D A, et al. Iron sulfides from magnetotactic bacteria: structure, compositions, and phase transitions. Am Mineral, 1998, 83:1469 ~ 1481
  • 6Bazylinski D A, Heywood B R, Mann S, et al. Fe3O4 and Fe3S4 in a bacterium. Nature, 1993,366: 218
  • 7Bazylinski D A. Controlled biomineralization of magnetite ( Fe3O4)and greigite ( Fe3 S4 ) in a magnetotactic bacterium. Appl Environ Microbiol, 1995, 61:3232 ~ 3239
  • 8Meldrum F C, Heywood B R, Mann S, et al. Electron microscopy study of magnetosomes in two cultured vibrioid magnetotactic bacteria. Proc R Soc Lond B Biol Sci, 1993, 251:237~ 242
  • 9Towe K M, Moench T T. Electron-optical characterization of bacterial magnetite. Earth Planet Sci Lett, 1981, 52:213 ~ 220
  • 10Arakaki A, Webb J, Matsunaga T. A novel protein tightly bound to bacterial magnetite particles in Magnetospirillum magneticum strain AMB- 1. J Biol Chem, 2003,278: 8745 ~ 8750

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