首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Chains of Cobalt Doped Magnetosomes Extracted from AMB-1 Magnetotactic Bacteria for Application in Alternative Magnetic Field Cancer Therapy
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Chains of Cobalt Doped Magnetosomes Extracted from AMB-1 Magnetotactic Bacteria for Application in Alternative Magnetic Field Cancer Therapy

机译:从AMB-1趋磁细菌提取的钴掺杂磁小体链,用于替代性磁场癌症治疗

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摘要

We report the magnetic properties and heating efficiency of cobalt doped chains of magnetosomes extracted from magnetotactic bacteria for applications in alternative magnetic field cancer therapy. The changes of the magnetic properties of the chains of magnetosomes observed in the presence of cobalt are characterized by an enhancement of the magnetocrystal-line anisotropy from K_(eff)~12 KJ/m~3 in the absence of cobalt up to K_(eff)~104 Kj/m~3 in the presence of cobalt. We show that these changes are only observed for the magnetosomes organized in chains. Furthermore, the SAR of the extracted chains of magnetosomes mixed in solution and exposed to an oscillating magnetic field of field amplitude 80 mT and frequency 183 kHz is shown to increase from ~400 W/g_(Fe) for the undoped chains of magnetosomes up to ~500 W/g_(Fe) for the cobalt doped chains of magnetosomes.
机译:我们报道了从趋磁细菌中提取的磁小体的钴掺杂链的磁性能和加热效率,用于替代性磁场癌症治疗。在钴存在下观察到的磁小体链的磁性变化,其特征是在不存在钴的情况下,从K_(eff)〜12 KJ / m〜3提高了磁晶线各向异性。 )〜104 Kj / m〜3(在钴存在下)。我们表明,这些变化仅观察到以链状组织的磁小体。此外,溶液中混合并暴露于振幅为80 mT且频率为183 kHz的振荡磁场的磁小体提取链的SAR显示,从未掺杂的磁小体链的〜400 W / g_(Fe)增加到最大。磁小体的钴掺杂链约为500 W / g_(Fe)。

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