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Bioengineered magnetic crystals

机译:生物工程磁性晶体

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摘要

In this paper we report on the successful application of a protein crystallization technique to fabricate a three-dimensionally ordered array of magnetic nanoparticles, i.e. a novel type of metamaterial with unique magnetic properties. We utilize ferritin protein cages for the template-constrained growth of superparamagnetic nanoparticles of magnetite/maghemite Fe_(3)O_(4)-gamma-Fe_(2)O_(3) (magnetoferritin), followed by thorough nanoparticle bioprocessing and purification, and finally by protein crystallization. Protein crystallization is driven by the natural response of proteins to the supersaturation of the electrolyte, which leads to spontaneous nucleation and 3D crystal growth. Within a short period of time (hours to days) we were able to grow functional crystals on the meso-scale, with sizes of the order of tens, up to a few hundred micrometres. We present initial magnetic and Raman spectroscopy characterization results for the obtained 3D arrays of magnetic nanoparticles.
机译:在本文中,我们报告了蛋白质结晶技术的成功应用,以制造三维有序的磁性纳米颗粒阵列,即具有独特磁性的新型超材料。我们利用铁蛋白蛋白笼进行磁铁矿/磁石镍(3)O_(3)-γ-Fe_(2)O_(3)(磁铁脲素)的超顺磁性纳米粒子的模板约束生长,然后彻底纳米颗粒生物处理和纯化,和最后通过蛋白质结晶。通过蛋白质的自然反应驱动蛋白质结晶,以电解质的过饱和,这导致自发成核和3D晶体生长。在短时间内(小时到几天),我们能够在中间规模上生长功能性晶体,尺寸的数量尺寸,高达几百微米。对于所获得的磁性纳米颗粒,呈现初始磁性和拉曼光谱表征结果。

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