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  • Direct evidence of spatially selective iron mineralization using an immobilized ferritin protein cage.

Direct evidence of spatially selective iron mineralization using an immobilized ferritin protein cage.

Journal of nanoscience and nanotechnology (2014-04-17)
Koichiro Uto, Kazuya Yamamoto, Naoko Kishimoto, Masahiro Muraoka, Takao Aoyagi, Ichiro Yamashita
ABSTRACT

(Apo)ferritins are cage-shaped proteins which have recently received a great deal of attention because the inner cavity of the protein shell can be used as a size-restricted reaction field for the synthesis of nanomaterials. The biomineralization behavior and inorganic nanoparticle (NP) synthesis mechanism of (apo)ferritin in solution systems have been studied but the mineralization behavior of (apo)ferritin on the substrates has not yet been well studied. Here, we conducted quantitative and kinetic analyses of the mineralization behavior of immobilized (apo)ferritin on a polyelectrolyte multilayer (PEM) using quartz crystal microbalance (QCM), scanning electron microscopy (SEM), and X-ray photoelectron spectroscopy (XPS) techniques. We demonstrated that the (apo)ferritin immobilized on a substrate synthesizes a ferrihydrite core within the confines of the protein cage; similar to a solution dispersed system. In addition, we applied a ferritin/apoferritin blended monolayer to the study of iron mineralization and revealed that biomineralization in this system is spatially selective. It is important to understand the mineralization mechanisms for the synthesis of other functional NPs as this approach has potential for a broad range of magnetic, catalytic, and biomedical sensing applications.

MATERIALS
Product Number
Brand
Product Description

Iron, IRMM®, certified reference material, 0.5 mm wire
Sigma-Aldrich
Iron, chips, 99.98% trace metals basis
Sigma-Aldrich
Iron, foil, thickness 0.1 mm, ≥99.9% trace metals basis
Sigma-Aldrich
Ferritin from human spleen, Type V, 10 μg/mL in 0.15 M NaCl, 10 mM Tris, pH 8.0, containing 0.1% sodium azide
Sigma-Aldrich
Ferritin from equine spleen, Type I, saline solution
Sigma-Aldrich
Iron, puriss. p.a., carbonyl-Iron powder, low in magnesium and manganese compounds, ≥99.5% (RT)
Sigma-Aldrich
Iron(III) oxide, dispersion, nanoparticles, ≤110 nm particle size, 15 wt. % in ethanol
Iron, rod, 200mm, diameter 25mm, as drawn, 98+%
Iron, rod, 1000mm, diameter 2.0mm, as drawn, 99.95%
Iron, foil, 100x100mm, thickness 2.0mm, as rolled, 99.95%
Iron, rod, 100mm, diameter 2.0mm, as drawn, 99.95%
Iron, rod, 50mm, diameter 5.0mm, as drawn, 99.99+%
Iron, rod, 500mm, diameter 6.35mm, as drawn, 98+%
Iron, rod, 100mm, diameter 10.0mm, as drawn, 99.99+%
Iron, foil, 100x100mm, thickness 2.0mm, as rolled, armco« soft ingot 99.8%
Iron, rod, 100mm, diameter 5.0mm, as drawn, 99.99+%
Iron, rod, 500mm, diameter 25mm, as drawn, 98+%
Iron, rod, 25mm, diameter 10.0mm, as drawn, 99.99+%
Iron, tube, 200mm, outside diameter 10.6mm, inside diameter 10.0mm, wall thickness 0.3mm, as drawn, 99.8+%
Iron, rod, 1000mm, diameter 2.0mm, as drawn, 99.99+%
Iron, foil, not light tested, 25x25mm, thickness 0.002mm, 99.85%
Iron, foil, 25x25mm, thickness 0.9mm, as rolled, 99.5%
Iron, tube, 1000mm, outside diameter 2.0mm, inside diameter 1.6mm, wall thickness 0.2mm, as drawn, 99.5%
Iron, tube, 100mm, outside diameter 12.7mm, inside diameter 9.5mm, wall thickness 1.6mm, annealed, 99.5%
Iron, tube, 1000mm, outside diameter 12.0mm, inside diameter 10mm, wall thickness 1.0mm, annealed, 99.5%
Iron, foil, not light tested, 300x300mm, thickness 0.05mm, hard, 99.5%
Iron, tube, 200mm, outside diameter 25.0mm, inside diameter 21mm, wall thickness 2mm, annealed, 99.5%
Iron, tube, 1000mm, outside diameter 8.0mm, inside diameter 5mm, wall thickness 1.5mm, annealed, 99.5%
Iron, rod, 100mm, diameter 50mm, as drawn, 98+%
Iron, rod, 200mm, diameter 50mm, as drawn, 98+%