Reconstitution of manganese oxide cores in horse spleen and recombinant ferritins.
about
Native and synthetic ferritins for nanobiomedical applications: recent advances and new perspectives.A ferritin from Dendrorhynchus zhejiangensis with heavy metals detoxification activity.Preparation and representation of recombinant Mn-ferritin flower-like spherical aggregates from marine invertebrates.Development of Timd2 as a reporter gene for MRISize and crystallinity in protein-templated inorganic nanoparticles.Protein cages, rings and tubes: useful components of future nanodevices?The ferritin superfamily: Supramolecular templates for materials synthesis.Bioinspired nanoscale materials for biomedical and energy applications.Reactions inside nanoscale protein cages.Structuration and integration of magnetic nanoparticles on surfaces and devices.Bioinspired nanoreactors for the biomineralisation of metallic-based nanoparticles for nanomedicine.Screening and structural and functional investigation of a novel ferritin from Phascolosoma esculenta.Biomedical and Catalytic Opportunities of Virus-Like Particles in Nanotechnology.The influence of reaction temperature on biomineralization of ferrihydrite cores in human H-ferritin.Biomimetic synthesis and characterization of cobalt nanoparticles using apoferritin, and investigation of direct electron transfer of Co(NPs)-ferritin at modified glassy carbon electrode to design a novel nanobiosensor.Titanium mineralization in ferritin: a room temperature nonphotochemical preparation and biophysical characterization.Protein cage nanostructure as drug delivery system: magnifying glass on apoferritin.First biochemical and crystallographic characterization of a fast-performing ferritin from a marine invertebrate.The Size Flexibility of Ferritin Nanocage Opens a New Way to Prepare Nanomaterials.Biophysical and genetic analysis of iron partitioning and ferritin function in Drosophila melanogaster.A manganese-ferritin nanocomposite as an ultrasensitive T2 contrast agent.(Un)suitability of the use of pH buffers in biological, biochemical and environmental studies and their interaction with metal ions – a reviewReduction/dissolution of a beta-MnOOH nanophase in the ferritin cavity to yield a highly sensitive, biologically compatible magnetic resonance imaging agent
P2860
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P2860
Reconstitution of manganese oxide cores in horse spleen and recombinant ferritins.
description
1995 nî lūn-bûn
@nan
1995年の論文
@ja
1995年学术文章
@wuu
1995年学术文章
@zh
1995年学术文章
@zh-cn
1995年学术文章
@zh-hans
1995年学术文章
@zh-my
1995年学术文章
@zh-sg
1995年學術文章
@yue
1995年學術文章
@zh-hant
name
Reconstitution of manganese oxide cores in horse spleen and recombinant ferritins.
@en
Reconstitution of manganese oxide cores in horse spleen and recombinant ferritins.
@en-gb
Reconstitution of manganese oxide cores in horse spleen and recombinant ferritins.
@nl
type
label
Reconstitution of manganese oxide cores in horse spleen and recombinant ferritins.
@en
Reconstitution of manganese oxide cores in horse spleen and recombinant ferritins.
@en-gb
Reconstitution of manganese oxide cores in horse spleen and recombinant ferritins.
@nl
prefLabel
Reconstitution of manganese oxide cores in horse spleen and recombinant ferritins.
@en
Reconstitution of manganese oxide cores in horse spleen and recombinant ferritins.
@en-gb
Reconstitution of manganese oxide cores in horse spleen and recombinant ferritins.
@nl
P50
P1476
Reconstitution of manganese oxide cores in horse spleen and recombinant ferritins
@en
P2093
P356
10.1016/0162-0134(94)00037-B
P577
1995-04-01T00:00:00Z