نتایج جستجو برای: mg12o12 nanocage

تعداد نتایج: 218  

Journal: :The Journal of biological chemistry 2007
Xiaofeng S Liu Leslie D Patterson Marvin J Miller Elizabeth C Theil

Pores regulate access between ferric-oxy biomineral inside and reductants/chelators outside the ferritin protein nanocage to control iron demineralization rates. The pore helix/loop/helix motifs that are contributed by three subunits unfold independently of the protein cage, as observed by crystallography, Fe removal rates, and CD spectroscopy. Pore unfolding is induced in wild type ferritin by...

2009
Mustafa S. Yavuz Yiyun Cheng Jingyi Chen Claire M. Cobley Qiang Zhang Matthew Rycenga Jingwei Xie Chulhong Kim Andrea G. Schwartz Lihong V. Wang Younan Xia

Photosensitive caged compounds have enhanced our ability to address the complexity of biological systems by generating effectors with remarkable spatial/temporal resolutions. The caging effect is typically removed by photolysis with ultraviolet light to liberate the bioactive species. Although this technique has been successfully applied to many biological problems, it suffers from a number of ...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2010
Paola Turano Daniela Lalli Isabella C Felli Elizabeth C Theil Ivano Bertini

Ferritin is a multimeric nanocage protein that directs the reversible biomineralization of iron. At the catalytic ferroxidase site two iron(II) ions react with dioxygen to form diferric species. In order to study the pathway of iron(III) from the ferroxidase site to the central cavity a new NMR strategy was developed to manage the investigation of a system composed of 24 monomers of 20 kDa each...

Various antireflection thin films are often used to cover glass to increase solar cell electrical parameters. In the recent years many efforts have been done to develop and improve of solar cell films with high electrical output. One of the most important challenges of obtaining of high-efficiency thin films of solar cells is creation an effective light trapping system. The new polymeric protec...

Journal: Journal of Nanoanalysis 2016
Masoud Darvish Ganji, Nasim Ahmadian

Hydrogen storage capacity of Si-coated B80 fullerene was investigated based on density functional theory calculations within local density approximation and generalized gradient approximation. It is found that Si atom prefer to be attached above the center of pentagon with a binding energy of -5.78 eV. It is inferred that this binding is due to the charge transfer between the Si atom and B80 ca...

Journal: :Nanoscale 2011
Ronan McHale Yibo Liu Negar Ghasdian Nicole S Hondow Sunjie Ye Yun Lu Rik Brydson Xiaosong Wang

Prussian Blue (PB) analogue metal coordination nanocages comprised of mesoporous walls (ca. 3.5 nm pore width) encapsulating a cavity approaching ca. 100 nm in diameter (surfactant free) are presented as an advance in rational metal coordination polymer nanostructure design. The synthesis employs lanthanide ions (Gd(3+) or Er(3+)) which function initially as peripheral coordination crosslinkers...

2015
Ki-Jin Ahn Younghee Lee Hojin Choi Min-Sik Kim Kyungun Im Seonmyeong Noh Hyeonseok Yoon

Preparation of conducting-polymer hollow nanoparticles with different diameters was accomplished by surfactant templating. An anionic surfactant, namely sodium dodecylbenzenesulfonate, formed vesicles to template with the pyrrole monomer. Subsequent chemical oxidative polymerization of the monomer yielded spherical polypyrrole (PPy) nanoparticles with hollow interiors. The diameter of the hollo...

2016
Kai Liu Xiaozheng Xue Edward P. Furlani

We study optical properties of near-infrared absorbing colloidal plasmonic nanostructures that are of interest for biomedical theranostic applications: SiO2@Au core-shell particles, Au nanocages and Au nanorods. Full-wave field analysis is used to compare the absorption spectra and field enhancement of these structures as a function of their dimensions and orientation with respect to the incide...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2014
Minmin Liang Kelong Fan Meng Zhou Demin Duan Jiyan Zheng Dongling Yang Jing Feng Xiyun Yan

An ideal nanocarrier for efficient drug delivery must be able to target specific cells and carry high doses of therapeutic drugs and should also exhibit optimized physicochemical properties and biocompatibility. However, it is a tremendous challenge to engineer all of the above characteristics into a single carrier particle. Here, we show that natural H-ferritin (HFn) nanocages can carry high d...

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