نتایج جستجو برای: iron fe

تعداد نتایج: 192553  

2013
Rainer Bieganowski

Vitamin B12, Cobyric Acid, Fe(III)Cobalamin, Fe(III)Cobyric Acid, Iron-B12-Analogues, UV/VIS-, NMR-, ESR-Spectra The reaction of hydrogenocobalamin or hydrogenocobyric acid (both isolated from Chromatium vinosum) with iron(III) acetate and iron powder in acetic acid under N 2 at 80 °C leads to the incorporation of iron into these cobalt-free corrinoids. The products, Fe(III)cobalamin and Fe(ni)...

Journal: :Journal of hazardous materials 2010
C Noubactep A Schöner

The interpretation of processes yielding aqueous contaminant removal in the presence of elemental iron (e.g. in Fe(0)/H(2)O systems) is subject to numerous complications. Reductive transformations by Fe(0) and its primary corrosion products (Fe(II) and H/H(2)) as well as adsorption onto and co-precipitation with secondary and tertiary iron corrosion products (iron hydroxides, oxyhydroxides, and...

Journal: :iranian journal of microbiology 0
behnoush khasheii of clinical microbiology, faculty of medicinegolestan university of medical sciences,gorgan, iran shaghayegh anvari assistant professor of microbiology,infectious diseases research center,golestan university of medical sciences ,gorgan,iran ailar jamalli assistant professor of microbiology,infectious diseases research center,golestan university of medical sciences ,gorgan,iran

background and objectives: bacteria need iron for growth and most of them can actively acquire fe ions using especial iron-chelating proteins which named siderophores. we aimed to determine the frequencies of iuca, iron and irp2 genes in the uropathogenic escherichia coli (upec) isolates. we also analyzed the effects of siderophore genes beside iron supplements on growth rate of the isolates. m...

2012
Lars H. Böttger Eric P. Miller Christian Andresen Berthold F. Matzanke Frithjof C. Küpper Carl J. Carrano

Iron is an essential element for all living organisms due to its ubiquitous role in redox and other enzymes, especially in the context of respiration and photosynthesis. The iron uptake and storage systems of terrestrial/higher plants are now reasonably well understood, with two basic strategies for iron uptake being distinguished: strategy I plants use a mechanism involving induction of Fe(III...

Journal: :Microbiology 2003
Pavel Suchan Daniel Vyoral Jirí Petrák Robert Sut'ák Dominique Rasoloson Eva Nohýnková Pavel Dolezal Jan Tachezy

The intracellular transport of iron and its incorporation into organelles are poorly understood processes in eukaryotes and virtually unknown in parasitic protists. The transport of iron is of particular interest in trichomonads, which possess hydrogenosomes instead of mitochondria. The metabolic functions of hydrogenosomes, which contain a specific set of FeS proteins, entirely depend on iron ...

Journal: :Plant physiology 1981
S L Manley

Parameters of iron uptake have been determined for blade tissue of Macrocystis pyrifera (L.) C. Ag. These include the effects of iron concentration, light, various inhibitors, and blade type. All experiments were conducted in the defined artificial seawater Aquil. Iron uptake is light independent, energy dependent, and dependent on the reduction from Fe(3+) to Fe(2+). Iron is concentrated in th...

1998
Annette P. Aldrich

Existing electrochemical methods for the determination of iron require long deposition times to determine low iron levels. Here a new method, based on catalytic cathodic stripping voltammetry, is described to determine subnanomolar levels of iron in seawater. The new method has a better baseline and is generally simplified, leading to a lower reagent blank and minimized sample handling compared...

2017
J.C. Shen Y.C. Zhang M.F. Zhao

Using an iron overload mouse model, we explored the protective effect of deferasirox (DFX) and N-acetyl-L-cysteine (NAC) on injured bone marrow hematopoietic stem/progenitor cells (HSPC) induced by iron overload. Mice were intraperitoneally injected with 25 mg iron dextran every 3 days for 4 weeks to establish an iron overload (Fe) model. DFX or NAC were co-administered with iron dextran in two...

2011
Myron W. Jones Douglas R. Powell George B. Richter-Addo

The title dinitrosyl iron diphosphane complex, [Fe(NO)(2)(C(18)H(12)Cl(3)P)(2)] or Fe(NO)(2)L(2) [L = P(C(6)H(4)-p-Cl)(3)] belongs to the family of metal dinitrosyl compounds with the general formula Fe(NO)(2)(L)(x), referred to collectively as dinitrosyl iron compounds (DNICs). The iron atom is tetra-hedrally coordinated by two phosphane ligands and two NO groups with Fe-N-O bond angles of 178...

Journal: :The Journal of biological chemistry 2014
Louis Grillet Laurent Ouerdane Paulina Flis Minh Thi Thanh Hoang Marie-Pierre Isaure Ryszard Lobinski Catherine Curie Stéphane Mari

Iron (Fe) is essential for virtually all living organisms. The identification of the chemical forms of iron (the speciation) circulating in and between cells is crucial to further understand the mechanisms of iron delivery to its final targets. Here we analyzed how iron is transported to the seeds by the chemical identification of iron complexes that are delivered to embryos, followed by the bi...

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