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1.
Eur Biophys J ; 48(7): 635-643, 2019 Oct.
Article in English | MEDLINE | ID: mdl-31302726

ABSTRACT

In this work, wild-type and heterozygous ß-thalassaemic mice were enriched with 57Fe via gastrointestinal absorption to characterize in greater detail the iron complexes then identifiable via Mössbauer spectroscopy. The 57Fe enrichment method was validated and Mössbauer spectra were obtained at 80 K from blood samples from wild-type and ß-thalassaemic mice at 1, 3, 6, and 9 months of age. As expected, the haemoglobin levels of the thalassaemic mice were lower than from normal mice, indicating anaemia. Furthermore, significant amounts of ferritin-like iron were observed in the thalassaemic mice samples, which decreased with mouse age, reflecting the pattern of reticulocyte count reduction reported in the literature.


Subject(s)
Iron Isotopes/metabolism , Iron Isotopes/pharmacology , Spectroscopy, Mossbauer , beta-Thalassemia/blood , beta-Thalassemia/metabolism , Animals , Intestinal Absorption , Mice , Mice, Inbred C57BL
2.
Contrast Media Mol Imaging ; 10(2): 153-62, 2015.
Article in English | MEDLINE | ID: mdl-25078884

ABSTRACT

Accurate determination of tissue concentration of ultrasmall superparamagnetic iron oxide nanoparticles (USPIO) using T2 * MR relaxometry is still challenging. We present a reliable quantification method for local USPIO amount with the estimation of the liver specific relaxivity r2 * using monodisperse (59) Fe-core-labeled USPIO ((59) FeUSPIO). Dynamic and relaxometric in vivo characteristics of unlabeled monodisperse USPIO were determined in MRI at 3 T. The in vivo MR studies were performed for liver tissue with (59) FeUSPIO using iron dosages of 9 (n = 3), 18 (n = 2) and 27 (n = 3) µmol Fe kg(-1) body weight. The R2 * of the liver before and after USPIO injection (∆R2 *) was measured and correlated with (59) Fe activity measurements of excised organs by a whole body radioactivity counter (HAMCO) to define the dependency of ∆R2 * and (59) FeUSPIO liver concentration and calculate the r2 * of (59) FeUSPIO for the liver. Ultrastructural analysis of liver uptake was performed by histology and transmission electron microscopy. ∆R2 * of the liver revealed a dosage-dependent accumulation of (59) FeUSPIO with a percentage uptake of 70-88% of the injection dose. Hepatic ∆R2 * showed a dose-dependent linear correlation to (59) FeUSPIO activity measurements (r = 0.92) and an r2 * in the liver of 481 ± 74.9 mm(-1) s(-1) in comparison to an in vitro r2 * of 60.5 ± 3.3 mm(-1) s(-1) . Our results indicate that core-labeled (59) FeUSPIO can be used to quantify the local amount of USPIO and to estimate the liver-specific relaxivity r2 *.


Subject(s)
Contrast Media , Ferric Compounds , Isotope Labeling/methods , Liver , Magnetic Resonance Imaging/methods , Nanoparticles/chemistry , Animals , Contrast Media/chemistry , Contrast Media/pharmacology , Dose-Response Relationship, Drug , Ferric Compounds/chemistry , Ferric Compounds/pharmacology , Iron Isotopes/chemistry , Iron Isotopes/pharmacology , Liver/diagnostic imaging , Liver/metabolism , Mice , Mice, SCID , Radiography
3.
J Neurochem ; 92(5): 1021-32, 2005 Mar.
Article in English | MEDLINE | ID: mdl-15715653

ABSTRACT

The role of dopamine in iron uptake into catecholaminergic neurons, and dopamine oxidation to aminochrome and its one-electron reduction in iron-mediated neurotoxicity, was studied in RCSN-3 cells, which express both tyrosine hydroxylase and monoamine transporters. The mean +/- SD uptake of 100 microm 59FeCl3 in RCSN-3 cells was 25 +/- 4 pmol per min per mg, which increased to 28 +/- 8 pmol per min per mg when complexed with dopamine (Fe(III)-dopamine). This uptake was inhibited by 2 microm nomifensine (43%p < 0.05), 100 microm imipramine (62%p < 0.01), 30 microm reboxetine (71%p < 0.01) and 2 mm dopamine (84%p < 0.01). The uptake of 59Fe-dopamine complex was Na+, Cl- and temperature dependent. No toxic effects in RCSN-3 cells were observed when the cells were incubated with 100 microm FeCl3 alone or complexed with dopamine. However, 100 microm Fe(III)-dopamine in the presence of 100 microm dicoumarol, an inhibitor of DT-diaphorase, induced toxicity (44% cell death; p < 0.001), which was inhibited by 2 microm nomifensine, 30 microm reboxetine and 2 mm norepinephrine. The neuroprotective action of norepinephrine can be explained by (1) its ability to form complexes with Fe3+, (2) the uptake of Fe-norepinephrine complex via the norepinephrine transporter and (3) lack of toxicity of the Fe-norepinephrine complex even when DT-diaphorase is inhibited. These results support the proposed neuroprotective role of DT-diaphorase and norepinephrine.


Subject(s)
Dopamine/metabolism , Iron/toxicity , Membrane Transport Modulators , Membrane Transport Proteins/antagonists & inhibitors , Neurons/drug effects , Norepinephrine/pharmacology , Substantia Nigra/cytology , Adrenergic Uptake Inhibitors/pharmacology , Analysis of Variance , Animals , Catecholamine Plasma Membrane Transport Proteins , Cell Death/drug effects , Cells, Cultured , Chlorides/metabolism , Dicumarol/pharmacology , Dopamine Plasma Membrane Transport Proteins , Dopamine Uptake Inhibitors , Dose-Response Relationship, Drug , Electron Spin Resonance Spectroscopy/methods , Embryo, Mammalian , Enzyme Inhibitors/pharmacology , Ferric Compounds/metabolism , Ferric Compounds/pharmacology , Fluorescent Antibody Technique/methods , Imipramine/pharmacology , Indolequinones/pharmacology , Iron Isotopes/pharmacology , Membrane Glycoproteins/metabolism , Membrane Transport Proteins/metabolism , Microscopy, Confocal/methods , Models, Biological , Morpholines/pharmacology , Nerve Tissue Proteins/metabolism , Neurons/metabolism , Nomifensine/pharmacology , Norepinephrine Plasma Membrane Transport Proteins , Rats , Rats, Inbred F344 , Rats, Wistar , Reboxetine , Serotonin Plasma Membrane Transport Proteins , Sodium/metabolism , Symporters/metabolism , Thiobarbituric Acid Reactive Substances/metabolism , Tyrosine 3-Monooxygenase/metabolism
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