Search results for "Iron sucrose"

showing 4 items of 4 documents

Laboratory Tests in Crohn’s Disease

2015

Laboratory tests are useful for diagnosing Crohn’s disease, assessing disease activity, identifying complications, and monitoring response to therapy. Their role has been considered limited in the past due to lack of specificity. The introduction of biological therapies in inflammatory bowel disease (IBD) has renewed interest in inflammatory markers, especially C-reactive protein (CRP), given their potential to select responders to these treatments. There are several reasons why laboratory markers have been studied in IBD in the past decades: firstly, to gain an objective measurement of disease activity as symptoms are often subjective; secondly, to avoid invasive (endoscopic) procedures wh…

Biological therapiesCrohn's diseasemedicine.medical_specialtyResponse to therapybusiness.industryObjective measurementDiseasemedicine.diseaseIron sucroseInflammatory bowel diseasemedicineIntensive care medicinebusinessIrritable bowel syndromemedicine.drug
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A comparative study of the physicochemical properties of iron isomaltoside 1000 (Monofer®), a new intravenous iron preparation and its clinical impli…

2011

Abstract The treatment of iron deficiency anemia with polynuclear iron formulations is an established therapy in patients with chronic kidney disease but also in other disease areas like gastroenterology, cardiology, oncology, pre/post operatively and obstetrics’ and gynecology. Parenteral iron formulations represent colloidal systems in the lower nanometer size range which have traditionally been shown to consist of an iron core surrounded by a carbohydrate shell. In this publication, we for the first time describe the novel matrix structure of iron isomaltoside 1000 which differs from the traditional picture of an iron core surrounded by a carbohydrate. Despite some structural similaritie…

Chemical PhenomenaDrug CompoundingPharmaceutical ScienceIntravenous ironIron sucroseSodium ferric gluconateDisaccharidesFerric Compoundschemistry.chemical_compoundDrug Delivery SystemsIron Isomaltoside 1000medicineHumansParticle SizeInfusions IntravenousMolecular StructureHydrolysisRadiochemistryGeneral MedicineVitaminsCarbohydratemedicine.diseaseFerumoxytolMolecular WeightDextranBiochemistryIron-deficiency anemiachemistryBiotechnologymedicine.drug
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Structural characterization of iron oxide/hydroxide nanoparticles in nine different parenteral drugs for the treatment of iron deficiency anaemia by …

2013

Drug products containing iron oxide and hydroxide nanoparticles (INPs) are important for the treatment of iron deficiency anaemia. Pharmaceuticals prepared by the complexation of different kinds of INPs and carbohydrates have different physicochemical and biopharmaceutic characteristics. The increasing number of parenteral non-biological complex drugs (NBCD) containing iron requires physicochemical methods for characterization and enabling of cross comparisons. In this context the structure and the level of crystallinity of the iron phases may be connected to the in vitro and in vivo dissolution rates, which etiologically determine the therapeutic and toxic effects. X-ray powder diffraction…

Chemistry PharmaceuticalClinical BiochemistryInorganic chemistryIron oxideMetal NanoparticlesPharmaceutical ScienceContext (language use)engineering.materialCrystallography X-RayIron sucroseFerric CompoundsAnalytical Chemistrychemistry.chemical_compoundMicroscopy Electron TransmissionX-Ray DiffractionIron Isomaltoside 1000Drug DiscoveryHydroxidesmedicineInfusions ParenteralLepidocrociteSpectroscopyAnemia Iron-DeficiencyIron deficiencymedicine.diseaseFerumoxytolTreatment OutcomechemistryengineeringHydroxidePowder Diffractionmedicine.drugJournal of Pharmaceutical and Biomedical Analysis
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Comparative toxicity and cell-tissue distribution study on nanoparticular iron complexes using avian embryos and HepG2-cells

2007

In this study the toxicity and intracellular availability of iron from iron dextran (FeD), iron sucrose (FeS), and iron gluconate (FeG) was compared in organs of avian (turkey) embryos and in isolated cells (HepG2) in cell culture. Iron uptake was more pronounced in embryonic liver than in renal tissue. Cellular iron uptake in liver and kidney was more or less similar for the different compounds. Only some experiments showed slightly greater iron concentrations in liver and kidney with FeG compared with FeD and FeS. Significant differences were found in the survival ratios of the eggs and the embryo weights depending on the type of iron complex administered. The rank order of toxicities was…

TurkeysCarcinoma HepatocellularEmbryo NonmammalianLiver cytologyChick EmbryoBiologyKidneyIron sucroseIn ovoFerric CompoundsGluconatesAndrologyGlucaric AcidIn vivoCell Line TumorPhysiology (medical)medicineAnimalsHumansFerric Oxide SaccharatedBody WeightLiver NeoplasmsBiochemistry (medical)Public Health Environmental and Occupational HealthKidney metabolismGeneral MedicineIn vitroSurvival RateLiverBiochemistryCell cultureToxicityHematinicsNanoparticlesIron-Dextran Complexmedicine.drugTranslational Research
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