Search results for "FERRITIN"

showing 10 items of 114 documents

Iron acquisition from Fe-pyoverdine by Arabidopsis thaliana.

2007

Taking into account the strong iron competition in the rhizosphere and the high affinity of pyoverdines for Fe(III), these molecules are expected to interfere with the iron nutrition of plants, as they do with rhizospheric microbes. The impact of Fe-pyoverdine on iron content of Arabidopsis thaliana was compared with that of Fe-EDTA. Iron chelated to pyoverdine was incorporated in a more efficient way than when chelated to EDTA, leading to increased plant growth of the wild type. A transgenic line of A. thaliana overexpressing ferritin showed a higher iron content than the wild type when supplemented with Fe-EDTA but a lower iron content when supplemented with Fe-pyoverdine despite its inc…

0106 biological sciencesChlorophyll[ SDV.BV ] Life Sciences [q-bio]/Vegetal BiologyFMN ReductasePhysiologyIronArabidopsisReductasePseudomonas fluorescens01 natural sciencesPlant Roots03 medical and health scienceschemistry.chemical_compoundFMN reductaseArabidopsis thaliana[SDV.BV]Life Sciences [q-bio]/Vegetal Biology[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyChelationRELATION PLANTE-MICROORGANISMECation Transport ProteinsEdetic Acid030304 developmental biology0303 health sciencesPyoverdinebiologyArabidopsis ProteinsACLWild typeARABIDOPSIS THALIANAGeneral Medicinebiology.organism_classificationPlants Genetically ModifiedFerritinchemistryBiochemistryChlorophyllFerritinsbiology.proteinAgronomy and Crop ScienceOligopeptides010606 plant biology & botany
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Arabidopsis thaliana nicotianamine synthase 4 is required for proper response to iron deficiency and to cadmium exposure.

2013

International audience; The nicotianamine synthase (NAS) enzymes catalyze the formation of nicotianamine (NA), a non-proteinogenic amino acid involved in iron homeostasis. We undertook the functional characterization of AtNAS4, the fourth member of the Arabidopsis thaliana NAS gene family. A mutant carrying a T-DNA insertion in AtNAS4 (atnas4), as well as lines overexpressing AtNAS4 both in the atnas4 and the wild-type genetic backgrounds, were used to decipher the role of AtNAS4 in NA synthesis, iron homeostasis and the plant response to iron deficiency or cadmium supply. We showed that AtNAS4 is an important source for NA. Whereas atnas4 had normal growth in iron-sufficient medium, it dis…

0106 biological sciences[ SDV.BV ] Life Sciences [q-bio]/Vegetal BiologyMESH : Azetidinecarboxylic AcidFMN ReductaseArabidopsis thalianaMutantArabidopsisGene ExpressionPlant Science01 natural sciencesMESH : Cation Transport ProteinsMESH : IronMESH : Arabidopsis ProteinsNicotianamine synthaseMESH : Plants Genetically Modifiedchemistry.chemical_compoundMESH : ArabidopsisGene Expression Regulation PlantGene expressionMESH: Genes PlantArabidopsis thalianaMESH : DNA BacterialHomeostasisMESH: ArabidopsisNicotianamineMESH: Stress PhysiologicalCation Transport ProteinsMESH : Adaptation PhysiologicalMESH : Cadmium2. Zero hungerchemistry.chemical_classification0303 health sciencesCadmiumMESH: IronbiologyGeneral MedicineIron DeficienciesPlants Genetically ModifiedAdaptation PhysiologicalMESH: Azetidinecarboxylic AcidMESH : PhenotypePhenotypeBiochemistryMESH: HomeostasisMESH : HomeostasisMESH : MutationAzetidinecarboxylic AcidCadmiumDNA BacterialMESH: Gene ExpressionMESH: MutationIronMESH: Cadmiumchemistry.chemical_elementMESH: FerritinsMESH: Arabidopsis ProteinsMESH: Alkyl and Aryl TransferasesGenes PlantMESH: PhenotypeNicotianamine synthase03 medical and health sciencesMESH: Cation Transport ProteinsStress PhysiologicalIron homeostasisGenetics[SDV.BV]Life Sciences [q-bio]/Vegetal BiologyIron deficiency (plant disorder)MESH: Gene Expression Regulation PlantMESH : Genes PlantMESH : Alkyl and Aryl TransferasesMESH : Stress Physiological030304 developmental biologyMESH : FMN ReductaseAlkyl and Aryl TransferasesArabidopsis ProteinsIron deficiencyNitric oxideNicotianaminebiology.organism_classificationMESH: Adaptation PhysiologicalMESH: DNA BacterialMESH : Gene ExpressionEnzymechemistryMESH: FMN ReductaseMESH: Plants Genetically ModifiedFerritinsMutationbiology.proteinMESH : FerritinsAgronomy and Crop ScienceMESH : Gene Expression Regulation Plant010606 plant biology & botany
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The CD68+/H-ferritin+ cells colonize the lymph nodes of the patients with adult onset Still's disease and are associated with increased extracellular…

2015

Summary In this work, we aimed to evaluate the levels of ferritin enriched in H subunits (H-ferritin) and ferritin enriched in L subunits (L-ferritin) and the cells expressing these two molecules in the lymph node (LN) biopsies obtained from adult-onset Still's disease (AOSD) patients, and the possible correlation among these data and the severity of the disease. Ten patients with AOSD underwent LN biopsy. All the samples were stained by immunofluorescence. A statistical analysis was performed to estimate the possible correlation among both H-ferritin and L-ferritin tissue expression and the clinical picture of the disease. Furthermore, the same analysis was performed to evaluate the possib…

0301 basic medicineAdult-OnsetMalePathologyMacrophageApoferritinAdult-onset Still's disease; H-ferritin; Hyperferritinaemic syndrome; Macrophage; Adult; Aged; Antigens CD; Antigens Differentiation Myelomonocytic; Apoferritins; Biopsy; Female; Ferritins; Fluorescent Antibody Technique; Humans; Lymph Nodes; Macrophages; Male; Middle Aged; Still's Disease Adult-Onset; Immunology; Immunology and AllergyH-ferritinBiopsyFluorescent Antibody TechniquePathogenesis0302 clinical medicineMacrophageImmunology and AllergyLymph nodemedicine.diagnostic_testCD68Lymph NodeMiddle AgedCDmedicine.anatomical_structureAntigenDifferentiationFemaleLymphHyperferritinaemic syndromeStill's Disease Adult-OnsetHumanAdultmedicine.medical_specialtyImmunologyAntigens Differentiation MyelomonocyticBiologyImmunofluorescenceAdult-onset Still's disease03 medical and health sciencesAntigens CDBiopsymedicineHumansAntigensAged030203 arthritis & rheumatologyFerritinMacrophagesOriginal ArticlesMyelomonocyticStill's DiseaseFerritinSettore MED/16 - Reumatologia030104 developmental biologyImmunologyApoferritinsFerritinsbiology.proteinLymph Nodes
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H-ferritin and proinflammatory cytokines are increased in the bone marrow of patients affected by macrophage activation syndrome

2017

Summary Macrophage activation syndrome (MAS) is hyperinflammatory life-threatening syndrome, associated typically with high levels of serum ferritin. This is an iron storage protein including heavy (H) and light (L) subunits, categorized on their molecular weight. The H-/L subunits ratio may be different in tissues, depending on the specific tissue and pathophysiological status. In this study, we analysed the bone marrow (BM) biopsies of adult MAS patients to assess the presence of: (i) H-ferritin and L-ferritin; (ii) CD68+/H-ferritin+ and CD68+/L-ferritin+; and (iii) interleukin (IL)-1β, tumour necrosis factor (TNF) and interferon (IFN)-γ. We also explored possible correlations of these re…

0301 basic medicineBiopsymedicine.medical_treatment0302 clinical medicineBone MarrowcytokineImmunology and AllergyInterleukinBlood ProteinsSyndromeMiddle AgedC-Reactive ProteinCytokinemedicine.anatomical_structureCytokinesTumor necrosis factor alphaInflammation Mediatorsmedicine.symptommacrophage activation syndromeAdultImmunologyAntigens Differentiation MyelomonocyticInflammationmacrophageBiologyProinflammatory cytokine03 medical and health sciencesAntigens CDmedicineHumansAgedRetrospective StudiesInflammation030203 arthritis & rheumatologyMacrophagesferritinOriginal ArticlesMacrophage Activationmedicine.diseaseFerritinSettore MED/16 - Reumatologia030104 developmental biologyMacrophage activation syndromeApoferritinsImmunologybiology.proteinBone marrowCytokine; Ferritin; Hyperferritinaemic syndrome; Macrophage; Macrophage activation syndrome; Immunology and Allergy; Immunologycytokine; ferritin; hyperferritinaemic syndrome; macrophage; macrophage activation syndromehyperferritinaemic syndrome
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COVID-19: High-JAKing of the Inflammatory “Flight” by Ruxolitinib to Avoid the Cytokine Storm

2021

Since SARS-CoV-2 outbreak in December 2019, world health-system has been severely impacted with increased hospitalization, Intensive-Care-Unit (ICU) access and high mortality rates, mostly due to severe acute respiratory failure and multi-organ failure. Excessive and uncontrolled release of proinflammatory cytokines (cytokine release/storm syndrome, CRS) have been linked to the development of these events. The recent advancements of immunotherapy for the treatment of hematologic and solid tumors shed light on many of the molecular mechanisms underlying this phenomenon, thus rendering desirable a multidisciplinary approach to improve COVID-19 patients’ outcome. Indeed, currently available th…

0301 basic medicineCancer ResearchRuxolitinibruxolitinibmedicine.medical_treatmentlcsh:RC254-282Proinflammatory cytokine03 medical and health sciences0302 clinical medicineFibrosismedicineMyelofibrosisbusiness.industryferritinhyperinflammationCOVID-19Immunotherapylcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogensmedicine.disease030104 developmental biologyCytokineOncologyJAK2030220 oncology & carcinogenesisImmunologyPerspectivebusinessJanus kinaseCytokine stormmedicine.drug
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AB0919 H-Ferritin and CD68+/H-ferritin+ Cells Are Increased in The Skin of Adult Onset Still's Disease Patients and Correlate with The Disease Activi…

2016

Background Adult onset Still9s disease (AOSD) is an inflammatory disease, characterized by high spiking fevers, arthritis, salmon-pink erythema and multivisceral involvement [1]. During AOSD, exceptionally high serum levels of ferritin may be observed and they might contribute to production of proinflammatory molecules [2]. Ferritin is composed by 24 subunits, heavy (H) subunits and light (L) subunits. The ferritin enriched in L subunits (L-ferritin) and the ferritin enriched in H subunits (H-ferritin) may be recognized in different tissues [3]. Objectives To investigate the skin tissue expression of both H-and L-ferritin and the number of macrophages expressing these molecules, in the infl…

0301 basic medicineErythemabiologyCD68Septic shockbusiness.industryImmunologyArthritismedicine.disease_causemedicine.diseaseGeneral Biochemistry Genetics and Molecular BiologyAutoimmunityProinflammatory cytokineFerritin03 medical and health sciences030104 developmental biologyRheumatologyMacrophage activation syndromeImmunologymedicinebiology.proteinImmunology and Allergymedicine.symptombusinessAnnals of the Rheumatic Diseases
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Bovine plasma hydrolysates' iron chelating capacity and its potentiating effect on ferritin synthesis in Caco-2 cells.

2020

The low bioavailability of iron is one factor that contributes to its deficiency in the human diet. For this reason, it is necessary to find compounds that can form iron chelates so that these can be added to foods that contain iron to improve its bioavailability at the intracellular level. In this study, we assessed the relationship between bovine plasma hydrolysates' iron chelating ability and their degree of hydrolysis. The hydrolysate with the highest chelating capacity was fractionated and each fraction's chelating capacity was subsequently assessed. Each fraction's effect on ferritin synthesis in Caco-2 cells was also determined. The results showed that bovine plasma hydrolysates with…

0301 basic medicineIronBiological AvailabilityIron Chelating AgentsHydrolysate03 medical and health sciencesHydrolysisPlasma0404 agricultural biotechnologyAnimalsHumansChelationSolubilityAmino AcidsChelating Agentschemistry.chemical_classification030109 nutrition & dieteticsbiologyChemistryHydrolysis04 agricultural and veterinary sciencesGeneral Medicine040401 food scienceBioavailabilityAmino acidDietFerritinBiochemistryCaco-2Ferritinsbiology.proteinCattleCaco-2 CellsFood ScienceFoodfunction
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Soybean Ferritin Expression in Saccharomyces cerevisiae Modulates Iron Accumulation and Resistance to Elevated Iron Concentrations

2016

Fungi, including the yeast Saccharomyces cerevisiae, lack ferritin and use vacuoles as iron storage organelles. This work explored how plant ferritin expression influenced baker's yeast iron metabolism. Soybean seed ferritin H1 (SFerH1) and SFerH2 genes were cloned and expressed in yeast cells. Both soybean ferritins assembled as multimeric complexes, which bound yeast intracellular iron in vivo and, consequently, induced the activation of the genes expressed during iron scarcity. Soybean ferritin protected yeast cells that lacked the Ccc1 vacuolar iron detoxification transporter from toxic iron levels by reducing cellular oxidation, thus allowing growth at high iron concentrations. Interes…

0301 basic medicineIronSaccharomyces cerevisiaeGene ExpressionVacuoleSaccharomyces cerevisiaeBiologymedicine.disease_causeApplied Microbiology and Biotechnology03 medical and health sciencesOrganellemedicineCloning MolecularPlant ProteinsFerritin030102 biochemistry & molecular biologyEcologyIron deficiencyfood and beveragesMetabolismIron deficiencybiology.organism_classificationmedicine.diseaseIron metabolismRecombinant ProteinsYeastYeastFerritinSFerH2SFerH1030104 developmental biologyBiochemistryFerritinsbiology.proteinSoybeansOxidative stressFood ScienceBiotechnology
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SARS-CoV-2 antibodies, serum inflammatory biomarkers and clinical severity of hospitalized COVID-19 patients

2020

Background The involvement of SARS-CoV-2 antibodies in mediating immunopathogenetic events in COVID-19 patients has been suggested. By using several experimental approaches, we investigated the potential association between SARS-CoV-2 IgGs recognizing the spike (S) protein receptor-binding domain (RBD), neutralizing antibodies (NtAb) targeting S, and COVID-19 severity. Patients and methods This unicenter, retrospective, observational study included 51 hospitalized patients (24 at the intensive care unit; ICU). A total of 93 sera from these patients collected at different time points from the onset of symptoms were analyzed. SARS-CoV-2 RBD IgGs were quantitated by ELISA and NtAb50 titers wer…

0301 basic medicineMaleAntibodies ViralSeverity of Illness IndexGastroenterologylaw.invention0302 clinical medicinelaw030212 general & internal medicinebiologyInflammatory biomarkersMiddle AgedIntensive care unitHospitalizationTiterInfectious DiseasesSpike Glycoprotein CoronavirusFemaleAntibodyCoronavirus InfectionsAdultmedicine.medical_specialtyCoronavirus disease 2019 (COVID-19)Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2)030106 microbiologyPneumonia ViralNeutralizing antibodiesArticleVirus03 medical and health sciencesBetacoronavirusYoung AdultVirologyInternal medicineSeverity of illnessmedicineHumansPandemicsAgedRetrospective StudiesInflammationbusiness.industrySARS-CoV-2C-reactive proteinCOVID-19Retrospective cohort studyAntibodies NeutralizingFerritinbiology.proteinBinding Sites AntibodybusinessBiomarkers
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Oligodendrocytes Provide Antioxidant Defense Function for Neurons by Secreting Ferritin Heavy Chain.

2020

An evolutionarily conserved function of glia is to provide metabolic and structural support for neurons. To identify molecules generated by glia and with vital functions for neurons, we used Drosophila melanogaster as a screening tool, and subsequently translated the findings to mice. We found that a cargo receptor operating in the secretory pathway of glia was essential to maintain axonal integrity by regulating iron buffering. Ferritin heavy chain was identified as the critical secretory cargo, required for the protection against iron-mediated ferroptotic axonal damage. In mice, ferritin heavy chain is highly expressed by oligodendrocytes and secreted by employing an unconventional secret…

0301 basic medicineMalePhysiologyAntioxidantsArticlemetabolism [Oligodendroglia]03 medical and health sciencesMyelinMice0302 clinical medicineddc:570medicineAnimalsSecretionReceptorCytotoxicityMolecular BiologySecretory pathwayNeuronsbiologyChemistrymetabolism [Apoferritins]Cell Biologybiology.organism_classificationCell biologyFerritinMice Inbred C57BLOligodendroglia030104 developmental biologymedicine.anatomical_structurenervous systemmetabolism [Neurons]Apoferritinsbiology.proteinmetabolism [Antioxidants]Drosophila melanogaster030217 neurology & neurosurgeryFunction (biology)Cell metabolism
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