Search results for "hematopoietic stem cells"

showing 10 items of 97 documents

Introduction to stem cell biology in vitro. Threshold to the future.

1999

Abstract: Transplantable hematopoietic cells with multilineage reconstituting ability can be quantitated in suspensions of human or murine cells using similar assay procedures. The incorporation into these assays of stringently defined functional endpoints ensures a high degree of specificity for the cells detected. Application of these assays to stem cell-containing suspensions after they have been stimulated for several days with defined cytokines in vitro, or by a mixture of defined and/or undefined factors in vivo, has shown that net amplifications in these populations can be obtained under both circumstances. Such studies have allowed cytokine conditions that support stem cell self-ren…

General NeuroscienceRegeneration (biology)medicine.medical_treatmentHematopoietic Stem Cell TransplantationHematopoietic stem cellCell DifferentiationBiologyStem cell markerHematopoietic Stem CellsGeneral Biochemistry Genetics and Molecular BiologyIn vitroCell biologyHaematopoiesisMicemedicine.anatomical_structureCytokineHistory and Philosophy of ScienceIn vivomedicineAnimalsHumansRegenerationStem cellCell DivisionAnnals of the New York Academy of Sciences
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The function of the soluble IL-6 receptor in vivo.

1996

Interleukin-6 (IL-6) is considered an important mediator of acute inflammatory responses. Moreover, IL-6 functions as a differentiation and growth factor of hematopoietic precursor cells, B-cells, T-cells, keratinocytes, neuronal cells, osteoclasts and endothelial cells. IL-6 exhibits its action via a receptor complex consisting of a specific IL-6 receptor (IL-6R) and a signal-transducing subunit (gp130). Soluble forms of both receptor components are generated by shedding and are found in patients with various diseases such as AIDS, rheumatoid arthritis and others. The function of the soluble IL-6R in vivo is unknown. To discriminate between the biologic function of hIL-6 alone and that of …

Genetically modified mousemedicine.medical_specialtyReceptor complexTransgenemedicine.medical_treatmentImmunologyMice TransgenicBiologyMiceAntigens CDInternal medicinemedicineHypersensitivityImmunology and AllergyAnimalsHumansReceptorInterleukin-6Growth factorReceptors InterleukinGlycoprotein 130Hematopoietic Stem CellsReceptors Interleukin-6Cell biologyHaematopoiesisEndocrinologySolubilityInterleukin-6 receptorCarrier ProteinsAcute-Phase ProteinsImmunology letters
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The Sea Urchin sns5 Chromatin Insulator Improves the Likelihood of Lentiviral Vectors in Erythroid Milieu By Organizing an Independent Chromatin Doma…

2015

Abstract Retroviral vectors are currently the most suitable vehicles for therapeutic gene transfer in hematopoietic stem cells. However, these vectors are known to integrate rather randomly throughout the genome, suffering the so called chromosomal position effects (PE). Such a critical occurrence most probably depends upon the ability of heterochromatin to spread in the inserted vector sequences. Moreover, the use of transgenes imply genotoxicity effects, since the cis-regulatory sequences harbored by the vector can disturb the proper transcription of the resident genes neighboring the integration site, potentially leading to malignant transformation. Due to their enhancer blocker activity…

Geneticschromatin insulatorEuchromatinHeterochromatinImmunologyChromosomal Position EffectsSettore BIO/11 - Biologia MolecolareCell BiologyHematologyBiologychromatin insulator; hematopoietic stem cells; Lentiviral Vectors; chromatin architecture; Chromosome Conformation Capture.BiochemistryChromatinChromosome conformation capturechromatin architecturehematopoietic stem cellChromatin LoopChromosome Conformation Capture.EnhancerChIA-PETLentiviral Vector
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Epigenetic and in vivo comparison of diverse MSC sources reveals an endochondral signature for human hematopoietic niche formation

2015

In the last decade there has been a rapid expansion in clinical trials using mesenchymal stromal cells (MSCs) from a variety of tissues. However, despite similarities in morphology, immunophenotype, and differentiation behavior in vitro, MSCs sourced from distinct tissues do not necessarily have equivalent biological properties. We performed a genome-wide methylation, transcription, and in vivo evaluation of MSCs from human bone marrow (BM), white adipose tissue, umbilical cord, and skin cultured in humanized media. Surprisingly, only BM-derived MSCs spontaneously formed a BM cavity through a vascularized cartilage intermediate in vivo that was progressively replaced by hematopoietic tissue…

Hematopoiesis and Stem CellsCellular differentiationBlotting WesternImmunologyCD34Bone Marrow CellsBiologyBiochemistryEpigenesis GeneticOsteogenesismedicineHumansCell LineageStem Cell NichefungiMesenchymal stem cellHematopoietic Tissuefood and beveragesCell DifferentiationMesenchymal Stem CellsCell BiologyHematologyAnatomyFlow CytometryHematopoietic Stem CellsCell biologyTransplantationmedicine.anatomical_structureBone marrowStem cellChondrogenesisHoming (hematopoietic)Blood
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EFFECTIVENESS OF G-CSF+PLERIXAFOR MOBILIZATION IN β- THALASSEMIA PATIENTS AND WHOLE GENE EXPRESSION ANALYSIS OF THE HARVESTED CD34+ CELLS

2014

Hematopoietic Stem Cells Mobilization Microarray
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Intra-individual Gene Expression Profiling of Peripheral Blood CD34+ Hematopoietic Stem Cells Mobilized by Two Different Protocols

2014

Hematopoietic Stem Cells Gene Expression Profiling Mobilization.
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Direct Toll-Like Receptor-Mediated Stimulation of Hematopoietic Stem and Progenitor Cells Occurs In Vivo and Promotes Differentiation Toward Macropha…

2012

Abstract As Toll-like receptors (TLRs) are expressed by hematopoietic stem and progenitor cells (HSPCs), they may play a role in hematopoiesis in response to pathogens during infection. We show here that TLR2, TLR4, and TLR9 agonists (tripalmitoyl-S-glyceryl-L-Cys-Ser-(Lys)4 [Pam3CSK4], lipopolysaccharide [LPS], and CpG oligodeoxynucleotide [ODN]) induce the in vitro differentiation of purified murine lineage negative cells (Lin−) as well as HSPCs (identified as Lin− c-Kit+ Sca-1+ IL-7Rα− [LKS] cells) toward macrophages (Mph), through a myeloid differentiation factor 88 (MyD88)-dependent pathway. In order to investigate the possible direct interaction of soluble microorganism-associated mol…

Hematopoietic stem and progenitor cellsBiologyCell LineMicemedicineAnimalsProgenitor cellToll-like receptorInnate immune systemMacrophagesToll-Like ReceptorsTLR9Cell DifferentiationCell BiologyFlow CytometryHematopoietic Stem CellsMyD88Molecular biologyToll-Like Receptor 2Toll-like receptorsMice Inbred C57BLToll-Like Receptor 4TLR2Haematopoiesismedicine.anatomical_structureMyeloid Differentiation Factor 88TLR4Molecular MedicineBone marrowDevelopmental BiologySignal Transduction
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The hematopoietic niche: a Drosophila model, at last.

2007

The niche provides a specialised microenvironment necessary for maintenance of stem cells in a non differentiated state. While the hematopoietic stem cell (HSC) niche in vertebrates was the first to be recognized, Drosophila niches supporting germline stem cells were characterised first. Recent evidence for the existence of a niche maintaining hematopoietic precursors in Drosophila opens the way to study in vivo the niche/hematopoietic precursors interactions. The availability of a large collection of cell markers, mutants and sophisticated genetic tools makes Drosophila an attractive model for investigating the cellular and molecular mechanisms that are involved in these interactions.

HemocytesCalcium-Binding ProteinsMembrane ProteinsHematopoietic Stem CellsLarvaModels Animal[SDV.BBM] Life Sciences [q-bio]/Biochemistry Molecular BiologyAnimalsDrosophila ProteinsIntercellular Signaling Peptides and Proteins[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyDrosophilaSerrate-Jagged Proteins[ SDV.BBM ] Life Sciences [q-bio]/Biochemistry Molecular BiologyBiomarkersJagged-1 ProteinTranscription FactorsCell cycle (Georgetown, Tex.)
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Regulation of hematopoiesis through adhesion receptors

2001

Normal steady-state hematopoiesis takes place in the bone marrow microenvironment. Soluble factors as well as contact interactions between the hematopoietic cells and the marrow microenvironment dictate the fate of hematopoietic stem cells and progenitors. Over the last decade it has become clear that cell-cell and cell-extracellular matrix interactions through adhesion receptors play a major role in the hematopoietic process. They are required for the residence of stem cells and progenitors in the marrow, as well as for homing of stem and progenitor cells to the marrow in the setting of stem cell transplantation. Furthermore, adhesion receptors play an important role in regulation of cell …

ImmunologyMembrane ProteinsBone Marrow CellsStem cell factorCell BiologyBiologyHematopoietic Stem CellsHematopoietic ProcessHematopoiesisCell biologyEndothelial stem cellmedicine.anatomical_structureCell AdhesionmedicineAnimalsHumansImmunology and AllergyBone marrowStem cellProgenitor cellCell adhesionHoming (hematopoietic)
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Interferon-α as an Antagonist to Proinflammatory and Hematopoietic Cytokines

1994

Inflammationbusiness.industryImmunologyAntagonistInterferon-alphaBone Marrow CellsHematopoietic Stem CellsProinflammatory cytokineHaematopoiesisBone MarrowVirologyInterferon αImmunologyCytokinesHumansMedicineStromal CellsbusinessJournal of Interferon Research
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