Effects of MRI Contrast Agents on the Stem Cell Phenotype
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Live Imaging of Adult Neural Stem Cells in RodentsMesenchymal stem cells migration homing and trackingTherapeutics with SPION-labeled stem cells for the main diseases related to brain aging: a systematic reviewBiodegradable, polymer encapsulated, metal oxide particles for MRI-based cell trackingCell motility of neural stem cells is reduced after SPIO-labeling, which is mitigated after exocytosis.In situ labeling and imaging of endogenous neural stem cell proliferation and migration.Characterization of an iron oxide nanoparticle labelling and MRI-based protocol for inducing human mesenchymal stem cells into neural-like cells.In vivo monitoring of adult neurogenesis in health and disease.Lessons from human teratomas to guide development of safe stem cell therapies.Novel positively charged nanoparticle labeling for in vivo imaging of adipose tissue-derived stem cellsMagnetic Particle Imaging tracks the long-term fate of in vivo neural cell implants with high image contrast.Clinically viable magnetic poly(lactide-co-glycolide) particles for MRI-based cell tracking.Optimization of the magnetic labeling of human neural stem cells and MRI visualization in the hemiparkinsonian rat brainIn vivo tracking of human placenta derived mesenchymal stem cells in nude mice via ¹⁴C-TdR labelingIn vitro labeling of endothelial progenitor cells isolated from peripheral blood with superparamagnetic iron oxide nanoparticles.Cell tracking and the development of cell-based therapies: a view from the Cardiovascular Cell Therapy Research Network.Magnetic resonance imaging and fluorescence labeling of clinical-grade mesenchymal stem cells without impacting their phenotype: study in a rat model of strokeSuperparamagnetic iron oxide is suitable to label tendon stem cells and track them in vivo with MR imagingIntraarterial route increases the risk of cerebral lesions after mesenchymal cell administration in animal model of ischemia.In vivo imaging of adult neurogenesis.Stem cells labeled with superparamagnetic iron oxide nanoparticles in a preclinical model of cerebral ischemia: a systematic review with meta-analysis.Labeling of mesenchymal stem cells for MRI with single-cell sensitivity.Tracking Cells Without Leaving a Trace.Somatic differentiation and MR imaging of magnetically labeled human embryonic stem cells.Neural Stem Cell Plasticity: Advantages in Therapy for the Injured Central Nervous SystemMagnetic resonance imaging of human dental pulp stem cells in vitro and in vivo.¹⁹F MRI tracer preserves in vitro and in vivo properties of hematopoietic stem cells.Angiographic demonstration of neoangiogenesis after intra-arterial infusion of autologous bone marrow mononuclear cells in diabetic patients with critical limb ischemia.Long-Term Cell Tracking Following Local Injection of Mesenchymal Stromal Cells in the Equine Model of Induced Tendon Disease.Multimodal imaging of stem cell implantation in the central nervous system of mice.Variability in contrast agent uptake by different but similar stem cell types.Limitations and caveats of magnetic cell labeling using transfection agent complexed iron oxide nanoparticles.Novel magnetic multicore nanoparticles designed for MPI and other biomedical applications: From synthesis to first in vivo studies.Biological characteristics of adipose tissue-derived stem cells labeled with amine-surface-modified superparamagnetic iron oxide nanoparticles.Amine-surface-modified superparamagnetic iron oxide nanoparticles interfere with differentiation of human mesenchymal stem cells.Cell-Based Therapy in TBI: Magnetic Retention of Neural Stem Cells In Vivo.Labeling human embryonic stem-cell-derived cardiomyocytes for tracking with MR imaging.Improved Labeling of Pancreatic Islets Using Cationic Magnetoliposomes.Design of biomimetic vascular grafts with magnetic endothelial patterningEffects of labeling human mesenchymal stem cells with superparamagnetic iron oxides on cellular functions and magnetic resonance contrast in hypoxic environments and long-term monitoring
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Effects of MRI Contrast Agents on the Stem Cell Phenotype
description
scientific article published on 26 March 2010
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wetenschappelijk artikel
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наукова стаття, опублікована в серпні 2010
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name
Effects of MRI Contrast Agents on the Stem Cell Phenotype
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Effects of MRI Contrast Agents on the Stem Cell Phenotype
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type
label
Effects of MRI Contrast Agents on the Stem Cell Phenotype
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Effects of MRI Contrast Agents on the Stem Cell Phenotype
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prefLabel
Effects of MRI Contrast Agents on the Stem Cell Phenotype
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Effects of MRI Contrast Agents on the Stem Cell Phenotype
@nl
P2093
P2860
P356
P1433
P1476
Effects of MRI contrast agents on the stem cell phenotype
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P2093
Angel Ayuso Sacido
Annelies Crabbe
Caroline Vandeputte
Frank P Luyten
Jeroen Eyckmans
Jose Manuel Garcia Verdugo
Koen Van Laere
Tom Dresselaers
P2860
P304
P356
10.3727/096368910X494623
P577
2010-03-26T00:00:00Z