Endogenous neural progenitor cells as therapeutic target after spinal cord injury.
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Translocator protein (18 kDa) TSPO: an emerging therapeutic target in neurotraumaNeural stem cell niches in health and diseasesThe multifaceted effects of agmatine on functional recovery after spinal cord injury through Modulations of BMP-2/4/7 expressions in neurons and glial cellsEffects of the combination of methylprednisolone with aminoguanidine on functional recovery in rats following spinal cord injury.The effects of controlled release of neurotrophin-3 from PCLA scaffolds on the survival and neuronal differentiation of transplanted neural stem cells in a rat spinal cord injury model.Hydrogels and Cell Based Therapies in Spinal Cord Injury Regeneration.Long-term MR cell tracking of neural stem cells grafted in immunocompetent versus immunodeficient mice reveals distinct differences in contrast between live and dead cells.Advances in regenerative therapies for spinal cord injury: a biomaterials approach.Unconventional Neurogenic Niches and Neurogenesis Modulation by VitaminsTemporal and Regional Expression of Glucose-Dependent Insulinotropic Peptide and Its Receptor in Spinal Cord Injured Rats.Neural progenitor cells grown on hydrogel surfaces respond to the product of the transgene of encapsulated genetically engineered fibroblastsAngiogenic microspheres promote neural regeneration and motor function recovery after spinal cord injury in ratsFrom birth till death: neurogenesis, cell cycle, and neurodegeneration.Beneficial effects of melatonin combined with exercise on endogenous neural stem/progenitor cells proliferation after spinal cord injuryNeural stem cells: are they the hope of a better life for patients with fetal-onset hydrocephalus?Influence of the extracellular matrix on endogenous and transplanted stem cells after brain damageSustained delivery of bioactive neurotrophin-3 to the injured spinal cord.Endogenous proliferation after spinal cord injury in animal models.Neural progenitor cells but not astrocytes respond distally to thoracic spinal cord injury in rat models.Inflammatory Stress Effects on Health and Function After Spinal Cord Injury.Engraftment, neuroglial transdifferentiation and behavioral recovery after complete spinal cord transection in rats.
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Endogenous neural progenitor cells as therapeutic target after spinal cord injury.
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
@pt
bilimsel makale
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scientific article published on October 2008
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Endogenous neural progenitor cells as therapeutic target after spinal cord injury.
@en
Endogenous neural progenitor cells as therapeutic target after spinal cord injury.
@nl
type
label
Endogenous neural progenitor cells as therapeutic target after spinal cord injury.
@en
Endogenous neural progenitor cells as therapeutic target after spinal cord injury.
@nl
prefLabel
Endogenous neural progenitor cells as therapeutic target after spinal cord injury.
@en
Endogenous neural progenitor cells as therapeutic target after spinal cord injury.
@nl
P2093
P2860
P1433
P1476
Endogenous neural progenitor cells as therapeutic target after spinal cord injury.
@en
P2093
Aileen Schröter
Franz-Josef Obermair
Michaela Thallmair
P2860
P304
P356
10.1152/PHYSIOL.00017.2008
P577
2008-10-01T00:00:00Z