← Explorer/Network

Erythropoietin protects dopaminergic neurons and improves neurobehavioral outcomes in juvenile rats after neonatal hypoxia-ischemia

Demers EJ, McPherson RJ, Juul Se2005Pediatric ResearchJournal Article
10.1203/01.pdr.0000169971.64558.5aPubMedFree full text

Abstract

Brain injury as a result of hypoxia-ischemia remains a common cause of morbidity and mortality in neonates. No effective therapy is currently available. The hematopoietic cytokine erythropoietin (Epo) provides neuroprotection in many adult models of brain injury and is currently being investigated as a therapeutic agent for human stroke and spinal cord injury. We tested the hypothesis that recombinant Epo (rEpo) would improve neurobehavioral outcomes after neonatal hypoxic-ischemic brain injury. Postnatal day 7 rats underwent right common carotid artery occlusion followed by a 90-min exposure to 8% oxygen. Rats were subsequently treated with rEpo or placebo. Sensory neglect and apomorphine-induced rotation were measured at P27 and P28. Rats were killed at P30, blood was drawn, and the brains were perfusion-fixed for histology and immunohistochemistry. No differences in gross brain injury between rEpo and placebo-treated rats were found. Neonatal rEpo treatment protected dopamine neurons as indicated by the preservation of tyrosine hydroxylase-positive cells in the substantia nigra pars compacta and ventral tegmental area. rEpo treatment also improved functional outcomes by reducing sensory neglect and preventing the rotational asymmetry seen in control animals. No differences in hematocrit, white blood cell counts, neutrophil counts, or platelet counts were measured. We observed that rEpo treatment protected mesencephalic dopamine neurons and reduced the degree of behavioral asymmetries at 4 wk of life. On the basis of these findings, we conclude that further studies investigating the safety and efficacy of high-dose rEpo as a neuroprotective strategy are indicated in neonatal models of hypoxic-ischemic brain injury.

Cited By (6)

  • Lack of Hypoxia-Inducible Factor-1α Impairs Midbrain Neural Precursor Cells Involving Vascular Endothelial Growth Factor SignalingJournal of Neuroscience · 2007
  • Erythropoietin Is Neuroprotective in a Preterm Ovine Model of Endotoxin-Induced Brain InjuryJournal of Neuropathology & Experimental Neurology · 2010
  • Erythropoietin ameliorates damage to the placenta and fetal liver induced by exposure to lipopolysaccharidePlacenta · 2010
  • Higher Cumulative Doses of Erythropoietin and Developmental Outcomes in Preterm InfantsPEDIATRICS · 2009
  • Intrastriatal administration of erythropoietin protects dopaminergic neurons and improves neurobehavioral outcome in a rat model of Parkinson’s diseaseNeuroscience · 2007
  • Pretreatment with low doses of erythropoietin ameliorates brain damage in periventricular leukomalacia by targeting late oligodendrocyte progenitors: a rat modelNeonatology · 2008

References (7)

  • Erythropoietin fosters both intrinsic and extrinsic neuronal protection through modulation of microglia, Akt1, Bad, and caspase‐mediated pathwaysBritish Journal of Pharmacology · 2003
  • Erythropoietin-mediated neuroprotection involves cross-talk between Jak2 and NF-κB signalling cascadesNature · 2001
  • Erythropoietin protects the in vitro blood–brain barrier against VEGF‐induced permeabilityEuropean Journal of Neuroscience · 2003
  • Erythropoietin protects the developing brain against N-methyl-D-aspartate receptor antagonist neurotoxicityNeurobiology of Disease · 2004
  • Erythropoietin crosses the blood-brain barrier to protect against experimental brain injuryProceedings of the National Academy of Sciences · 2000
  • Erythropoietin as a Tissue-Protective Cytokine in Brain Injury: What Do We Know and Where Do We Go?The Neuroscientist · 2004
  • The pleiotropic effects of erythropoietin in the central nervous systemJournal of Neuropathology & Experimental Neurology · 2003