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Nociceptin/orphanin FQ exacerbates excitotoxic white-matter lesions in the murine neonatal brain
Vincent Laudenbach, Girolamo Calo, Remo Guerrini, Géraldine Lamboley, Jean-François Benoist, Philippe Evrard, Pierre Gressens
Vincent Laudenbach, Girolamo Calo, Remo Guerrini, Géraldine Lamboley, Jean-François Benoist, Philippe Evrard, Pierre Gressens
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Article

Nociceptin/orphanin FQ exacerbates excitotoxic white-matter lesions in the murine neonatal brain

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Abstract

Intracerebral administration of the excitotoxin ibotenate to newborn mice induces white-matter lesions, mimicking brain lesions that occur in human preterm infants. Nociceptin (NC), also called orphanin FQ, is the endogenous ligand of the opioid receptor-like 1 (ORL1) receptor and does not bind classical high-affinity opioid receptors. In the present study, administration of NC exacerbated ibotenate-induced white-matter lesions while coadministration of ibotenate with either of two NC antagonists reduced excitotoxic white-matter lesions by up to 64%. Neither ibotenate plus endomorphin I (a selective μ receptor agonist), nor ibotenate plus naloxone (a classical opioid receptor antagonist) modulated the excitotoxic lesion. Pretreatment with antisense oligonucleotides targeting the NC precursor peptide mRNA significantly reduced ibotenate-induced white-matter damage. Finally, high doses of fentanyl, which stimulates both classical μ opioid receptors and ORL1, exacerbated excitotoxic white-matter lesion. This toxic effect was blocked by inhibiting ORL1 but not classical opioid receptors. Together, these findings show that endogenous or exogenous stimulation of the ORL1 receptor can be neurotoxic and that blocking NC signaling protects the white matter against excitotoxic challenge. These data point to potential new avenues for neuroprotection in human preterm infants at high risk of brain lesions.

Authors

Vincent Laudenbach, Girolamo Calo, Remo Guerrini, Géraldine Lamboley, Jean-François Benoist, Philippe Evrard, Pierre Gressens

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Figure 3

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Cell distribution in brains injected with fluorescein-labeled NC mRNA an...
Cell distribution in brains injected with fluorescein-labeled NC mRNA antisense oligonucleotides. Pups were intracerebrally injected with labeled antisense oligonucleotides prior to processing the brains for immunohistochemistry. Arrows point to examples of labeled cells. (a) GFAP immunostaining in the P5 neopallium, showing astrocytes labeled in red. (b) Typical example of double labeling for GFAP (red deposit as in a) and fluorescein (blue deposit) in the P5 neopallium, showing numerous double-labeled cells. (c) Double labeling for MAP-2 (red deposit) and fluorescein (blue deposit) in the P5 neopallium, showing the only two double-labeled neurons that were detected in five injected and serially sectioned brains. Bar, 40 μm.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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