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Neurobehavioral Assessments in a Mouse Model of Neonatal Hypoxic-ischemic Brain Injury
Published on: November 24, 2017
Treatment-induced prevention of learning deficits in newborn mice with brain lesions
M Bouslama1, L Chauvière1, R H Fontaine1
1INSERM U676, Robert Debré Hospital, 48 bvd Sérurier, 75019 Paris, France; University Paris 7, Denis Diderot Medical School, IFR02, 10 av de Verdun, 75010 Paris, France.
Abstract:
Perinatal brain injuries often result in irreversible learning disabilities, which manifest in early childhood. The molecular and cellular mechanisms of these injuries and potential pharmacological treatments are emerging, chiefly from studies in newborn rodents. In newborn mice, experimentally induced lesions can be dramatically reduced by appropriate neuroprotective treatments. However, the early effectiveness of these treatments in preserving cognition remained unknown. Here, we addressed this issue by using intracerebral ibotenate to induce excitotoxic brain lesions in 5-day-old mice (postnatal day 5). On postnatal days 6-7, we tested spontaneous preference for maternal odors, as an index of odor memory, and conditioned preference for an artificial odor previously paired with stroking, as an index of associative learning. Brain-lesioned newborn mice showed normal general status and preference for maternal odors. In contrast, odor conditioning was severely impaired. A previous study showed that fructose 1,6-biphosphate acted as a neuroprotective agent which significantly reduced neocortical lesion size. In the present study, treating the newborn mice with fructose 1,6-biphosphate 15 min before the ibotenate injection reduced neocortical lesion size and restored conditioning. This demonstrates, for the first time, that neuroprotective treatment can protect some features of early cognition.
Insights
Neuroprotective treatments can prevent cognitive deficits in newborn mice after brain injury. Fructose 1,6-biphosphate reduced lesion size and restored associative learning, preserving early cognition.
Area of Science:
- Neuroscience
- Developmental Biology
- Pharmacology
Background:
- Perinatal brain injuries cause lasting learning disabilities.
- Neuroprotection studies in newborn rodents show promise for reducing lesions.
- Early cognitive effects of these treatments remain largely unknown.
Purpose of the Study:
- To investigate the impact of neuroprotection on early cognition in newborn mice.
- To assess if fructose 1,6-biphosphate can preserve cognitive functions after excitotoxic brain injury.
Main Methods:
- Induced excitotoxic brain lesions in 5-day-old mice using intracerebral ibotenate.
- Assessed odor memory and associative learning on postnatal days 6-7.
- Administered fructose 1,6-biphosphate before lesion induction.
Main Results:
- Lesioned mice exhibited normal odor memory but impaired associative learning.
- Fructose 1,6-biphosphate treatment significantly reduced lesion size.
- The treatment restored the impaired associative learning in lesioned mice.
Conclusions:
- Neuroprotection can preserve specific early cognitive functions following brain injury.
- Fructose 1,6-biphosphate demonstrates potential as a therapeutic agent for perinatal brain injury.
- This study provides the first evidence of neuroprotection preserving early cognition.

