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Updated: Jan 26, 2026

A Battery of Motor Tests in a Neonatal Mouse Model of Cerebral Palsy
Published on: November 3, 2016
Can Neonatal Systemic Inflammation and Hypoxia Yield a Cerebral Palsy-Like Phenotype in Periadolescent Mice?
Adamantia F Fragopoulou1,2, Yu Qian3, Rochellys Diaz Heijtz3,4
1Department of Neuroscience, Biomedicum, Karolinska Institutet, 171 77, Stockholm, Sweden. adamantia.fragkopoulou@ki.se.
Insights
A new mouse model for cerebral palsy (CP) was developed using neonatal inflammation and hypoxia. This model shows lasting motor deficits, aiding research into CP interventions.
Area of Science:
- Neuroscience
- Developmental Biology
- Pediatrics
Background:
- Cerebral palsy (CP) is a common childhood motor disability with poorly understood mechanisms.
- Effective prevention and treatment strategies for CP are limited due to this lack of understanding.
Purpose of the Study:
- To establish a novel mouse model of CP for preclinical research.
- To investigate the long-term behavioral and cellular effects of a neonatal double-hit insult (inflammation + hypoxia) relevant to CP.
Main Methods:
- Neonatal mice received intraperitoneal lipopolysaccharide (LPS) injections (P3-P6) followed by hypoxia (P7).
- Gene expression analysis was conducted at P6.
- Behavioral assessments, including horizontal ladder walking, skilled reaching, gait analysis, and anxiety tests, were performed between P24 and P47.
Main Results:
- Neonatal insult induced a region-dependent inflammatory gene expression response.
- Mice exhibited impaired limb placement and coordination on a horizontal ladder.
- Males showed deficits in skilled reaching, altered gait, and increased activity; females displayed reduced grip strength and anxiety-like behaviors.
- No significant gross morphological changes, white matter lesions, or chronic inflammation were observed.
Conclusions:
- The neonatal double-hit model successfully induced subtle, long-lasting motor learning and fine motor skill deficits.
- This model partially mimics mild motor impairments seen in children with CP.
- The model provides a valuable tool for preclinical assessment of novel CP interventions.
Abstract:
Cerebral palsy (CP) is one of the most common childhood-onset motor disabilities, attributed to injuries of the immature brain in the foetal or early postnatal period. The underlying mechanisms are poorly understood, rendering prevention and treatment strategies challenging. The aim of the present study was to establish a mouse model of CP for preclinical assessment of new interventions. For this purpose, we explored the impact of a double neonatal insult (i.e. systemic inflammation combined with hypoxia) on behavioural and cellular outcomes relevant to CP during the prepubertal to adolescent period of mice. Pups were subjected to intraperitoneal lipopolysaccharide (LPS) injections from postnatal day (P) 3 to P6 followed by hypoxia at P7. Gene expression analysis at P6 revealed a strong inflammatory response in a brain region-dependent manner. A comprehensive battery of behavioural assessments performed between P24 and P47 showed impaired limb placement and coordination when walking on a horizontal ladder in both males and females. Exposed males also displayed impaired performance on a forelimb skilled reaching task, altered gait pattern and increased exploratory activity. Exposed females showed a reduction in grip strength and traits of anxiety-like behaviour. These behavioural alterations were not associated with gross morphological changes, white matter lesions or chronic inflammation in the brain. Our results indicate that the neonatal double-hit with LPS and hypoxia can induce subtle long-lasting deficits in motor learning and fine motor skills, which partly reflect the symptoms of children with CP who have mild gross and fine motor impairments.
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