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Updated: Feb 6, 2026

A Novel Model of Mild Traumatic Brain Injury for Juvenile Rats
Published on: December 8, 2014
Effects of leptin on neurocognitive and motor functions in juvenile rats in a preterm brain damage model
1School of Biological Science & Medical Engineering, Southeast University, Nanjing, Jiangsu 210096, P.R. China.
Insights
Leptin treatment improved spatial memory in preterm rat pups with brain damage. This adipocytokine demonstrated neuroprotective effects, potentially aiding cognitive function in infants with preterm brain injury.
Area of Science:
- Neuroscience
- Developmental Biology
- Endocrinology
Background:
- Preterm infants are susceptible to lifelong neurodevelopmental disabilities.
- Leptin, an adipocytokine, influences neurocognitive and motor functions.
- Mechanisms of hypoxic-ischemic brain damage in preterm infants require further elucidation.
Purpose of the Study:
- To investigate the neuroprotective potential of leptin in a rat model of preterm hypoxic-ischemic brain damage.
- To assess the impact of leptin on spatial memory, motor function, and anxiety-associated behaviors.
Main Methods:
- A rat model of preterm hypoxic-ischemic brain damage was established.
- Rats were treated with either vehicle or leptin post-injury.
- Spatial memory was evaluated using the Morris water maze test.
- Motor function and anxiety were assessed via capture-resistance, forelimb suspension, and open field tests.
Main Results:
- Leptin treatment did not affect survival rates or body weight.
- Leptin administration significantly improved spatial memory, evidenced by increased platform crossings and reduced latency in the Morris water maze.
- No significant differences in motor function or anxiety-related behaviors were observed between leptin-treated and sham groups.
Conclusions:
- Leptin demonstrates neuroprotective effects by alleviating spatial memory impairments in preterm brain-damaged rats.
- These findings suggest leptin's potential therapeutic role in mitigating cognitive deficits associated with preterm brain injury, independent of gender or weight.
Abstract:
Preterm infants face lifelong disabilities, including learning disorders, as well as visual, auditory and behavioral problems. Recent studies have demonstrated that leptin, an adipocytokine encoded by a gene associated with obesity and expressed in adipose tissue, affects neurocognitive and motor function; however, the mechanisms of brain damage in preterm infants are unclear. In the present study, the neuroprotective effects of leptin in a rat model of preterm hypoxic‑ischemic brain damage were investigated. Rats (2‑days‑old) were subjected to brain damage (ligation of the common carotid artery followed by exposure to 6% oxygen for 2 h) and treated with vehicle (control) or leptin. Spatial memory was analyzed in the present study using the Morris water maze test 19 days following ligation. Over the 24‑day post‑surgical observation period, capture‑resistance test, forelimb suspension and open field tests were conducted to evaluate motor function and anxiety‑associated behavior. Treatment with leptin did not affect survival rate or body weight. Treatment with leptin increased the number of platform crossings in rats with premature brain damage in the Morris water maze test, which was used to assess spatial memory. Multivariate analysis revealed that leptin reduced the latency to finding the platform location, independent of gender and weight. In the capture‑resistance, forelimb suspension and open field tests, there were no differences between animals administered leptin and the sham group. Collectively, the results of the present study suggested that leptin may alleviate spatial memory impairment resulting from premature brain damage, independent of gender or weight. These results may improve understanding of the neuroprotective effects exhibited by leptin in infants with preterm brain damage.
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