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White Matter Brain Development after Exposure to Circulating Cell-Free Hemoglobin and Hyperoxia in a Rat Pup Model
Åsa Jungner1, Suvi Vallius Kvist2, Olga Romantsik3
1Department of Clinical Sciences Lund, Pediatric Surgery and Neonatal Care, Skane University Hospital, Lund University, Lund, Sweden, asa.jungner@med.lu.se.
Insights
Critical congenital heart defect treatments involving cardiopulmonary bypass may expose neonates to cell-free hemoglobin and hyperoxia. This study found neither significantly impacts white matter development in rat pups.
Area of Science:
- Neuroscience
- Developmental Biology
- Cardiovascular Surgery
Background:
- Neonates with critical congenital heart defects face risks of white matter injury and neurodevelopmental issues.
- Cardiopulmonary bypass circulation can involve cell-free hemoglobin and hyperoxia, potential neurotoxic factors.
Purpose of the Study:
- To investigate the impact of cell-free hemoglobin and hyperoxia on white matter brain development in neonatal rats.
- To assess potential neurodevelopmental impairments following exposure to these factors during simulated cardiopulmonary bypass.
Main Methods:
- Neonatal rat pups were exposed to cell-free hemoglobin and/or hyperoxia for 24 hours.
- Evaluations included apoptosis, myelination, oligodendrocyte maturation via immunohistochemistry, gene/protein analysis, and diffusion tensor MRI.
Main Results:
- Hyperoxia increased oligodendrocyte apoptosis in multiple brain regions.
- Cell-free hemoglobin did not exacerbate hyperoxia-induced apoptosis.
- No significant delays in oligodendrocyte maturation or hypomyelination were observed with either insult, alone or combined.
Conclusions:
- Circulating cell-free hemoglobin, with or without hyperoxia, did not significantly alter white matter development in this neonatal rat model.
- Hyperoxia alone increased oligodendrocyte apoptosis, but did not lead to long-term developmental deficits in white matter structure or myelination.
Abstract:
Neonates born with critical congenital heart defects are at risk of diffuse white matter injuries and neurodevelopmental impairments. This study aimed to determine the impact of circulating cell-free hemoglobin and hyperoxia, both present during cardiopulmonary bypass circulation, on white matter brain development. Postnatal day 6 rat pups were injected intraperitoneally with cell-free Hb or vehicle and exposed to hyperoxia (fiO2 = 0.8) or normoxia (fiO2 = 0.21) for 24 h. We evaluated apoptosis, myelination, and oligodendrocyte maturation with immunohistochemistry, gene and protein analyses, and in vivo diffusion tensor magnetic resonance imaging (MRI). Consistent with previous studies, we found an increase in apoptosis of oligodendrocytes as determined by TUNEL+ staining in Olig2+ cells in white matter, cortex, thalamus, and hippocampus following exposure to hyperoxia with no additional effect of cell-free Hb. A transient increase in the mRNA expression of intercellular adhesion molecule 1 at 6 h was observed following combined exposure to cell-free Hb and hyperoxia. No indications of oligodendrocyte maturational delay or hypomyelination were observed after either insult, delivered separately or combined, as determined by immunohistochemistry, Western blot, and diffusion tensor MRI. In our model, exposure to circulatory cell-free Hb, with or without concomitant hyperoxia, did not significantly alter brain white matter development.
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