Related Experiment Video
Updated: Jul 24, 2025

A Preterm Rat Model for Pain Studies
Published on: February 9, 2024
Methadone alters the peripheral inflammatory and central immune landscape following prenatal exposure in rats
Nethra K Madurai1, Yuma Kitase1, Sarah Hamimi1,2
1Division of Neonatal-Perinatal Medicine, Department of Pediatrics, School of Medicine, Johns Hopkins University, Baltimore, MD, United States.
Insights
Prenatal opioid exposure (POE) in rats causes lasting brain inflammation and immune cell changes, even after peripheral inflammation resolves. This may explain long-term developmental brain injury in children exposed to opioids.
Area of Science:
- Neuroscience
- Immunology
- Developmental Biology
Background:
- Opioid use during pregnancy is increasing, leading to more infants exposed to opioids.
- Prenatal opioid exposure (POE) disrupts neurodevelopment, with potential long-term consequences.
- Understanding POE's mechanisms is crucial for identifying biomarkers and therapeutics.
Purpose of the Study:
- To investigate changes in cerebral and peripheral inflammation and immune cell activity following POE in a preclinical model.
- To determine if POE leads to chronic neuroinflammation and sustained peripheral immune hyperreactivity (SPIHR).
Main Methods:
- Used an established preclinical model of POE in rats.
- Investigated cerebral immune cell populations at postnatal day 60 (P60).
- Assessed serum cytokine/chemokine levels and peripheral blood mononuclear cell (PBMC) activity at P21 and P60.
Main Results:
- Rats exposed to POE showed increased regulatory T cells and neutrophils in the brain at P60.
- Serum IL-6 and CXCL1 were elevated at P21 in POE rats, but normalized by P60.
- POE rats exhibited SPIHR at P21, with increased TNF-α and CXCL1 post-LPS stimulation, which resolved by P60.
Conclusions:
- Chronic cerebral inflammation persists months after POE, long after peripheral inflammation and SPIHR resolve.
- Altered cerebral immune cell populations post-POE may underlie developmental brain injury, impacting cognition and attention.
- Findings support further research into biomarkers and targeted therapeutics for individuals affected by POE.
Abstract:
Opioid use during pregnancy continues to rise at alarming rates with a parallel trend in the number of infants and children exposed to opioid medications each year. Prenatal opioid exposure (POE) occurs at a critical timepoint in neurodevelopment disrupting intricate pathways essential for neural-immune maturation with the potential for devastating long-term consequences. Understanding the mechanisms underlying injury associated with POE is essential to address long-term outcomes and identify diagnostic and therapeutic biomarkers in this vulnerable patient population. Using an established preclinical model of POE, we investigated changes in cerebral and peripheral inflammation and peripheral blood mononuclear cell (PBMC) activity. We hypothesized that neuroinflammation, as defined by changes in specific cerebral immune cell populations, would exist in adult rats following POE concomitant with sustained peripheral immune hyperreactivity (SPIHR). Our data demonstrated alterations in cerebral immune cells at postnatal day 60 (P60) typified by increased regulatory T cells (p < 0.01) and neutrophils (p < 0.05) in rats with POE compared to controls. Evaluation of serum revealed increased levels of IL-6 (p < 0.05) and CXCL1 (p < 0.05) at P21 in rats with POE compared to controls with no significant difference in cytokine or chemokine levels between the two groups at P60. Additionally, PBMCs isolated from rats with POE at P21 demonstrated baseline hypersecretion of IL-6 (p < 0.01) and SPIHR with increased levels of TNF-α (p < 0.05) and CXCL1 (p < 0.05) following stimulation with LPS. At P60, however, there was no significant difference found in cytokine or chemokine levels secreted by PBMCs isolated from rats with POE at baseline or with LPS stimulation when compared to controls. Taken together, these data demonstrate cerebral inflammation months after prenatal opioid exposure and long after the resolution of systemic inflammation and SPIHR seen at toddler age equivalent. Chronic alterations in the cerebral immune cell populations secondary to prenatal opioid exposure may underly long-term consequences of developmental brain injury including deficits in cognition and attention. These findings may be invaluable to further investigations of precise biomarkers of injury and targeted therapeutics for this vulnerable population.
More Related Videos
09:09Generating a Reproducible Model of Mid-Gestational Maternal Immune Activation using PolyI:C to Study Susceptibility and Resilience in Offspring
Published on: August 17, 2022
08:50A Murine Model of Fetal Exposure to Maternal Inflammation to Study the Effects of Acute Chorioamnionitis on Newborn Intestinal Development
Published on: June 24, 2020