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Updated: Aug 5, 2026

A Murine Model of Fetal Exposure to Maternal Inflammation to Study the Effects of Acute Chorioamnionitis on Newborn Intestinal Development
Published on: June 24, 2020
Sex-specific outcomes following chorioamnionitis
Jessica E Knobbe1,2, Jennifer R Bermick3
1Stead Family Depsartment of Pediatrics, The University of Iowa Roy J and Lucille A Carver College of Medicine, Iowa City, IA, USA.
Insights
Fetal sex significantly impacts outcomes of chorioamnionitis (inflammation of fetal membranes). Male infants show greater neuroinflammation and brain vulnerability, while females exhibit distinct responses affecting other organs.
Area of Science:
- Perinatal medicine
- Reproductive immunology
- Neurodevelopmental science
Background:
- Chorioamnionitis is a frequent cause of perinatal inflammation with serious neonatal and long-term consequences.
- While male infants often face higher rates of inflammation-related morbidities, the specific role of fetal sex in chorioamnionitis outcomes is not well understood.
Purpose of the Study:
- To review and synthesize existing human and animal model data on how fetal sex influences vulnerability to inflammation-induced injury from chorioamnionitis.
- To evaluate sex-specific placental biology and fetal immune responses in the context of perinatal inflammation.
Main Methods:
- Comprehensive literature review of human studies and animal models investigating chorioamnionitis and its outcomes.
- Analysis of sex-specific inflammatory responses, neuroinflammation, brain vulnerability, and other organ system susceptibilities.
Main Results:
- Male fetuses consistently display heightened acute inflammatory responses, increased neuroinflammation, and greater brain structural vulnerability.
- Human studies reveal sex-specific alterations in cerebral blood flow and brain metabolites, with males at higher risk for cerebral palsy and neurodevelopmental impairment.
- Females show distinct inflammatory patterns and susceptibility in lung function and metabolic development.
Conclusions:
- Fetal sex is a critical determinant of morbidity following chorioamnionitis, influencing neurodevelopmental, pulmonary, and metabolic trajectories.
- There is a significant need to integrate sex as a biological variable in perinatal research and clinical risk stratification for chorioamnionitis.
Abstract:
Chorioamnionitis is a common cause of perinatal inflammation and is associated with adverse neonatal and long-term outcomes. Although male infants experience higher rates and greater severity of many inflammation-related morbidities, the contribution of fetal sex to chorioamnionitis-related outcomes remains understudied. This review synthesizes evidence from human studies and animal models to evaluate how sexually dimorphic placental biology and fetal immune responses shape offspring vulnerability to inflammation-induced injury. Across species, males consistently exhibit heightened acute inflammatory responses, increased neuroinflammation, and greater structural brain vulnerability following exposure to perinatal inflammation. Human studies demonstrate sex-specific alterations in cerebral blood flow and brain metabolites, with males showing patterns that place them at increased risk of cerebral palsy and neurodevelopmental impairment. Females, while mounting distinct inflammatory responses, show susceptibility in other organ systems, including impaired lung function and altered metabolic trajectories in childhood. Findings from animal models parallel human observations and reveal possible mechanistic pathways through which sex modifies neuroimmune, metabolic, and behavioral outcomes across the lifespan. Collectively, this review highlights the substantial impact of fetal sex on inflammation-driven morbidity and underscores the critical need to incorporate sex as a biological variable in perinatal research and clinical risk stratification. IMPACT: Few investigations of chorioamnionitis-related outcomes stratify analyses by fetal sex, leaving key biologic differences unexplored. Male and female fetuses mount distinct placental and systemic inflammatory responses to chorioamnionitis, which likely contribute to differential neurodevelopmental, pulmonary, metabolic, and cardiac outcomes. This review provides the first comprehensive synthesis of sex-specific responses to chorioamnionitis and highlights the need to analyze sex as a biological variable in future outcome-related studies.
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