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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
Heightened Immune Activation in Fetuses with Gastroschisis May Be Blocked by Targeting IL-5
Michela Frascoli1, Cerine Jeanty1, Shannon Fleck2
1Eli and Edythe Broad Center of Regeneration Medicine and Stem Cell Research, University of California San Francisco, San Francisco, CA 94143; Department of Surgery, University of California San Francisco, San Francisco, CA 94143;
Insights
Congenital defects like gastroschisis cause chronic fetal inflammation, altering immune cell development. This impacts fetal and neonatal health, suggesting potential targets for prenatal therapy.
Area of Science:
- Immunology
- Developmental Biology
- Neonatal Health
Background:
- Fetal immune system development is crucial for health.
- Prenatal factors influencing fetal immune activation are not well understood.
- Chronic fetal inflammation may alter immune system development.
Purpose of the Study:
- To investigate the impact of chronic fetal inflammation on immune system development.
- To examine immune alterations in neonates with gastroschisis.
Main Methods:
- Analysis of cord blood and intestinal tissue from neonates with gastroschisis.
- Use of a mouse model to study inflammation and immune cell infiltration.
- Investigated the role of IL-5 and innate lymphoid cells (ILCs).
Main Results:
- Gastroschisis patients exhibit elevated inflammatory cytokines and chemokines.
- Earlier activation of T cells (CD4+ and CD8+) observed in cord blood.
- Increased infiltration of T cells and eosinophils in inflamed intestines.
- Elevated eosinophils and ILC2/ILC3 numbers in a mouse model.
- Anti-IL-5 or anti-ILC therapies reduced intestinal eosinophilia.
Conclusions:
- Congenital anomalies causing chronic inflammation alter fetal immune cell composition.
- These immune changes have clinical significance for prenatal and neonatal complications.
- Targeting inflammation or specific immune cells may offer therapeutic strategies for fetal therapy.
Abstract:
The development of the fetal immune system during pregnancy is a well-orchestrated process with important consequences for fetal and neonatal health, but prenatal factors that affect immune activation are poorly understood. We hypothesized that chronic fetal inflammation may lead to alterations in development of the fetal immune system. To test this hypothesis, we examined neonates with gastroschisis, a congenital abdominal wall defect that leads to exposure of the fetal intestines to amniotic fluid, with resultant intestinal inflammation. We determined that patients with gastroschisis show high systemic levels of inflammatory cytokines and chemokines such as eotaxin, as well as earlier activation of CD4(+) and CD8(+) effector and memory T cells in the cord blood compared with controls. Additionally, increased numbers of T cells and eosinophils infiltrate the serosa and mucosa of the inflamed intestines. Using a mouse model of gastroschisis, we observed higher numbers of eosinophils and both type 2 and type 3 innate lymphoid cells (ILC2 and ILC3), specifically in the portion of organs exposed to the amniotic fluid. Given the role of IL-5 produced by ILC2 in regulating eosinophil development and survival, we determined that maternal or fetal administration of the anti-IL-5 neutralizing Ab, or a depleting Ab against ILCs, can both effectively reduce intestinal eosinophilia. Thus, a congenital anomaly causing chronic inflammation can alter the composition of circulating and tissue-resident fetal immune cells. Given the high rate of prenatal and neonatal complications in these patients, such changes have clinical significance and might become targets for fetal therapy.

