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Maternal-fetal immune conflict contributes to male-specific impairments in a mouse model of neurodevelopmental disorders.

Created on 17 Sep 2026

Authors

Irene Sanchez-Martin, Bharti Kukreja, Paige Henderson, Qianyu Lin, Daniel DiMartino, Valerie Bagan, Justin Park, Brian T Kalish, Lucas Cheadle

Published in

Science advances. Volume 12. Issue 38. Pages eaeg0779. Sep 18, 2026. Epub Sep 16, 2026.

Abstract

Autism spectrum disorder (ASD) arises from genetic and environmental risk factors. One environmental factor, maternal immune activation (MIA)-in which pathogenic infection during pregnancy increases ASD risk in offspring-disproportionately affects males. However, the basis for this male-specific vulnerability and the mechanisms by which inflammatory signals cross the maternal-fetal interface to affect the male embryo remain largely unknown. Using the poly(I:C) mouse model of neurodevelopmental disorders, we characterize fetal, placental, and amniotic changes occurring within 24 hours of MIA. We find that 30% of embryos exhibit large-scale teratogenic abnormalities-ranging from decreased fetal weight to altered sensory organ development-while 70% develop normally. These abnormalities occur exclusively in a subset of males, never in females. Single-nucleus transcriptomics revealed robust induction of proinflammatory gene programs in the placentas of affected males across a broad range of cell types, and most prominently in spongiotrophoblasts-fetally derived cells that partly form the maternal-fetal border. These cells simultaneously down-regulate extracellular matrix and hormone biosynthesis pathways, coinciding with a breakdown in placental structural integrity and the accumulation of immune cells and cytokines in the amniotic fluid. One such cytokine, interleukin-6, is required for MIA-evoked developmental abnormalities to emerge. Our data indicate that MIA drives a rapid shift from an immunosuppressive to a proinflammatory maternal-fetal interface in a vulnerable subset of male embryos, producing acute, sex-restricted developmental deficits. We propose that male embryos may express unique proteins capable of triggering this inflammatory response, which-combined with MIA-induced loss of maternal immunosuppression-selectively derails male embryonic development.

PMID:
42748249
Bibliographic data and abstract were imported from PubMed on 17 Sep 2026.

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