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◆ Cell Press Blue2026-04-10· Psychology

Epigenome-microbiome interplay in early life associates with infants’ neurodevelopmental outcomes

Siew Chien Ng, Ye Peng, Lin Zhang, Shilin Zhao, Oscar Wong, Xin Liu, Hang Li, Jie Zhu, Yingzhi Liu, Qi Su, Wing Hung Tam, Tak Yeung Leung, Sandra Chan, Patrick Leung, Jessica Yuet‐Ling Ching, Pui-Kuan Cheong, Long Ip, Amy Mei Kam Chang, Xi Zhang, Xueqi Wu, Yuzhou Chen, Shuai Yan, Whitney Tang, Chun Pun Cheung, Ting Fan Leung, Hein M. Tun, Francis Ka Leung Chan

原始摘要(英文原文)· Original abstract
Epigenetic regulation and microbiome maturation are sensitive to perinatal cues. We studied early-life disruptions in the host epigenome and microbial colonization in relation to neurodevelopmental disorders. In a longitudinal birth cohort, we analyzed 571 cord blood methylomes and 5,328 gut metagenomes from infants and their parents across 969 families to unravel microbiome-epigenome interactions in neuro-immune pathways. We found that Caesarean-section delivery was associated with differential methylation of genes involved in immune responses and neural development. It also reduced vertical maternal microbiome transmission, partially compensated by the paternal microbiome. Children with hypermethylated genes involved in neurogenic and neurotransmission pathways in cord blood showed higher autism spectrum disorder (ASD) and attention-deficit/hyperactivity disorder (ADHD) scores at age 3. However, these epigenetic effects were mitigated by early colonization of Lachnospira pectinoschiza in ASD and Parabacteroides distasonis in ADHD. These findings highlight early-life epigenetic regulation and microbiome-dependent mechanisms in the developmental origins of neurodevelopmental disorders.
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Epigenome-microbiome interplay in early life associates with infants’ neurodevelopmental outcomes — 科研速览 Science Skim