生物
后代
免疫
病毒
免疫学
微生物群
先天免疫系统
病毒学
免疫系统
串扰
甲型流感病毒
代谢物
肠道菌群
微生物学
干扰素
犬尿氨酸
转录组
作者
Krist Antunes Fernandes,Felicia Sanders,Thomas R. Cafiero,Chenyan Huang,Jojo Reyes,Abhishek Biswas,Ai Ing Lim
标识
DOI:10.1016/j.chom.2026.04.009
摘要
Maternal environmental exposures can alter microbiome composition and lead to changes in offspring immunity. Industrialization has led to significant shifts in the microbiome, but whether these have transgenerational impacts remains unclear. Here, we discovered that maternal helminths, an evolutionarily conserved mammalian partner lost in industrialized societies, confer broad and lasting protection against respiratory viruses in offspring. This heterologous antiviral immunity is mediated by helminth-induced changes in the maternal microbiota. The tryptophan metabolite indole-3-propionic acid (IPA), derived from helminth-altered microbiota, induces lung epithelial IFN-I responses and is sufficient to protect offspring from respiratory syncytial virus (RSV) and influenza A virus infections. Analysis of chronically helminth-infected human populations reveals gut microbiota enriched for tryptophan metabolic capacity. Additionally, IPA treatment is sufficient to enhance antiviral IFN-I signaling in human bronchial epithelial cells. Collectively, this work uncovers the importance of maternal helminth-driven trans-kingdom crosstalk across generations and highlights microbial metabolites as actionable strategies to strengthen antiviral defense.
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