大肠杆菌
败血症
抗体
微生物学
免疫学
免疫
新生儿败血症
生物
血清学
免疫球蛋白G
大肠杆菌感染
殖民地化
免疫系统
被动免疫
先天免疫系统
血清型
医学
初乳
新生儿感染
新生儿脑膜炎
补体系统
体液免疫
细菌
致病性大肠杆菌
胎龄
免疫球蛋白M
肠杆菌科
免疫
抗生素
细菌外膜
抗体反应
肺炎克雷伯菌
作者
Raymond E. Diep,Ujjwal Adhikari,Kübra Gökçe Tezel,Giang Pham,Allison R Burrell,Mary Allen Staat,Nguyen Thi Khanh Nhu,Minh-Duy Phan,Kate M. Peters,Mark A. Schembri,Scott Saunders,David B. Haslam,John J. Erickson,Susana Chavez-Bueno,Sing Sing Way
出处
期刊:Nature
[Nature Portfolio]
日期:2026-03-11
标识
DOI:10.1038/s41586-026-10225-z
摘要
Escherichia coli is a leading cause of neonatal sepsis, with infection occurring in approximately one in every 1,000 live births1,2. However, with E. coli colonization beginning soon after birth3-5 and defects in neonatal host defence maturation6-9, an alternative consideration is why infection does not occur even more frequently. Here we show that newborn babies with E. coli sepsis have selectively reduced vertically transferred natural antibodies that recognize E. coli, mechanistically explaining their susceptibility to infection. Complementary preclinical studies show that preconceptual intestinal colonization with probiotic E. coli Nissle 1917 (EcN)10 primes anti-E. coli immunoglobulin G (IgG) antibodies with broad cross-reactivity to clinical isolates responsible for neonatal sepsis that override the inherent susceptibility of neonatal mice. Outer membrane protein A (OmpA) is a target of maternal IgG and is also essential for EcN colonization-induced serological immunogenicity. Upon vertical transfer to neonates, colonization-primed anti-E. coli IgG uniquely protects against infection via opsonization, requiring both complement and IgG Fc receptors. Compared with specimens from sex and gestational age-matched healthy control babies without infection, dried blood spot specimens collected one day after birth from 100 babies with E. coli sepsis show consistently reduced IgG titres to pooled E. coli clinical isolates and OmpA, along with impaired IgG-dependent antibacterial opsonization. Together, these results demonstrate that natural infection susceptibility of neonates is efficiently rescued by anti-E. coli IgG and identify defects in pathogen-targeted vertically transferred immunity as a primary risk factor for severe invasive infection in newborn babies.
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