抵抗性
坏死性小肠结肠炎
肠道菌群
微生物群
肠道微生物群
基因组
生物
队列
接收机工作特性
医学
抗生素
抗生素耐药性
生物信息学
微生物学
内科学
免疫学
遗传学
基因
整合子
作者
Shuqin Zeng,Hua Wang,Li Zhang,Shiping Li,Yuan Yuan,Mengting Tian,Yi Qu,Junjie Ying,Meicen Zhou,Yong Hu,Jinglan Huang,Rong Zou,Fengyan Zhao,Xiaojuan Su,Qian Liu,Yan He,Jinxing Feng,Weimin Huang,Ying Luo,Zhemin Zhou
标识
DOI:10.1002/advs.202505154
摘要
Abstract The accelerating threat from antimicrobial resistance (AMR) has become a global health issue. The properties of AMR in the gut microbiome of preterm infants and its clinical relevance with necrotizing enterocolitis (NEC) remain unknown. In‐depth integrative analyses of 5,684 gut metagenomes are performed to build an AMR genes (ARGs) landscape. A subset of 107 preterm infants who developed NEC is sampled to examine the trajectory and predictive potential of ARGs preceding NEC onset. The variation and core set of ARGs, their higher burden and diversity, and potential ARGs‐enriched gut bacteria in preterm infants compared to full‐term infants are comprehensively discovered, reflecting a strain shift in genomic functions. Moreover, the gut resistome converged over 9 days before NEC onset is observed, which is driven by 24 ARGs. Machine learning analysis reveals potential usage of the gut resistome as an indicator for predicting NEC onset in an external validation preterm birth cohort (the area under the receiver operating characteristic curve, AU‐ROC = 0.823), which is significantly higher than that based on the bacterial species (AU‐ROC = 0.727). Overall, the findings can be referenced to mitigate the burden and spread of ARGs, and specific ARGs have potential for disease risk stratification to improve clinical management.
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