Characteristics of Placental Bacterial DNA Communities in Pregnant Women with Gestational Diabetes Mellitus and Association with Early Neonatal Gut Microbiota and Short-Term Perinatal Outcomes.

IF 1.6
Polish journal of microbiology Pub Date : 2026-06-30 eCollection Date: 2026-06-01 DOI:10.33073/pjm-2026-022
Yujia Qian, Xiaowen You, Fangqin Tu, Ye Tao, Minjuan Zhong, Dong Xu
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Abstract

Gestational diabetes mellitus (GDM) affects maternal metabolism and may be associated with altered placental bacterial DNA community profiles and early neonatal gut microbiota. This prospective cohort study assesses GDM's impact on the placental-neonatal gut microbial axis and links key bacterial taxa to short-term perinatal outcomes and clinical significance. Pregnant women with GDM and healthy controls were enrolled. Placental tissue and first-pass neonatal meconium samples were collected. Bacterial community composition, diversity, and differential genera were analyzed using 5-region 16S rRNA sequencing. FEAST was used to model potential maternal-neonatal microbial sources. Associations among gestational weight gain (GWG), microbial features, and the risk of neonatal hospitalization were also assessed. The GDM and control groups showed significant differences in placental and early neonatal meconium microbial community structures, with increased α-diversity and distinct community separation in both sample types. In placental samples, Brevundimonas was decreased, whereas Lactobacillus and Sphingomonas were enriched. In neonatal meconium, potentially inflammation-related genera, including Staphylococcus, Streptococcus, and Clostridium, were enriched. GWG had limited effects on overall community structure but exerted refined regulation on specific genera. Source tracking showed a reduced placenta-attributed similarity contribution to neonatal meconium microbiota in the GDM group. The abundances of specific placental genera, including Escherichia, Curvibacter, and Pelomonas, were significantly associated with neonatal hospitalization. GDM is associated with altered placental bacterial DNA community profiles and early neonatal meconium microbiota, potentially affecting maternal-neonatal microbial continuity. Specific bacterial genera are associated with early neonatal hospitalization. The study provides a microbial perspective for understanding GDM-related perinatal risk.

妊娠期糖尿病孕妇胎盘细菌DNA群落特征及其与新生儿早期肠道菌群和短期围产期结局的关系
妊娠期糖尿病(GDM)影响母体代谢,可能与胎盘细菌DNA群落谱和新生儿早期肠道微生物群的改变有关。这项前瞻性队列研究评估了GDM对胎盘-新生儿肠道微生物轴的影响,并将关键细菌类群与短期围产期结局和临床意义联系起来。纳入了患有GDM的孕妇和健康对照。收集胎盘组织和新生儿首过胎便样本。采用5区16S rRNA测序分析细菌群落组成、多样性和差异属。FEAST用于模拟潜在的母婴微生物源。还评估了妊娠期体重增加(GWG)、微生物特征和新生儿住院风险之间的关系。GDM组与对照组胎盘和新生儿早期胎粪微生物群落结构差异显著,α-多样性增加,群落分离明显。在胎盘样品中,短单胞菌减少,而乳酸杆菌和鞘氨单胞菌增加。在新生儿胎粪中,可能与炎症相关的属,包括葡萄球菌、链球菌和梭状芽孢杆菌,被富集。GWG对整体群落结构的影响有限,但对特定属有精细的调节作用。来源跟踪显示,在GDM组中,胎盘归因于新生儿胎粪微生物群的相似性贡献降低。特定胎盘属的丰度,包括埃希氏菌、弧菌和单胞菌,与新生儿住院显著相关。GDM与胎盘细菌DNA群落特征和新生儿早期胎粪微生物群的改变有关,可能影响母婴微生物的连续性。特定细菌属与新生儿早期住院有关。该研究为理解gdm相关的围产期风险提供了微生物视角。
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