Hoffman Susan S, Tang Ziyin, Dunlop Anne, Brennan Patricia A, Huynh Thompson, Eick Stephanie M, Barr Dana B, Rushing Blake, McRitchie Susan L, Sumner Susan, Taibl Kaitlin R, Tan Youran, Panuwet Parinya, Lee Grace E, Eatman Jasmin, Corwin Elizabeth J, Ryan P Barry, Jones Dean P, Liang Donghai
Department of Epidemiology, Emory University, Atlanta, GA, USA.
Gangarosa Department of Environmental Health, Emory University, Atlanta, GA, USA.
Nat Commun. 2025 Apr 2;16(1):2539. doi: 10.1038/s41467-025-57273-z.
We evaluated associations among exposure to prenatal phthalate metabolites, perturbations of the newborn metabolome, and infant neurobehavioral functioning in mother-newborn pairs enrolled in the Atlanta African American Maternal-Child Cohort during 2016-2018. We quantified eight phthalate metabolites in prenatal urine samples collected between 8- and 14-weeks' (visit 1; n = 216) and 24- and 30-weeks' gestation (visit 2; n = 145) and metabolite features in newborn dried-blood spot samples collected at delivery. Associations between phthalate metabolite concentrations and metabolic feature intensities at both visits were examined using adjusted generalized linear models (MWAS). Then, an exploratory meet-in-the-middle (MITM) analysis was conducted in a subset with NICU Neonatal Neurobehavioral Scale (NNNS) scores (visit 1 n = 81; visit 2 n = 71). In both the MWAS and MITM, many of the confirmed metabolites are involved in tyrosine and tryptophan metabolism, including tryptophan, tyrosine, thyroxine, and serine. This analysis elucidates how prenatal phthalate exposure disrupts the newborn metabolome and infant neurobehavioral outcomes.
我们评估了2016年至2018年期间纳入亚特兰大非裔美国母婴队列的母婴对中,产前邻苯二甲酸酯代谢物暴露、新生儿代谢组扰动与婴儿神经行为功能之间的关联。我们对孕8至14周(访视1;n = 216)和孕24至30周(访视2;n = 145)期间采集的产前尿液样本中的8种邻苯二甲酸酯代谢物,以及分娩时采集的新生儿干血斑样本中的代谢物特征进行了定量分析。使用校正后的广义线性模型(代谢组全关联研究)检查了两次访视时邻苯二甲酸酯代谢物浓度与代谢特征强度之间的关联。然后,在一个子集(具有新生儿重症监护病房新生儿神经行为量表(NNNS)评分,访视1时n = 81;访视2时n = 71)中进行了探索性的中间相遇(MITM)分析。在代谢组全关联研究和中间相遇分析中,许多已确认的代谢物都参与了酪氨酸和色氨酸代谢,包括色氨酸、酪氨酸、甲状腺素和丝氨酸。该分析阐明了产前邻苯二甲酸酯暴露如何破坏新生儿代谢组和婴儿神经行为结局。