Prenatal pyrethroid exposure, placental gene network modules, and neonatal neurobehavior.

Yewei Wang, Jacqueline Holstein, Karen Hermetz, Amber Burt, Corina Lesseur, Parinya Panuwet, Nancy Fiedler, Tippawan Prapamontol, Panrapee Suttiwan, Pimjuta Nimmapirat, Supattra Sittiwang, Warangkana Naksen, Volha Yakimavets, Dana Boyd Barr, Ke Hao, Jia Chen, Carmen J Marsit
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Abstract

Prenatal pesticide exposure may adversely affect child neurodevelopment which may partly arise from impairing the placenta's vital role in fetal development. In a cohort of pregnant farmworkers from Thailand (N = 248), we examined the links between urinary metabolites of pyrethroid pesticides during pregnancy, placental gene expression networks derived from transcriptome sequencing, and newborn neurobehavior assessed using the NICU Network Neurobehavioral Scales (NNNS) at 5 weeks of age. Focusing on the 21 gene network modules in the placenta identified by Weighted Gene Co-expression Network Analysis, our analysis revealed significant associations between metabolites and nine distinct modules, and between thirteen modules and NNNS, with eight modules showing overlap. Notably, stress was negatively associated with the interferon alpha response and Myc target modules, and the interferon alpha response module was correlated positively with attention, and negatively with arousal, and quality of movement. The analysis also highlighted the early and late trimesters as critical periods for the exposures influence on placental function, with pyrethroid metabolites measured early in pregnancy significantly negatively associated with the protein secretion module, and those measured later in pregnancy negatively associated with modules related to oxidative phosphorylation (OXPHOS) and DNA repair. Additionally, the cumulative sum of 3-phenoxybenzoic acid across pregnancy was significantly negatively associated with the OXPHOS module. These findings suggest that prenatal exposure to pyrethroids may influence neonatal neurobehavior through specific placental mechanisms that impact gene expression of metabolic pathways, and these effects may be pregnancy period specific. These results offer valuable insights for future risk assessment and intervention strategies.

产前拟除虫菊酯暴露,胎盘基因网络模块和新生儿神经行为。
产前农药暴露可能对儿童神经发育产生不利影响,部分原因可能是胎盘在胎儿发育中的重要作用受到损害。在一组来自泰国的怀孕农场工人(N = 248)中,我们研究了怀孕期间尿中拟除虫菊酯农药代谢物、来自转录组测序的胎盘基因表达网络以及5周龄时使用NICU网络神经行为量表(NNNS)评估的新生儿神经行为之间的联系。通过加权基因共表达网络分析(Weighted gene Co-expression network Analysis)鉴定出胎盘中的21个基因网络模块,我们的分析发现代谢物与9个不同模块存在显著关联,13个模块与NNNS存在显著关联,其中8个模块存在重叠。值得注意的是,应激与干扰素α反应和Myc靶模块呈负相关,干扰素α反应模块与注意力呈正相关,与觉醒和运动质量负相关。该分析还强调,妊娠早期和晚期是暴露对胎盘功能影响的关键时期,在妊娠早期测量的拟除虫菊酯代谢物与蛋白质分泌模块显著负相关,而在妊娠后期测量的代谢物与氧化磷酸化(OXPHOS)和DNA修复相关模块负相关。此外,3-苯氧苯甲酸在妊娠期间的累积总量与OXPHOS模块呈显著负相关。这些发现表明,产前接触拟除虫菊酯可能通过影响代谢途径基因表达的特定胎盘机制影响新生儿的神经行为,这些影响可能是妊娠期特有的。这些结果为未来的风险评估和干预策略提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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