Developmental exposure to arsenic (As) has been linked to irreversible adverse health outcomes in offspring. However, the underlying molecular mechanisms remain a mystery. Here, maternal mice were exposed to As via drinking water. Subsequently, the hippocampi of their offspring were collected at different developmental stages to explore the dynamic changes during hippocampal maturation and the effects of As. Time-series RNA-seq analysis revealed a significant temporal correlation between As neurodevelopmental toxicity and the mRNA expression profile of the hippocampal region during critical postnatal developmental windows. Further, downregulation of genes associated with neurogenesis and telomere maintenance was observed. Notably, dynamic changes in hippocampal telomeres were observed in response to As exposure, with critically shortened telomeres inhibiting neural stem cells (NSCs) proliferation, impairing neuroblast maturation, and reducing the number and size of neurospheres. Additionally, the populations of BrdU(+) and MAP2(+) cells were decreased while GFAP(+) cells were increased, indicating a decline in NSCs stemness. Furthermore, As exposure significantly impaired dendritic complexity in the hippocampus of mice, altered dendritic spine morphology, and disrupted synaptic ultrastructure, ultimately leading to cognitive impairment. These findings highlight the importance of analyzing telomere dynamics in environmental toxicology and offer insights into the neurotoxic mechanisms of maternal As on offspring development.
Dynamic Telomere Length Response to Neurodevelopmental Arsenic Exposure: Insights into Transcriptional Regulation and Neuronal Morphogenesis.
神经发育过程中砷暴露引起的端粒长度动态变化:对转录调控和神经元形态发生的深入了解。
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| 期刊: | Environ Health (Wash) | 影响因子: | 0.000 |
| 时间: | 2025 | 起止号: | 2025 Jun 6; 3(9):1031-1042 |
| doi: | 10.1021/envhealth.5c00026 | 研究方向: | 表观遗传、信号转导、神经科学、发育与干细胞 |
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