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双酚 A、F 和 S 混合物和母性照顾对大鼠母鼠和幼鼠大脑转录组的影响。

Impact of a bisphenol A, F, and S mixture and maternal care on the brain transcriptome of rat dams and pups.

机构信息

Department of Psychology, University of Texas at Austin, 108 E. Dean Keaton St, Austin, TX 78712, USA.

Department of Psychiatry, Columbia University Irving Medical Center, 1051 Riverside Drive, New York, NY 10032, USA.

出版信息

Neurotoxicology. 2022 Dec;93:22-36. doi: 10.1016/j.neuro.2022.08.014. Epub 2022 Aug 27.

Abstract

Products containing BPA structural analog replacements have increased in response to growing public concern over adverse effects of BPA. Although humans are regularly exposed to a mixture of bisphenols, few studies have examined effects of prenatal exposure to BPA alternatives or bisphenol mixtures. In the present study, we investigate the effect of exposure to an environmentally-relevant, low-dose (150 ug/kg body weight per day) mixture of BPA, BPS, and BPF during gestation on the brain transcriptome in Long-Evans pups and dams using Tag RNA-sequencing. We also examined the association between dam licking and grooming, which also has enduring effects on pup neural development, and the transcriptomes. Associations between licking and grooming and the transcriptome were region-specific, with the hypothalamus having the greatest number of differentially expressed genes associated with licking and grooming in both dams and pups. Prenatal bisphenol exposure also had region-specific effects on gene expression and pup gene expression was affected more robustly than dam gene expression. In dams, the prelimbic cortex had the greatest number of differentially expressed genes associated with prenatal bisphenol exposure. Prenatal bisphenol exposure changed the expression of over 2000 genes in pups, with the majority being from the pup amygdala. We used Gene Set Enrichment Analysis (GSEA) to asses enrichment of gene ontology biological processes for each region. Top GSEA terms were diverse and varied by brain region and included processes known to have strong associations with steroid hormone regulation, cilium-related terms, metabolic/biosynthetic process terms, and immune terms. Finally, hypothesis-driven analysis of genes related to estrogen response, parental behavior, and epigenetic regulation of gene expression revealed region-specific expression associated with licking and grooming and bisphenol exposure that were distinct in dams and pups. These data highlight the effects of bisphenols on multiple physiological process that are highly dependent on timing of exposure (prenatal vs. adulthood) and brain region, and reiterate the contributions of multiple environmental and experiential factors in shaping the brain.

摘要

为应对公众对 BPA 不良影响日益增长的担忧,含 BPA 结构类似物替代品的产品不断增加。尽管人类经常接触双酚混合物,但很少有研究检查产前暴露于 BPA 替代品或双酚混合物的影响。在本研究中,我们使用 Tag RNA-seq 研究了在妊娠期间暴露于环境相关低剂量(每天 150μg/kg 体重)的 BPA、BPS 和 BPF 混合物对 Long-Evans 幼崽和母体大脑转录组的影响。我们还研究了舔舐和梳理行为与转录组之间的关联,舔舐和梳理行为也对幼崽的神经发育有持久影响。舔舐和梳理行为与转录组之间的关联具有区域特异性,下丘脑与母体和幼崽的舔舐和梳理行为相关的差异表达基因数量最多。产前双酚暴露也对基因表达具有区域特异性影响,且幼崽的基因表达受影响比母体更明显。在母体中,前额皮质与产前双酚暴露相关的差异表达基因数量最多。产前双酚暴露改变了幼崽超过 2000 个基因的表达,其中大部分来自幼崽的杏仁核。我们使用基因集富集分析(GSEA)评估每个区域的基因本体生物过程的富集。顶级 GSEA 术语多种多样,因大脑区域而异,包括与类固醇激素调节、纤毛相关术语、代谢/生物合成过程术语和免疫术语具有强烈关联的过程。最后,对与雌激素反应、亲代行为和基因表达的表观遗传调控相关的基因进行假设驱动分析,揭示了与舔舐和梳理行为以及双酚暴露相关的区域特异性表达,在母体和幼崽中存在差异。这些数据突出了双酚对多种生理过程的影响,这些过程高度依赖于暴露时间(产前与成年)和大脑区域,并强调了多个环境和经验因素在塑造大脑方面的贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e69f/9985957/73936806e449/nihms-1866379-f0001.jpg

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