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早期生活铅暴露后海马全基因组基因表达谱的改变及其通过环境富集逆转的潜力。

Altered genome-wide hippocampal gene expression profiles following early life lead exposure and their potential for reversal by environmental enrichment.

机构信息

Department of Pathology, Anatomy, and Cell Biology, Thomas Jefferson University, 1020 Locust Street, JAH 511, Philadelphia, PA, USA.

Institute for Biomedical Informatics, University of Pennsylvania, Philadelphia, PA, USA.

出版信息

Sci Rep. 2022 Jul 25;12(1):11937. doi: 10.1038/s41598-022-15861-9.

Abstract

Early life lead (Pb) exposure is detrimental to neurobehavioral development. The quality of the environment can modify negative influences from Pb exposure, impacting the developmental trajectory following Pb exposure. Little is known about the molecular underpinnings in the brain of the interaction between Pb and the quality of the environment. We examined relationships between early life Pb exposure and living in an enriched versus a non-enriched postnatal environment on genome-wide transcription profiles in hippocampus CA1. RNA-seq identified differences in the transcriptome of enriched vs. non-enriched Pb-exposed animals. Most of the gene expression changes associated with Pb exposure were reversed by enrichment. This was also true for changes in upstream regulators, splicing events and long noncoding RNAs. Non-enriched rats also had memory impairments; enriched rats had no deficits. The results demonstrate that an enriched environment has a profound impact on behavior and the Pb-modified CA1 transcriptome. These findings show the potential for interactions between Pb exposure and the environment to result in significant transcriptional changes in the brain and, to the extent that this may occur in Pb-exposed children, could influence neuropsychological/educational outcomes, underscoring the importance for early intervention and environmental enrichment for Pb-exposed children.

摘要

早期生活中的铅(Pb)暴露对神经行为发育有害。环境质量可以改变 Pb 暴露的负面影响,影响 Pb 暴露后的发育轨迹。目前对于 Pb 暴露与环境质量之间相互作用的大脑分子基础知之甚少。我们研究了早期生活中的 Pb 暴露和生活在丰富的与非丰富的产后环境之间的关系,以确定在海马 CA1 中全基因组转录谱上的关系。RNA-seq 确定了丰富与非丰富 Pb 暴露动物之间的转录组差异。大多数与 Pb 暴露相关的基因表达变化都被丰富所逆转。这对于上游调节剂、剪接事件和长非编码 RNA 的变化也是如此。非丰富环境的大鼠也有记忆障碍;丰富环境的大鼠则没有缺陷。研究结果表明,丰富的环境对行为和 Pb 修饰的 CA1 转录组有深远的影响。这些发现表明,Pb 暴露与环境之间的相互作用可能导致大脑发生显著的转录变化,而且,如果这种情况发生在 Pb 暴露的儿童身上,可能会影响神经心理/教育结果,强调了对 Pb 暴露儿童进行早期干预和环境丰富的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a95/9314447/536f7acd0dfa/41598_2022_15861_Fig1_HTML.jpg

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