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基因多样性会影响大脑对发育过程中铅暴露的反应。

Genetic diversity influences the response of the brain to developmental lead exposure.

作者信息

Schneider Jay S, Talsania Keyur, Mettil William, Anderson David W

机构信息

Department of Pathology, Anatomy and Cell Biology, Thomas Jefferson University, Philadelphia, Pennsylvania 19107

Department of Pathology, Anatomy and Cell Biology, Thomas Jefferson University, Philadelphia, Pennsylvania 19107.

出版信息

Toxicol Sci. 2014 Sep;141(1):29-43. doi: 10.1093/toxsci/kfu101. Epub 2014 Jun 9.

Abstract

Although extrinsic factors, such as nutritional status, and some intrinsic genetic factors may modify susceptibility to developmental lead (Pb) poisoning, no studies have specifically examined the influence of genetic background on outcomes from Pb exposure. In this study, we used gene microarray profiling to identify Pb-responsive genes in rats of different genetic backgrounds, including inbred (Fischer 344 (F344)) and outbred (Long Evans (LE), Sprague Dawley (SD)) strains, to investigate the role that genetic variation may play in influencing outcomes from developmental Pb exposure. Male and female animals received either perinatal (gestation through lactation) or postnatal (birth through weaning) exposure to Pb in food (0, 250, or 750 ppm). RNA was extracted from the hippocampus at day 55 and hybridized to Affymetrix Rat Gene 1.0 ST Arrays. There were significant strain-specific effects of Pb on the hippocampal transcriptome with 978 transcripts differentially expressed in LE rats across all experimental groups, 269 transcripts differentially expressed in F344 rats, and only 179 transcripts differentially expressed in SD rats. These results were not due to strain-related differences in brain accumulation of Pb. Further, no genes were consistently differentially regulated in all experimental conditions. There was no set of "Pb toxicity" genes that are a molecular signature for Pb neurotoxicity that transcended sex, exposure condition, and strain. These results demonstrate the influence that strain and genetic background play in modifying the brain's response to developmental Pb exposure and may have relevance for better understanding the molecular underpinnings of the lack of a neurobehavioral signature in childhood Pb poisoning.

摘要

尽管外在因素,如营养状况,以及一些内在遗传因素可能会改变发育性铅(Pb)中毒的易感性,但尚无研究专门考察遗传背景对铅暴露后果的影响。在本研究中,我们使用基因微阵列分析来鉴定不同遗传背景大鼠(包括近交系(Fischer 344(F344))和远交系(Long Evans(LE)、Sprague Dawley(SD)))中的铅反应基因,以研究遗传变异在影响发育性铅暴露后果中可能发挥的作用。雄性和雌性动物在围产期(从妊娠到哺乳期)或出生后(从出生到断奶)通过食物接受铅暴露(0、250或750 ppm)。在第55天从海马体中提取RNA,并与Affymetrix大鼠基因1.0 ST阵列杂交。铅对海马转录组有显著的品系特异性影响,在所有实验组中,LE大鼠有978个转录本差异表达,F344大鼠有269个转录本差异表达,而SD大鼠只有179个转录本差异表达。这些结果并非由于品系间铅在脑内蓄积的差异所致。此外,在所有实验条件下均无基因持续差异调节。不存在一组作为铅神经毒性分子特征的“铅毒性”基因能跨越性别、暴露条件和品系。这些结果证明了品系和遗传背景在改变大脑对发育性铅暴露反应中所起的作用,可能有助于更好地理解儿童铅中毒缺乏神经行为特征的分子基础。

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