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口服暴露后,表面涂层会改变对银纳米颗粒的转录反应。

Surface coatings alter transcriptional responses to silver nanoparticles following oral exposure.

作者信息

Nallanthighal Sameera, Tierney Lukas, Cady Nathaniel C, Murray Thomas M, Chittur Sridar V, Reliene Ramune

机构信息

Cancer Research Center, University at Albany, State University of New York, Rensselaer, NY, USA.

Department of Biomedical Sciences, University at Albany, State University of New York, Albany, NY, USA.

出版信息

NanoImpact. 2020 Jan;17. doi: 10.1016/j.impact.2019.100205. Epub 2019 Dec 24.

Abstract

Silver nanoparticles (AgNPs) are used in food packaging materials, dental care products and other consumer goods and can result in oral exposure. To determine whether AgNP coatings modulate transcriptional responses to AgNP exposure, we exposed mice orally to 20 nm citrate (cit)-coated AgNPs (cit-AgNPs) or polyvinylpyrrolidone (PVP)-coated AgNPs (PVP-AgNPs) at a 4 mg/kg dose for 7 consecutive days and analyzed changes in the expression of protein-coding genes and long noncoding RNAs (lncRNAs), a new class of regulatory RNAs, in the liver. We identified unique and common expression signatures of protein-coding and lncRNA genes, altered biological processes and signaling pathways, and coding-non-coding gene interactions for cit-AgNPs and PVP-AgNPs. Commonly regulated genes comprised only about 10 and 20 percent of all differentially expressed genes in PVP-AgNP and cit-AgNP exposed mice, respectively. Commonly regulated biological processes included glutathione metabolic process and cellular oxidant detoxification. Commonly regulated pathways included Keap-Nrf2, PPAR, MAPK and IL-6 signaling pathways. The coding-non-coding gene co-expression analysis revealed that protein-coding genes were co-expressed with a variable number of lncRNAs ranging from one to twenty three and may share functional roles with the protein-coding genes. PVP-AgNP exposure induced a more robust transcriptional response than cit-AgNP exposure characterized by more than two-fold higher number of differentially expressed both protein- coding and lncRNA genes. Our data demonstrate that the surface coating strongly modulates the spectrum and the number of differentially expressed genes after oral AgNP exposure. On the other hand, our data suggest that AgNP exposure can alter drug and chemical sensitivity, metabolic homeostasis and cancer risk irrespective of the coating type, warranting further investigations.

摘要

银纳米颗粒(AgNPs)被用于食品包装材料、牙齿护理产品及其他消费品中,可能导致经口暴露。为了确定AgNP涂层是否会调节对AgNP暴露的转录反应,我们以4mg/kg的剂量连续7天经口给小鼠投喂20nm柠檬酸盐(cit)包被的AgNPs(cit-AgNPs)或聚乙烯吡咯烷酮(PVP)包被的AgNPs(PVP-AgNPs),并分析肝脏中蛋白质编码基因和长链非编码RNA(lncRNAs,一类新的调控RNA)表达的变化。我们确定了cit-AgNPs和PVP-AgNPs在蛋白质编码和lncRNA基因方面独特且共同的表达特征、改变的生物学过程和信号通路,以及编码-非编码基因相互作用。在PVP-AgNP和cit-AgNP暴露的小鼠中,共同调控的基因分别仅占所有差异表达基因的约10%和20%。共同调控的生物学过程包括谷胱甘肽代谢过程和细胞氧化剂解毒。共同调控的信号通路包括Keap-Nrf2、PPAR、MAPK和IL-6信号通路。编码-非编码基因共表达分析表明,蛋白质编码基因与数量从1到23不等的lncRNAs共表达,并且可能与蛋白质编码基因共享功能作用。与cit-AgNP暴露相比,PVP-AgNP暴露诱导了更强的转录反应,其特征是差异表达的蛋白质编码和lncRNA基因数量高出两倍多。我们的数据表明,表面涂层强烈调节经口暴露于AgNP后的差异表达基因的谱和数量。另一方面,我们的数据表明,无论涂层类型如何,AgNP暴露都可能改变药物和化学敏感性、代谢稳态及癌症风险,值得进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69ee/7453744/e36065f2f098/nihms-1550354-f0002.jpg

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