Gene Expression Analysis to Investigate Biological Networks Underlying Nasal Inflammatory Dysfunctions Induced by Diesel Exhaust Particles Using an In Vivo System

Hyun Soo Kim, Byeong-Gon Kim, Sohyeon Park, Nahyun M. Kim, A. Jang, Y. Seo, M. Park
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引用次数: 4

Abstract

Objectives: Diesel exhaust particles (DEP)s are notorious ambient pollutants composed of a complex mixture of a carbon core and diverse chemical irritants. Several studies have demonstrated significant relationships between DEP exposure and serious nasal inflammatory response in vitro, but available information regarding underlying networks in terms of gene expression changes has not sufficiently explained potential mechanisms of DEP-induced nasal damage, especially in vivo. Methods: In the present study, we identified DEP-induced gene expression profiles under short-term and long-term exposure, and identified signaling pathways based on microarray data for understanding effects of DEP exposure in the mouse nasal cavity. Results: Alteration in gene expression due to DEP exposure provokes an imbalance of the immune system via dysregulated inflammatory markers, predicted to disrupt protective responses against harmful exogenous substances in the body. Several candidate markers were identified after validation using qRT-PCR, including S100A9, CAMP, IL20, and S100A8. Conclusions: Although further mechanistic studies are required for verifying the utility of the potential biomarkers suggested by the present study, our in vivo results may provide meaningful suggestions for understanding the complex cellular signaling pathways involved in DEP-induced nasal damages.
利用体内系统研究柴油机尾气颗粒诱导的鼻腔炎症功能障碍背后的生物网络的基因表达分析
目的:柴油废气颗粒(DEP)s是臭名昭著的环境污染物,由碳核和多种化学刺激物的复杂混合物组成。几项研究表明,在体外,DEP暴露与严重的鼻腔炎症反应之间存在显著关系,但有关基因表达变化的潜在网络的现有信息尚未充分解释DEP诱导鼻腔损伤的潜在机制,特别是在体内。方法:在本研究中,我们鉴定了DEP在短期和长期暴露下诱导的基因表达谱,并基于微阵列数据鉴定了信号通路,以了解DEP暴露对小鼠鼻腔的影响。结果:DEP暴露导致的基因表达改变通过失调的炎症标记物引起免疫系统失衡,预计会破坏对体内有害外源物质的保护反应。qRT-PCR验证后鉴定出几个候选标记物,包括S100A9、CAMP、IL20和S100A8。结论:虽然需要进一步的机制研究来验证本研究提出的潜在生物标志物的效用,但我们的体内结果可能为理解deep诱导的鼻腔损伤中涉及的复杂细胞信号通路提供有意义的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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