Department of Signal Processing, Tampere University of Technology, Tampere, Finland.
PLoS One. 2013 Jul 12;8(7):e68414. doi: 10.1371/journal.pone.0068414. Print 2013.
The potential impact of nanoparticles on the environment and on human health has attracted considerable interest worldwide. The amount of transcriptomics data, in which tissues and cell lines are exposed to nanoparticles, increases year by year. In addition to the importance of the original findings, this data can have value in broader context when combined with other previously acquired and published results. In order to facilitate the efficient usage of the data, we have developed the NanoMiner web resource (http://nanominer.cs.tut.fi/), which contains 404 human transcriptome samples exposed to various types of nanoparticles. All the samples in NanoMiner have been annotated, preprocessed and normalized using standard methods that ensure the quality of the data analyses and enable the users to utilize the database systematically across the different experimental setups and platforms. With NanoMiner it is possible to 1) search and plot the expression profiles of one or several genes of interest, 2) cluster the samples within the datasets, 3) find differentially expressed genes in various nanoparticle studies, 4) detect the nanoparticles causing differential expression of selected genes, 5) analyze enriched Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways and Gene Ontology (GO) terms for the detected genes and 6) search the expression values and differential expressions of the genes belonging to a specific KEGG pathway or Gene Ontology. In sum, NanoMiner database is a valuable collection of microarray data which can be also used as a data repository for future analyses.
纳米颗粒对环境和人类健康的潜在影响引起了全球的广泛关注。每年,组织和细胞系暴露于纳米颗粒的转录组学数据量都在增加。除了原始发现的重要性之外,当与其他先前获得和发表的结果结合使用时,这些数据在更广泛的背景下也具有价值。为了方便数据的有效使用,我们开发了 NanoMiner 网络资源(http://nanominer.cs.tut.fi/),其中包含 404 个人类转录组样本,这些样本暴露于各种类型的纳米颗粒中。NanoMiner 中的所有样本都经过注释、预处理和标准化,采用标准方法确保了数据分析的质量,并使用户能够在不同的实验设置和平台上系统地利用数据库。通过使用 NanoMiner,用户可以:1)搜索和绘制一个或多个感兴趣基因的表达谱;2)在数据集内对样本进行聚类;3)在各种纳米颗粒研究中找到差异表达的基因;4)检测导致选定基因差异表达的纳米颗粒;5)分析检测到的基因的京都基因与基因组百科全书(KEGG)途径和基因本体论(GO)术语的富集情况;6)搜索属于特定 KEGG 途径或基因本体论的基因的表达值和差异表达。总之,NanoMiner 数据库是一个有价值的微阵列数据集集合,也可以用作未来分析的数据存储库。