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Discovering the ‘Dark matters’ in expression data of miRNA based on the miRNA-mRNA and miRNA-lncRNA networks

机译:基于miRNA-mRNA和miRNA-lncRNA网络发现miRNA表达数据中的“暗处”

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Since miRNAs can play important roles in different cancer types, how to discover cancer related miRNAs is an important issue. In general, the miRNAs with differential expression is the focus of attention. However, some important cancer related miRNAs are not excavated by differential expression analysis. We take this type of miRNAs as ‘dark matters’ (DM-miRNA). It is our great interests to develop an algorithm to discover DM-miRNAs. An effective method was developed to find DM-miRNAs. This method is mainly for mining potential DM-miRNAs by building basic miRNA-mRNA network (BMMN) and miRNA-lncRNA network (BMLN). The results indicate that miRNA-mRNA and miRNA-lncRNA interactions can be used as novel cancer biomarkers. The BMMN and BMLN can excavate the non-differentially expressed miRNAs which play an important role in the cancer. What’s more, the edge biomarkers (miRNA-mRNA and miRNA-lncRNA interactions) contain more information than the node biomarkers. It will contribute to developing novel therapeutic candidates in cancers.
机译:由于miRNA在不同类型的癌症中可以发挥重要作用,因此如何发现与癌症相关的miRNA是一个重要的问题。通常,具有差异表达的miRNA是关注的焦点。但是,一些重要的癌症相关miRNA并未通过差异表达分析进行挖掘。我们将这种类型的miRNA称为“暗物质”(DM-miRNA)。开发发现DM-miRNA的算法是我们的​​极大兴趣。开发了一种有效的方法来发现DM-miRNA。该方法主要用于通过建立基本的miRNA-mRNA网络(BMMN)和miRNA-lncRNA网络(BMLN)来挖掘潜在的DM-miRNA。结果表明,miRNA-mRNA和miRNA-lncRNA相互作用可以用作新型癌症生物标志物。 BMMN和BMLN可以挖掘出在癌症中发挥重要作用的非差异表达的miRNA。此外,边缘生物标志物(miRNA-mRNA和miRNA-lncRNA相互作用)比节点生物标志物包含更多的信息。这将有助于开发新型的癌症治疗药物。

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