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Next generation sequencing technologies in cancer diagnostics and therapeutics: A mini review

机译:癌症诊断和治疗中的下一代测序技术:小型回顾

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摘要

The development of advanced molecular technologies has ushered in the era of 'omics' science, including transcriptomics, proteomics, and genomics. Genomics, or whole genome approach, has become the most comprehensive investigative method to identify new gene mutations, signal pathways and drug targets for cancers. The purpose of this review is to summarize current second generation sequencing techniques in applied genomics, and to analyze the advantages and/or problems associated with each of the various sequencing platforms. Our understanding of molecular factors associated with tumorigenesis is no longer limited to the mutation of well-known cancer related genes, but may involve a broader range of factors involved in tumor development, including novel somatic mutations, gene fusions, long non-coding RNAs, microRNAs, copy number variations, methylation, and genomic structural variations. Furthermore, these new methods are not limited to analyses of single genetic or epigenetic factor, but offer comprehensive molecule profiling as a more critical and powerful approach to decoding the mystery of tumor development and identifying more reliable cancer biomarkers.
机译:先进分子技术的发展开创了“组学”科学时代,包括转录组学,蛋白质组学和基因组学。基因组学或全基因组方法已成为鉴定癌症的新基因突变,信号途径和药物靶标的最全面的研究方法。这篇综述的目的是总结应用基因组学中当前的第二代测序技术,并分析与各种测序平台中的每一个相关的优势和/或问题。我们对与肿瘤发生有关的分子因素的理解不再局限于与癌症相关的知名基因的突变,而是可能涉及肿瘤发展中涉及的更广泛的因素,包括新的体细胞突变,基因融合,长的非编码RNA, microRNA,拷贝数变异,甲基化和基因组结构变异。此外,这些新方法不仅限于对单个遗传或表观遗传因素的分析,还提供了全面的分子谱分析,作为更关键和更有力的方法来解码肿瘤发展的奥秘并鉴定更可靠的癌症生物标志物。

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