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Application of Array-based Genomic and Epigenomic Technologies to Unraveling the Heterogeneous Nature of Breast Tumors: On the Road to Individualized Treatment

机译:基于阵列的基因组和表观基因组技术在揭示乳腺肿瘤异质性中的应用:个性化治疗之路

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The recent application of genomic microarray technology to the molecular profiling of breast tumors has clearly demonstrated their heterogeneous nature. Targeted treatment strategies are having a clear impact on patient survival. It has also become apparent that accumulated mutations, genomic instability, epigenetic phenomena, genetic variability and environmental factors all contribute to the uniqueness of a patient's tumor. Novel genomic and epigenetic-based technologies have been or are being developed in order to greatly enhance the analysis of tumor samples including those samples previously thought unusable due to the fixation process, such as archival formalin-fixed paraffin-embedded (FFPE) samples. Patients and their tumors can now be studied with regard to genetic variation, genomic instability, gene expression, gene mutations, and methylation patterns. These areas of research are being made more accessible through genome-wide screening technologies and will, in the near future, rapidly expand our understanding of what contributes to the unique properties of each tumor and lead to the identification of genes that could be potential therapeutic targets for specific tumor subtypes. Application of these technologies to our understanding of breast cancer will undoubtedly have an impact on the individualization of treatment for breast cancer patients in the not to distant future.
机译:基因组微阵列技术在乳腺肿瘤分子谱分析中的最新应用清楚地证明了它们的异质性。有针对性的治疗策略对患者的生存有着明显的影响。显而易见的是,累积的突变,基因组不稳定性,表观遗传现象,遗传变异性和环境因素均会导致患者肿瘤的独特性。为了极大地增强对肿瘤样品的分析,包括先前认为由于固定过程而无法使用的那些样品,例如档案福尔马林固定石蜡包埋(FFPE)样品,已经或正在开发基于基因组和表观遗传学的新技术。现在可以研究患者及其肿瘤的遗传变异,基因组不稳定性,基因表达,基因突变和甲基化模式。通过全基因组筛选技术,这些研究领域将变得更加容易获得,并将在不久的将来迅速扩展我们对导致每种肿瘤独特特性的因素的认识,并导致鉴定可能成为潜在治疗靶点的基因对于特定的肿瘤亚型。在不久的将来,将这些技术应用于我们对乳腺癌的理解无疑将对乳腺癌患者的个体化治疗产生影响。

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