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Integrative Genomic and Transcriptomic Characterization of Matched Primary and Metastatic Liver and Colorectal Carcinoma

机译:匹配的原发性和转移性肝癌与大肠癌的基因组和转录组整合特征。

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Metastasis is the main cause of cancer mortality but its process remains poorly understood and thus hampers more effective treatment and improved cancer prognosis. To search for metastasis driver genes responsible for tumor spread, we integrated genomic and transcriptomic profiles of 61 matched primary tumors and distant metastases of liver or colorectal carcinoma isolated by laser-capture microdissection and assayed by array-based technologies. We found that primary tumor lesions and their matched distant metastases were largely similar at the genomic and transcriptomic levels, but substantial differences could be found between primary tumors with or without accompanying metastases. Interestingly, metastasis genes were principally tumor type and organ site-specific. Despite distinct pathway enrichment, different metastasis gene sets shared common prognostic capacity and were predictive of hepatocellular carcinoma survival in an independent cohort. Thus, the metastatic propensity is inherent to the primary tumor and the lack of general metastasis genes necessitates the development of specific treatment modalities.
机译:转移是癌症死亡的主要原因,但其过程仍知之甚少,因此阻碍了更有效的治疗和改善的癌症预后。为了寻找负责肿瘤扩散的转移驱动基因,我们整合了61个匹配的原发肿瘤的基因组和转录组谱,并通过激光捕获显微切割法分离并通过基于阵列的技术对其进行了分析,确定了肝癌或大肠癌的远处转移。我们发现原发肿瘤病变及其匹配的远处转移在基因组和转录组水平上非常相似,但是在有或没有伴随转移的原发肿瘤之间可以发现实质性差异。有趣的是,转移基因主要是肿瘤类型和器官部位特异性的。尽管有独特的途径富集,但不同的转移基因组具有共同的预后能力,并且可以预测独立队列中肝细胞癌的存活率。因此,转移倾向是原发性肿瘤固有的,并且缺乏一般转移基因需要开发特定的治疗方式。

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