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Gene Expression Profiling in Human Lung Development: An Abundant Resource for Lung Adenocarcinoma Prognosis

机译:人类肺发育中的基因表达谱:肺腺癌预后的丰富资源。

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摘要

A tumor can be viewed as a special “organ” that undergoes aberrant and poorly regulated organogenesis. Progress in cancer prognosis and therapy might be facilitated by re-examining distinctive processes that operate during normal development, to elucidate the intrinsic features of cancer that are significantly obscured by its heterogeneity. The global gene expression signatures of 44 human lung tissues at four development stages from Asian descent and 69 lung adenocarcinoma (ADC) tissue samples from ethnic Chinese patients were profiled using microarrays. All of the genes were classified into 27 distinct groups based on their expression patterns (named as PTN1 to PTN27) during the developmental process. In lung ADC, genes whose expression levels decreased steadily during lung development (genes in PTN1) generally had their expression reactivated, while those with uniformly increasing expression levels (genes in PTN27) had their expression suppressed. The genes in PTN1 contain many n-gene signatures that are of prognostic value for lung ADC. The prognostic relevance of a 12-gene demonstrator for patient survival was characterized in five cohorts of healthy and ADC patients [ADC_CICAMS (n = 69, p = 0.007), ADC_PNAS (n = 125, p = 0.0063), ADC_GSE13213 (n = 117, p = 0.0027), ADC_GSE8894 (n = 62, p = 0.01), and ADC_NCI (n = 282, p = 0.045)] and in four groups of stage I patients [ADC_CICAMS (n = 22, p = 0.017), ADC_PNAS (n = 76, p = 0.018), ADC_GSE13213 (n = 79, p = 0.02), and ADC_qPCR (n = 62, p = 0.006)]. In conclusion, by comparison of gene expression profiles during human lung developmental process and lung ADC progression, we revealed that the genes with a uniformly decreasing expression pattern during lung development are of enormous prognostic value for lung ADC.
机译:肿瘤可以被视为经历异常且调节不良的器官发生的特殊“器官”。重新检查正常发育过程中发生的独特过程可能有助于促进癌症预后和治疗方面的进展,以阐明因异质性而被明显掩盖的癌症的内在特征。使用微阵列分析了来自亚洲人后裔四个发育阶段的44个人肺组织的全球基因表达特征和来自中国人患者的69个肺腺癌(ADC)组织样品的概况。根据它们在发育过程中的表达模式(命名为PTN1至PTN27),将所有基因分为27个不同的组。在肺ADC中,表达水平在肺发育过程中稳定下降的基因(PTN1中的基因)通常使其表达重新激活,而表达水平一致增加的基因(PTN27中的基因)则其表达受到抑制。 PTN1中的基因包含许多对肺ADC有预后价值的n基因特征。在五个健康和ADC患者队列中表征了12基因演示者对患者生存的预后相关性[ADC_CICAMS(n = 69,p = 0.007),ADC_PNAS(n = 125,p = 0.0063),ADC_GSE13213(n = 117) ,p = 0.0027),ADC_GSE8894(n = 62,p = 0.01)和ADC_NCI(n = 282,p = 0.045)和四组I期患者[ADC_CICAMS(n = 22,p = 0.017),ADC_PNAS (n = 76,p = 0.018),ADC_GSE13213(n = 79,p = 0.02)和ADC_qPCR(n = 62,p = 0.006)。总之,通过比较人肺发育过程和肺ADC进程中基因表达谱,我们发现在肺发育过程中表达模式一致下降的基因对肺ADC具有巨大的预后价值。

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