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Linear Discriminant Functions in Connection with the micro-RNA Diagnosis of Colon Cancer

机译:线性判别功能与结肠癌的微RNA诊断有关。

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摘要

Early detection (localized stage) of colon cancer is associated with a five-year survival rate of 91%. Only 39% of colon cancers, however, are diagnosed at that early stage. Early and accurate diagnosis, therefore, constitutes a critical need and a decisive factor in the clinical treatment of colon cancer and its success. In this study, using supervised linear discriminant analysis, we have developed three diagnostic biomarker models that—based on global micro-RNA expression analysis of colonic tissue collected during surgery—can discriminate with a perfect accuracy between subjects with colon cancer (stages II–IV) and normal healthy subjects. We developed our three diagnostic biomarker models with 57 subjects [40 with colon cancer (stages II–IV) and 17 normal], and we validated them with 39 unknown (new and different) subjects [28 with colon cancer (stages II–IV) and 11 normal]. For all three diagnostic models, both the overall sensitivity and specificity were 100%. The nine most significant micro-RNAs identified, which comprise the input variables to the three linear discriminant functions, are associated with genes that regulate oncogenesis, and they play a paramount role in the development of colon cancer, as evidenced in the tumor tissue itself. This could have a significant impact in the fight against this disease, in that it may lead to the development of an early serum or blood diagnostic test based on the detection of those nine key micro-RNAs.
机译:结肠癌的早期发现(局部化阶段)与91%的五年生存率相关。但是,只有39%的结肠癌是在早期诊断出来的。因此,早期和准确的诊断是临床治疗结肠癌及其成功的关键需求和决定性因素。在这项研究中,我们使用监督线性判别分析,开发了三种诊断性生物标志物模型,基于对手术期间收集的结肠组织进行的全球微RNA表达分析,可以完美地区分结肠癌受试者(II–IV期) )和正常的健康受试者。我们开发了三种诊断性生物标记物模型,分别针对57位受试者(40位患有结肠癌(II-IV期)和17位正常),并针对39位未知(新的和不同的)受试者[28位结肠癌(II-IV期)进行了验证和11正常]。对于所有三个诊断模型,总体敏感性和特异性均为100%。鉴定出的9个最重要的微RNA包括三个线性判别函数的输入变量,它们与调节肿瘤发生的基因有关,并且在结肠癌的发展中起着至关重要的作用,如肿瘤组织本身所证明的那样。这可能会在抗击这种疾病中产生重大影响,因为它可能会导致基于对这九种关键微RNA的检测而进行的早期血清或血液诊断测试的发展。

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  • 年度 2011
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