首页> 外文OA文献 >Discovery of a 29-gene panel in peripheral blood mononuclear cells for the detection of colorectal cancer and adenomas using high throughput real-time PCR.
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Discovery of a 29-gene panel in peripheral blood mononuclear cells for the detection of colorectal cancer and adenomas using high throughput real-time PCR.

机译:使用高通量实时PCR在外周血单核细胞中发现29个基因的检测大肠癌和腺瘤的基因。

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摘要

Colorectal cancer (CRC) is the second leading cause of cancer-related death in developed countries. Early detection of CRC leads to decreased CRC mortality. A blood-based CRC screening test is highly desirable due to limited invasiveness and high acceptance rate among patients compared to currently used fecal occult blood testing and colonoscopy. Here we describe the discovery and validation of a 29-gene panel in peripheral blood mononuclear cells (PBMC) for the detection of CRC and adenomatous polyps (AP). Blood samples were prospectively collected from a multicenter, case-control clinical study. First, we profiled 93 samples with 667 candidate and 3 reference genes by high throughput real-time PCR (OpenArray system). After analysis, 160 genes were retained and tested again on 51 additional samples. Low expressed and unstable genes were discarded resulting in a final dataset of 144 samples profiled with 140 genes. To define which genes, alone or in combinations had the highest potential to discriminate AP and/or CRC from controls, data were analyzed by a combination of univariate and multivariate methods. A list of 29 potentially discriminant genes was compiled and evaluated for its predictive accuracy by penalized logistic regression and bootstrap. This method discriminated AP >1cm and CRC from controls with a sensitivity of 59% and 75%, respectively, with 91% specificity. The behavior of the 29-gene panel was validated with a LightCycler 480 real-time PCR platform, commonly adopted by clinical laboratories. In this work we identified a 29-gene panel expressed in PBMC that can be used for developing a novel minimally-invasive test for accurate detection of AP and CRC using a standard real-time PCR platform.
机译:在发达国家,结直肠癌(CRC)是癌症相关死亡的第二大主要原因。 CRC的早期发现导致CRC死亡率降低。与目前使用的粪便潜血测试和结肠镜检查相比,基于血液的CRC筛查测试是非常理想的,原因是患者中的侵入性有限且接受率高。在这里,我们描述了在外周血单核细胞(PBMC)中用于检测CRC和腺瘤性息肉(AP)的29基因面板的发现和验证。前瞻性地从多中心病例对照临床研究中收集血液样本。首先,我们通过高通量实时PCR(OpenArray系统)分析了93个带有667个候选基因和3个参考基因的样品。分析后,保留了160个基因,并在另外51个样品上再次进行了测试。丢弃低表达和不稳定的基因,得到包含140个基因的144个样本的最终数据集。为了确定哪些基因(单独或组合)最有可能将AP和/或CRC与对照区分开,通过单变量和多变量方法的组合对数据进行了分析。编制了29种潜在判别基因的清单,并通过惩罚逻辑回归和自举法评估了其预测准确性。该方法将AP> 1cm和CRC与对照组的灵敏度分别区分为59%和75%,特异性为91%。通过临床实验室通常采用的LightCycler 480实时PCR平台验证了29种基因的行为。在这项工作中,我们鉴定了一个以PBMC表达的29基因面板,该面板可用于开发一种新颖的微创测试,以使用标准的实时PCR平台准确检测AP和CRC。

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