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Quantification of free circulating DNA as a diagnostic marker in lung cancer.

机译:游离循环DNA定量作为肺癌的诊断标志物。

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PURPOSE: Analysis of circulating DNA in plasma can provide a useful marker for earlier lung cancer detection. This study was designed to assess the sensitivity and specificity of a quantitative molecular assay of circulating DNA to identify patients with lung cancer and monitor their disease. MATERIALS AND METHODS: The amount of plasma DNA was determined through the use of real-time quantitative polymerase chain reaction (PCR) amplification of the human telomerase reverse transcriptase gene (hTERT) in 100 non-small-cell lung cancer patients and 100 age-, sex-, and smoking-matched controls. Screening performance of the assay was calculated through the receiver operating characteristic (ROC) curve. Odds ratios were calculated using conditional logistic regression analysis. RESULTS: Median concentration of circulating plasma DNA in patients was almost eight times the value detected in controls (24.3 v 3.1 ng/mL). The area under the ROC curve was 0.94 (95% CI, 0.907 to 0.973). Plasma DNA was a strong risk factor for lung cancer; concentrations in the upper tertile were associated with an 85-fold higher risk than were those in the lowest tertile. CONCLUSION: This study shows that higher levels of free circulating DNA can be detected in patients with lung cancer compared with disease-free heavy smokers by a PCR assay, and suggests a new, noninvasive approach for early detection of lung cancer. Levels of plasma DNA could also identify higher-risk individuals for lung cancer screening and chemoprevention trials.
机译:目的:分析血浆中的循环DNA可以为早期肺癌检测提供有用的标记。这项研究旨在评估循环DNA定量分子测定法的敏感性和特异性,以鉴定肺癌患者并监测其疾病。材料与方法:通过实时定量聚合酶链反应(PCR)扩增人端粒酶逆转录酶基因(hTERT)在100例非小细胞肺癌患者和100例年龄在250例老年患者中测定血浆DNA的量。 ,性别和吸烟相匹配的控件。通过接收器工作特征(ROC)曲线计算测定的筛选性能。使用条件逻辑回归分析计算赔率。结果:患者中血浆血浆DNA的中位数浓度几乎是对照中检测值的2倍(24.3 v 3.1 ng / mL)。 ROC曲线下的面积为0.94(95%CI,0.907至0.973)。血浆DNA是肺癌的重要危险因素。最高三分位数的浓度比最低三分位数的浓度高85倍。结论:这项研究表明,与无病重度吸烟者相比,肺癌患者可通过PCR检测检测到更高水平的游离循环DNA,并提出了一种新的,非侵入性的肺癌早期检测方法。血浆DNA的水平还可以识别出高风险个体,用于肺癌筛查和化学预防试验。

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