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Spectrochemical analysis of liquid biopsy harnessed to multivariate analysis towards breast cancer screening

机译:液检的分光细胞分析利用乳腺癌筛查多元分析

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Mortality due to breast cancer could be reduced via screening programs where preliminary clinical tests employed in an asymptomatic well-population with the objective of identifying cancer biomarkers could allow earlier referral of women with altered results for deeper clinical analysis and treatment. The introduction of well-population screening using new and less-invasive technologies as a strategy for earlier detection of breast cancer is thus highly desirable. Herein, spectrochemical analyses harnessed to multivariate classification techniques are used as a bio-analytical tool for a Breast Cancer Screening Program using liquid biopsy in the form of blood plasma samples collected from 476 patients recruited over a 2-year period. This methodology is based on acquiring and analysing the spectrochemical fingerprint of plasma samples by attenuated total reflection Fourier-transform infrared spectroscopy; derived spectra reflect intrinsic biochemical composition, generating information on nucleic acids, carbohydrates, lipids and proteins. Excellent results in terms of sensitivity (94%) and specificity (91%) were obtained using this method in comparison with traditional mammography (88–93% and 85–94%, respectively). Additional advantages such as better disease prognosis thus allowing a more effective treatment, lower associated morbidity, fewer false-positive and false-negative results, lower-cost, and higher analytical frequency make this method attractive for translation to the clinical setting.
机译:通过筛选乳腺癌引起的死亡率可以通过筛查术语,其中在无症状群体中使用的初步临床试验具有鉴定癌症生物标志物的目的,可以提前转诊妇女改变的临床分析和治疗结果。因此,使用新的和较少侵入性技术作为较早检测乳腺癌的策略的良好筛查的引入是非常理想的。在此,利用多变量分类技术的分光细胞分析用作使用从476名患者收集的血浆样本形式的液体活组织检查使用液体活组织检查,从476名患者招募在2年期间,用作乳腺癌筛查程序的生物分析工具。该方法基于通过减弱的总反射傅里叶变换红外光谱来获取和分析等离子体样品的分光细胞指纹;衍生光谱反映了内在生化组合物,产生有关核酸,碳水化合物,脂质和蛋白质的信息。与传统乳房X线检查(分别为88-93%和85-94%)相比,使用该方法获得敏感性(94%)和特异性(91%)的优异结果。诸如更好的疾病预后的额外优点因此允许更有效的治疗,降低相关的发病率,较少的假阳性和假阴性结果,较低的成本和更高的分析频率使得该方法对临床环境的翻译有吸引力。

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