Kim Julian O, Balshaw Robert, Trevena Connel, Banerji Shantanu, Murphy Leigh, Dawe David, Tan Lawrence, Srinathan Sadeesh, Buduhan Gordon, Kidane Biniam, Qing Gefei, Domaratzki Michael, Aliani Michel
Section of Radiation Oncology, Department of Radiology, Max Rady Faculty of Health Sciences, University of Manitoba, Winnipeg, Manitoba, Canada.
CancerCare Manitoba Research Institute, Winnipeg, Manitoba, Canada.
Cancer Metab. 2022 Oct 12;10(1):16. doi: 10.1186/s40170-022-00294-9.
Metabolomics is a potential means for biofluid-based lung cancer detection. We conducted a non-targeted, data-driven assessment of plasma from early-stage non-small cell lung cancer (ES-NSCLC) cases versus cancer-free controls (CFC) to explore and identify the classes of metabolites for further targeted metabolomics biomarker development.
Plasma from 250 ES-NSCLC cases and 250 CFCs underwent ultra-high-performance liquid chromatography/quadrupole time-of-flight mass spectrometry (UHPLC-QTOF-MS) in positive and negative electrospray ionization (ESI) modes. Molecular feature extraction, formula generation, and find-by-ion tools annotated metabolic entities. Analysis was restricted to endogenous metabolites present in ≥ 80% of samples. Unsupervised hierarchical cluster analysis identified clusters of metabolites. The metabolites with the strongest correlation with the principal component of each cluster were included in logistic regression modeling to assess discriminatory performance with and without adjustment for clinical covariates.
A total of 1900 UHPLC-QTOF-MS assessments identified 1667 and 2032 endogenous metabolites in the ESI-positive and ESI-negative modes, respectively. After data filtration, 676 metabolites remained, and 12 clusters of metabolites were identified from each ESI mode. Multivariable logistic regression using the representative metabolite from each cluster revealed effective classification of cases from controls with overall diagnostic accuracy of 91% (ESI positive) and 94% (ESI negative). Metabolites of interest identified for further targeted analysis include the following: 1b, 3a, 12a-trihydroxy-5b-cholanoic acid, pyridoxamine 5'-phosphate, sphinganine 1-phosphate, gamma-CEHC, 20-carboxy-leukotriene B4, isodesmosine, and 18-hydroxycortisol.
Plasma-based metabolomic detection of early-stage NSCLC appears feasible. Further metabolomics studies targeting phospholipid, steroid, and fatty acid metabolism are warranted to further develop noninvasive metabolomics-based detection of early-stage NSCLC.
代谢组学是基于生物流体进行肺癌检测的一种潜在手段。我们对早期非小细胞肺癌(ES-NSCLC)病例和无癌对照(CFC)的血浆进行了非靶向、数据驱动的评估,以探索和识别代谢物类别,用于进一步开展靶向代谢组学生物标志物的开发。
对250例ES-NSCLC病例和250例CFC的血浆在正、负电喷雾电离(ESI)模式下进行超高效液相色谱/四极杆飞行时间质谱(UHPLC-QTOF-MS)分析。分子特征提取、分子式生成和离子查找工具对代谢实体进行注释。分析仅限于存在于≥80%样本中的内源性代谢物。无监督层次聚类分析识别代谢物簇。将与每个簇的主成分相关性最强的代谢物纳入逻辑回归模型,以评估在调整和不调整临床协变量情况下的判别性能。
总共1900次UHPLC-QTOF-MS评估分别在ESI阳性和ESI阴性模式下鉴定出1667种和2032种内源性代谢物。数据过滤后,保留了676种代谢物,并且从每种ESI模式中识别出12个代谢物簇。使用每个簇的代表性代谢物进行多变量逻辑回归显示,病例与对照的有效分类总体诊断准确率为91%(ESI阳性)和94%(ESI阴性)。确定用于进一步靶向分析的感兴趣代谢物包括:1b, 3a, 12a-三羟基-5b-胆酸、5'-磷酸吡哆胺、1-磷酸鞘氨醇、γ-CEHC、20-羧基白三烯B4、异锁链素和18-羟基皮质醇。
基于血浆的早期NSCLC代谢组学检测似乎可行。有必要针对磷脂、类固醇和脂肪酸代谢开展进一步的代谢组学研究,以进一步开发基于代谢组学的早期NSCLC无创检测方法。