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Three serum metabolite signatures for diagnosing low-grade and high-grade bladder cancer

机译:诊断低度和高度膀胱癌的三种血清代谢物特征

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摘要

To address the shortcomings of cystoscopy and urine cytology for detecting and grading bladder cancer (BC), ultrahigh performance liquid chromatography (UHPLC) coupled with Q-TOF mass spectrometry in conjunction with univariate and multivariate statistical analyses was employed as an alternative method for the diagnosis of BC. A series of differential serum metabolites were further identified for low-grade(LG) and high-grade(HG) BC patients, suggesting metabolic dysfunction in malignant proliferation, immune escape, differentiation, apoptosis and invasion of cancer cells in BC patients. In total, three serum metabolites including inosine, acetyl-N-formyl-5-methoxykynurenamine and PS(O-18:0/0:0) were selected by binary logistic regression analysis, and receiver operating characteristic (ROC) test based on their combined use for HG BC showed that the area under the curve (AUC) was 0.961 in the discovery set and 0.950 in the validation set when compared to LG BC. Likewise, this composite biomarker panel can also differentiate LG BC from healthy controls with the AUC of 0.993 and 0.991 in the discovery and validation set, respectively. This finding suggested that this composite serum metabolite signature was a promising and less invasive classifier for probing and grading BC, which deserved to be further investigated in larger samples.
机译:为了解决膀胱镜检查和尿液细胞学检查对膀胱癌(BC)进行分级的缺点,采用超高效液相色谱(UHPLC)结合Q-TOF质谱结合单变量和多变量统计分析作为诊断的替代方法公元前。进一步鉴定了低级(LG)和高级(HG)BC患者的一系列差异血清代谢产物,表明BC患者中恶性增殖,免疫逃逸,分化,凋亡和癌细胞侵袭的代谢功能障碍。通过二元Logistic回归分析,共选择了肌苷,乙酰基-N-甲酰基-5-甲氧基kyrenrenamine和PS(O-18:0/0:0)这三种血清代谢物,并基于它们的接收器工作特性(ROC)测试HG BC的组合使用显示,与LG BC相比,发现集中的曲线下面积(AUC)为0.961,而在验证集中为0.950。同样,该复合生物标志物组还可以将LG BC与健康对照区分开,在发现和验证组中的AUC分别为0.993和0.991。这一发现表明,这种复合的血清代谢产物特征是用于探测和分级BC的一种有前途且侵入性较小的分类器,值得在大样本中进一步研究。

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