Cha Byung Seok, Park Ki Soo, Park Jun Seok
1Department of Biological Engineering, College of Engineering, Konkuk University, Seoul, Republic of Korea.
2School of Medicine, Kyungpook National University, Daegu, Republic of Korea.
J Biol Eng. 2020 Feb 4;14:4. doi: 10.1186/s13036-020-0225-9. eCollection 2020.
With the increasing incidence of colorectal cancer (CRC), its accurate diagnosis is critical and in high demand. However, conventional methods are not ideal due to invasiveness and low accuracy. Herein, we aimed to identify efficient CRC mRNA markers in a non-invasive manner using CRC-derived extracellular vesicles (EVs). The expression levels of EV mRNAs from cancer cell lines were compared with those of a normal cell line using quantitative polymerase chain reaction. Eight markers were evaluated in plasma EVs from CRC patients and healthy controls. The diagnostic value of each marker, individually or in combination, was then determined using recessive operating characteristics analyses and the Mann-Whitney U test.
Eight mRNA markers (MYC, VEGF, CDX2, CD133, CEA, CK19, EpCAM, and CD24) were found to be more abundant in EVs derived from cancer cell lines compared to control cell lines. A combination of VEGF and CD133 showed the highest sensitivity (100%), specificity (80%), and accuracy (93%) and an area under the curve of 0.96; hence, these markers were deemed to be the CRC signature. Moreover, this signature was found to be highly expressed in CRC-derived EVs compared to healthy controls.
VEGF and CD133 mRNAs comprise a unique CRC signature in EVs that has the potential to act as a novel, non-invasive, and accurate biomarker that would improve the current diagnostic platform for CRC, while also serving to strengthen the value of EV mRNA as diagnostic markers for myriad of diseases.
随着结直肠癌(CRC)发病率的不断上升,其准确诊断至关重要且需求迫切。然而,传统方法因具有侵入性且准确性低而并不理想。在此,我们旨在利用源自CRC的细胞外囊泡(EVs)以非侵入性方式鉴定有效的CRC mRNA标志物。使用定量聚合酶链反应比较癌细胞系的EV mRNA表达水平与正常细胞系的表达水平。在CRC患者和健康对照者的血浆EVs中评估了8种标志物。然后使用隐性操作特征分析和曼-惠特尼U检验确定每种标志物单独或联合使用时的诊断价值。
发现与对照细胞系相比,8种mRNA标志物(MYC、VEGF、CDX2、CD133、CEA、CK19、EpCAM和CD24)在源自癌细胞系的EVs中更为丰富。VEGF和CD133的组合显示出最高的敏感性(100%)、特异性(80%)和准确性(93%),曲线下面积为0.96;因此,这些标志物被视为CRC特征。此外,与健康对照相比,该特征在源自CRC的EVs中高表达。
VEGF和CD133 mRNA在EVs中构成了独特的CRC特征,有潜力作为一种新型、非侵入性且准确的生物标志物,改善当前CRC的诊断平台,同时也增强了EV mRNA作为多种疾病诊断标志物的价值。