Agarwal Payal, Crepps Melissa P, Stahr Natalie A, Kretzschmar Will P, Harris Hannah C, Prasad Nripesh, Levy Shawn E, Smith Bruce F
Scott-Ritchey Research Center, College of Veterinary Medicine, Auburn University, USA.
Department of Pathobiology, College of Veterinary Medicine, Auburn University, USA.
Biochem Biophys Rep. 2021 Aug 19;28:101106. doi: 10.1016/j.bbrep.2021.101106. eCollection 2021 Dec.
Delay in cancer diagnosis often results in metastasis and an inability to successfully treat the tumor. The use of broadly cancer-specific biomarkers at an early stage may improve cancer treatment and staging. This study has explored circulatory exosomal miRNAs as potential diagnostic biomarkers to identify cancer patients. Secretory exosomal miRNAs were isolated from 13 canine cancer cell lines (lymphoma, mast cell tumor, histiocytic cell line, osteosarcoma, melanoma, and breast tumor) and were sequenced by Next-Generation sequencing (NGS). We have identified 6 miRNAs (cfa-miR-9, -1841, -1306, -345, -132, and -26b) by NGS that were elevated in all cancer cell types. The miRNAs identified by NGS were then examined by Q-RT-PCR. The PCR data demonstrated similar expression patterns to those seen with NGS but provided fold differences that were much lower than those seen for NGS. Cfa-miR-9 was found to be the most consistently elevated miRNA in NGS and PCR, making it the most likely miRNA to prove diagnostic. In this study, we have demonstrated that it is possible to identify exosomal miRNAs with elevated secretion across multiple tumor types that could be used as circulatory diagnostic biomarkers for liquid biopsy in the future.
癌症诊断的延迟往往会导致转移,并且无法成功治疗肿瘤。在早期使用广泛的癌症特异性生物标志物可能会改善癌症治疗和分期。本研究探索了循环外泌体微小RNA作为识别癌症患者的潜在诊断生物标志物。从13种犬癌细胞系(淋巴瘤、肥大细胞瘤、组织细胞系、骨肉瘤、黑色素瘤和乳腺肿瘤)中分离出分泌性外泌体微小RNA,并通过下一代测序(NGS)进行测序。我们通过NGS鉴定出6种微小RNA(cfa-miR-9、-1841、-1306、-345、-132和-26b),它们在所有癌细胞类型中均有升高。然后通过定量逆转录聚合酶链反应(Q-RT-PCR)检测NGS鉴定出的微小RNA。PCR数据显示出与NGS相似的表达模式,但提供的倍数差异远低于NGS所见。发现cfa-miR-9是NGS和PCR中最持续升高的微小RNA,使其最有可能被证明具有诊断价值。在本研究中,我们证明了有可能识别出在多种肿瘤类型中分泌升高的外泌体微小RNA,这些微小RNA未来可作为液体活检的循环诊断生物标志物。