| [1] | Wilusz, J.E. and Sharp, P.A. (2013) Molecular Biology. A Circuitous Route to Noncoding RNA. Science (New York, N.Y.), 340, 440-441. https://doi.org/10.1126/science.1238522
 | 
                     
                                
                                    
                                        | [2] | Salzman, J., Gawad, C., Wang, P.L., Lacayo, N. and Brown, P.O. (2012) Circular RNAs Are the Predominant Transcript Isoform from Hundreds of Human Genes in Diverse Cell Types. PloS One, 7, e30733. https://doi.org/10.1371/journal.pone.0030733
 | 
                     
                                
                                    
                                        | [3] | Zhang, Y., Zhang, X.O., Chen, T., et al. (2013) Circular Intronic Long Noncoding RNAs. Molecular Cell, 51, 792-806. https://doi.org/10.1016/j.molcel.2013.08.017
 | 
                     
                                
                                    
                                        | [4] | Rodriguez-Trelles, F., Tarrio, R. and Ayala, F.J. (2006) Origins and Evolution of Spliceosomal Introns. Annual Review of Genetics, 40, 47-76. https://doi.org/10.1146/annurev.genet.40.110405.090625
 | 
                     
                                
                                    
                                        | [5] | Jeck, W.R., Sorrentino, J.A., Wang, K., et al. (2013) Circular RNAs Are Abundant, Conserved, and Associated with ALU Repeats. RNA, 19, 141-157. https://doi.org/10.1261/rna.035667.112
 | 
                     
                                
                                    
                                        | [6] | Lasda, E. and Parker, R. (2016) Circular RNAs Co-Precipitate with Extracellular Vesicles: A Possible Mechanism for circRNA Clearance. PloS One, 11, e0148407. https://doi.org/10.1371/journal.pone.0148407
 | 
                     
                                
                                    
                                        | [7] | Hansen, T.B., Jensen, T.I., Clausen, B.H., et al. (2013) Natural RNA Circles Function as Efficient microRNA Sponges. Nature, 495, 384-388. https://doi.org/10.1038/nature11993
 | 
                     
                                
                                    
                                        | [8] | Salmena, L., Poliseno, L., Tay, Y., Kats, L. and Pandolfi, P.P. (2011) A ceRNA Hypothesis: The Rosetta Stone of a Hidden RNA Language? Cell, 146, 353-358. https://doi.org/10.1016/j.cell.2011.07.014
 | 
                     
                                
                                    
                                        | [9] | Memczak, S., Jens, M., Elefsinioti, A., et al. (2013) Circular RNAs Are a Large Class of Animal RNAs with Regulatory Potency. Nature, 495, 333-338. https://doi.org/10.1038/nature11928
 | 
                     
                                
                                    
                                        | [10] | Li, Z., Huang, C., Bao, C., et al. (2015) Exon-Intron Circular RNAs Regulate Transcription in the Nucleus. Nature Structural & Molecular Biology, 22, 256-264. https://doi.org/10.1038/nsmb.2959
 | 
                     
                                
                                    
                                        | [11] | Salzman, J., Chen, R.E., Olsen, M.N., Wang, P.L. and Brown, P.O. (2013) Cell-Type Specific Features of Circular RNA Expression. PLoS Genetics, 9, e1003777. https://doi.org/10.1371/journal.pgen.1003777
 | 
                     
                                
                                    
                                        | [12] | Szabo, L., Morey, R., Palpant, N.J., et al. (2015) Statistically Based Splicing Detection Reveals Neural Enrichment and Tissue-Specific Induction of Circular RNA during Human Fetal Development. Genome biology, 16, 126. https://doi.org/10.1186/s13059-015-0690-5
 | 
                     
                                
                                    
                                        | [13] | Qin, M., Liu, G., Huo, X., et al. (2016) Hsa_circ_0001649: A Circular RNA and Potential Novel Biomarker for Hepatocellular Carcinoma. Cancer Biomarkers: Section A of Disease Markers, 16, 161-169. https://doi.org/10.3233/CBM-150552
 | 
                     
                                
                                    
                                        | [14] | Li, P., Chen, S., Chen, H., et al. (2015) Using Circular RNA as a Novel Type of Biomarker in the Screening of Gastric Cancer. Clinica Chimica Acta, 444, 132-136. https://doi.org/10.1016/j.cca.2015.02.018
 | 
                     
                                
                                    
                                        | [15] | 陈冉冉, 付玉荣, 伊正君. 环状RNA与疾病关系的研究进展[J]. 基础医学与临床, 2016, 36(9): 1295-1300. | 
                     
                                
                                    
                                        | [16] | Yu, L., Gong, X., Sun, L., Zhou, Q., Lu, B. and Zhu, L. (2016) The Circular RNA Cdr1as Act as an Oncogene in Hepatocellular Carcinoma through Targeting miR-7 Expression. PloS One, 11, e0158347. https://doi.org/10.1371/journal.pone.0158347
 | 
                     
                                
                                    
                                        | [17] | Xu, L., Zhang, M., Zheng, X., Yi, P., Lan, C. and Xu, M. (2017) The Circular RNA ciRS-7 (Cdr1as) Acts as a Risk Factor of Hepatic Microvascular Invasion in Hepatocellular Carcinoma. Journal of Cancer Research and Clinical Oncology, 143, 17-27. https://doi.org/10.1371/journal.pone.0158347
 | 
                     
                                
                                    
                                        | [18] | Han, D., Li, J., Wang, H., et al. (2017) Circular RNA MTO1 Acts as the Sponge of miR-9 to Suppress Hepatocellular Carcinoma Progression. Hepatology, 66, 1151-1164. https://doi.org/10.1002/hep.29270
 | 
                     
                                
                                    
                                        | [19] | Fu, L., Wu, S., Yao, T., et al. (2017) Decreased Expression of hsa_circ_0003570 in Hepatocellular Carcinoma and Its Clinical Significance. Journal of Clinical Laboratory Analysis. https://doi.org/10.1002/jcla.22239
 | 
                     
                                
                                    
                                        | [20] | Fu, L., Chen, Q., Yao, T., et al. (2017) Hsa_circ_0005986 Inhibits Carcinogenesis by Acting as a miR-129-5p Sponge and Is Used as a Novel Biomarker for Hepatocellular Carcinoma. Oncotarget, 8, 43878-43888. https://doi.org/10.18632/oncotarget.16709
 | 
                     
                                
                                    
                                        | [21] | 高鹏骥, 陈雷, 高杰, 等. 环状RNA在肝细胞癌中的差异表达研究[J]. 中国普通外科杂志, 2017, 26(1): 65-69. | 
                     
                                
                                    
                                        | [22] | Huang, X.Y., Huang, Z.L., Xu, Y.H., et al. (2017) Comprehensive Circular RNA Profiling Reveals the Regulatory Role of the circRNA-100338/miR-141-3p Pathway in Hepatitis B-Related Hepatocellular Carcinoma. Scientific Reports, 7, 5428. https://doi.org/10.1038/s41598-017-05432-8
 | 
                     
                                
                                    
                                        | [23] | Li, J., Zhen, L., Zhang, Y., et al. (2017) Circ-104916 Is Downregulated in Gastric Cancer and Suppresses Migration and Invasion of Gastric Cancer Cells. OncoTargets and Therapy, 10, 3521-3529. https://doi.org/10.2147/OTT.S136347
 | 
                     
                                
                                    
                                        | [24] | Weng, W., Wei, Q., Toden, S., et al. (2017) Circular RNA ciRS-7-A Promising Prognostic Biomarker and a Potential Therapeutic Target in Colorectal Cancer. Clinical Cancer Research: An Official Journal of the American Association for Cancer Research, 23, 3918-3928. https://doi.org/10.1158/1078-0432.CCR-16-2541
 | 
                     
                                
                                    
                                        | [25] | Guo, J.N., Li, J., Zhu, C.L., et al. (2016) Comprehensive Profile of Differentially Expressed Circular RNAs Reveals That hsa_circ_0000069 Is Upregulated and Promotes Cell Proliferation, Migration, and Invasion in Colorectal Cancer. OncoTargets and Therapy, 9, 7451-7458. https://doi.org/10.2147/OTT.S123220
 | 
                     
                                
                                    
                                        | [26] | Wang, X., Zhang, Y., Huang, L., et al. (2015) Decreased Expression of hsa_circ_001988 in Colorectal Cancer and Its Clinical Significances. International Journal of Clinical and Experimental Pathology, 8, 16020-16025. | 
                     
                                
                                    
                                        | [27] | Hsiao, K.Y., Lin, Y.C., Gupta, S.K., et al. (2017) Noncoding Effects of Circular RNA CCDC66 Promote Colon Cancer Growth and Metastasis. Cancer Research, 77, 2339-2350. https://doi.org/10.1158/0008-5472.CAN-16-1883
 | 
                     
                                
                                    
                                        | [28] | Xia, W., Qiu, M., Chen, R., et al. (2016) Circular RNA has_circ_0067934 Is Upregulated in Esophageal Squamous Cell Carcinoma and Promoted Proliferation. Scientific Reports, 6, Article ID: 35576. https://doi.org/10.1038/srep35576
 | 
                     
                                
                                    
                                        | [29] | Li, F., Zhang, L., Li, W., et al. (2015) Circular RNA ITCH Has Inhibitory Effect on ESCC by Suppressing the Wnt/Beta-Catenin Pathway. Oncotarget, 6, 6001-6013. https://doi.org/10.18632/oncotarget.3469
 | 
                     
                                
                                    
                                        | [30] | Ahmed, I., Karedath, T., Andrews, S.S., et al. (2016) Altered Expression Pattern of Circular RNAs in Primary and Metastatic Sites of Epithelial Ovarian Carcinoma. Oncotarget, 7, 36366-36381. https://doi.org/10.18632/oncotarget.8917
 |