| Literature DB >> 34306317 |
Yanshuo Han1, Hao Zhang1, Ce Bian2, Chen Chen3, Simei Tu1, Jiahui Guo1, Yihao Wu1, Dittmar Böckler4, Jian Zhang5.
Abstract
Abdominal aortic aneurysms (AAAs) have posed a great threat to human life, and the necessity of its monitoring and treatment is decided by symptomatology and/or the aneurysm size. Accumulating evidence suggests that circular RNAs (circRNAs) contribute a part to the pathogenesis of AAAs. circRNAs are novel single-stranded RNAs with a closed loop structure and high stability, having become the candidate biomarkers for numerous kinds of human disorders. Besides, circRNAs act as molecular "sponge" in organisms, capable of regulating the transcription level. Here, we characterize that the molecular mechanisms underlying the role of circRNAs in AAA development were further elucidated. In the present work, studies on the biosynthesis, bibliometrics, and mechanisms of action of circRNAs were aims comprehensively reviewed, the role of circRNAs in the AAA pathogenic mechanism was illustrated, and their potential in diagnosing AAAs was examined. Moreover, the current evidence about the effects of circRNAs on AAA development through modulating endothelial cells (ECs), macrophages, and vascular smooth muscle cells (VSMCs) was summarized. Through thorough investigation, the molecular mechanisms underlying the role of circRNAs in AAA development were further elucidated. The results demonstrated that circRNAs had the application potential in the diagnosis and prevention of AAAs in clinical practice. The study of circRNA regulatory pathways would be of great assistance to the etiologic research of AAAs.Entities:
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Year: 2021 PMID: 34306317 PMCID: PMC8263248 DOI: 10.1155/2021/9934951
Source DB: PubMed Journal: Oxid Med Cell Longev ISSN: 1942-0994 Impact factor: 6.543
Figure 1Formation and mechanism of RNA in cells. The formation process and mode of action of circRNAs and mRNAs in cells.
Figure 2Statistics of AAA and ncRNA papers published. (a) The relationship between “circRNA, ncRNA, and abdominal aortic aneurysm” and “published volume and year of publication” (b) The relationship between the number of “circRNA, miRNA, mRNA” and “the year of publication”.
Figure 3Bibliometric analysis of keywords. Keyword cluster analysis, visual analysis based on the year when the keyword appears, so as to make (a) network drawing and (b) timeline graph production.
Figure 4The analysis of total country output based on ncRNA research. (a) Network map of countries/regions engaged in ncRNA research (b) World map of total country output engaged in ncRNA research.
Verified circRNAs in AAAs.
| circRNA | Gene symbol | Regulation | Pathway | Cell type | Function | Ref | |
|---|---|---|---|---|---|---|---|
|
| hsa_circ_0002168 | TMEM189 | Down | hsa-miR-298 | circRNA microarray analysis of AAA tissue and healthy aorta tissue | N/A | 83 |
| hsa-miR-503b-5p | |||||||
| hsa-miR-296b-3p | |||||||
| hsa-miR-612 | |||||||
| hsa-miR-15a-3p | |||||||
| hsa-miR-15a | |||||||
| hsa_circ_0005360 | LDLR | Down | hsa-miR-670-3p | circRNA microarray analysis of AAA tissue and healthy aorta tissue | N/A | 83 | |
| hsa-miR-181b | |||||||
| hsa-miR-671-5p | |||||||
| hsa-miR-616-3p | |||||||
| hsa_circ_0060063 | UQCC1 | Up | hsa-miR-135b-3p | circRNA microarray analysis of AAA tissue and healthy aorta tissue | N/A | 83 | |
| hsa-miR-186-5p | |||||||
| hsa-miR-223-3p | |||||||
| hsa-miR-541-5p | |||||||
| hsa-miR-145b-3p | |||||||
| hsa_circ_0070382 | AFF1 | Up | hsa-miR-137 | circRNA microarray analysis of AAA tissue and healthy aorta tissue | N/A | 83 | |
| hsa-miR-432-3p | |||||||
| hsa-miR-890 | |||||||
| hsa-miR-135b-3p | |||||||
| hsa-miR-24-3p | |||||||
| hsa_circ_0027446 | HMGA2 | Up | hsa-miR-6882-3p | circRNA microarray analysis of AAA tissue and healthy aorta tissue | N/A | 83 | |
| hsa-miR-129-5p | |||||||
| hsa-miR-331-3p | |||||||
| hsa-miR-1236-3p | |||||||
| hsa-miR-3925-3p | |||||||
| hsa_circ_0028198 | ANAPC7 | Up | hsa-miR-493-3p | circRNA microarray analysis of AAA tissue and healthy aorta tissue | Expression of ASPH and PDE3B may be regulated by hsa_circ_0028198, | 83 | |
| hsa-miR-153-5p | |||||||
| hsa-miR-7-5p | |||||||
| hsa-miR-205-3p | |||||||
| hsa_circ_CCDC66 | CCDC66 | Up | ∗hsa-miR-342-3p | SMC | VSMC growth and apoptosis | 91 | |
| hsa_circ_CBFB | CBFB | Up | ∗hsa-miR-28-5p/GRIA4/LYPD3 axis | VSMC | VSMC apoptosis and growth | 92 | |
| hsa_circ_CDR1as | CDR1as | Down | ∗hsa-miRNA-7/CKAP4 axis | AAA and VSMC | VSMC apoptosis and growth | 94 | |
| has_circ_000595 | N/A | Up | ∗hsa-miRNA-19a | 95 | |||
|
| |||||||
|
| mmu_circ_29892 | Pros1 | Up | mmu-miR-212-5p | circRNA microarray analysis of Ang II-induced in mice | N/A | 90 |
| mmu-miR-7033-3p | |||||||
| mmu-miR-23b-3p | |||||||
| mmu-miR-6947-3p | |||||||
| mmu-miR-541-5p | |||||||
| mmu_circ_45403 | Wdr44 | Up | mmu-miR-7235-3p | circRNA microarray analysis of Ang II-induced in mice | N/A | 90 | |
| mmu-miR-141-5p | |||||||
| mmu-miR-7026-3p | |||||||
| mmu-miR-301a-5p | |||||||
| mmu-miR-92a-2-5p | |||||||
| mmu_circ_40388 | Kdm3a | Up | mmu-miR-6922-3p | circRNA microarray analysis of Ang II-induced in mice | N/A | 90 | |
| mmu-miR-3078-3p | |||||||
| mmu-let-7c-1-3p | |||||||
| mmu-miR-500-5p | |||||||
| mmu-miR-19b-2-5p | |||||||
| mmu_circ_27294 | Ccdc66 | Up | mmu-miR-7092-3p | circRNA microarray analysis of Ang II-induced in mice | N/A | 90 | |
| mmu-miR-6946-3p | |||||||
| mmu-miR-7094b-2-5p | |||||||
| mmu-miR-7578 | |||||||
| mmu-miR-26a-2-3p | |||||||
| mmu_circ_001265 | Chordc1 | Down | mmu-miR-107-5p | circRNA microarray analysis of Ang II-induced in mice | N/A | 90 | |
| mmu-miR-103-1-5p | |||||||
| mmu-miR-103-2-5p | |||||||
| mmu-let-7a-2-3p | |||||||
| mmu-miR-199b-3p | |||||||
| mmu_circ_018331 | Hivep1 | Down | mmu-miR-149-5p | circRNA microarray analysis of Ang II-induced in mice | N/A | 90 | |
| mmu-miR-204-5p | |||||||
| mmu-miR-30b-3p | |||||||
| mmu-miR-7679-5p | |||||||
| mmu-miR-5620-5p | |||||||
| mmu_circ_40599 | Frmd4b | Down | mmu-miR-337-3p | circRNA microarray analysis of Ang II-induced in mice | N/A | 90 | |
| mmu-miR-320-5p | |||||||
| mmu-miR-7079-5p | |||||||
| mmu-miR-215-3p | |||||||
| mmu-miR-7021-3p | |||||||
Figure 5Several circRNA mediated signaling pathways in AAA. In human and mouse abdominal aortic aneurysms, the plan view of the abdominal aorta and several circRNA mediated signal pathways.
Figure 6Potential ncRNA in a variety of cells in AAA tissue. Examples of several ncRNAs that may lead to the formation of AAA in macrophages, smooth muscle cells, and endothelial cells include circRNAs, miRNAs, and mRNAs.
CircRNAs causing EC disorder in AAAs.
| circRNA | Cell type | Inducing factor | Expression | Pathway | Function | Ref |
|---|---|---|---|---|---|---|
| circ_0003204 | HAEC | ox-LDL | Up | miR-370-3p/TGF | Inhibited viability, migration, proliferation, and tube formation | 121 |
| circ_0124644 | HUVECs | ox-LDL | Up | miR-149-5p/PAPP-A | Inhibited apoptosis | 123 |
| circ_0003645 | HUVECs | ox-LDL | Up | NF- | Promoted inflammatory response and promoted the production of adhesion molecules | 124 |
| hsa_circ_0003575 | HUVECs | ox-LDL | Down | — | Promoted apoptosis, inhibited proliferation and angiogenesis | 116 |
| circ_0003204 | HUVECs | ox-LDL | Down | — | Inhibited the proliferation, migration, and invasion, promoted apoptosis | 122 |
| circHIPK3 | HUVECs+HAECs | HG | Down | miR-124S/phK1 and STAT3 | Inhibited apoptosis | 116 |
| circ-0054633 | HUVECs | HG | Up | miR-218/roundabout1 | Promoted proliferation and migration, inhibited apoptosis | 115 |
| miR-218/heme oxygenase-1 | ||||||
| hsa_circ_0068087 | HUVECs | HG | Up | mi-197/TLR4/NF- | Promoted inflammation and dysfunction | 114 |
| circBPTF | HUVEC | HG | Up | miR-384/LIN28B | Promoted apoptosis, the release of proinflammatory cytokines and oxidative stress | 113 |
| hsa_circ_0010729 | HUVECs | Hypoxic | Up | miR-186/HIF-1 | Promoted proliferation and migration; inhibited apoptosis | 107 |
| circAFF1 | HUV-EC-C and HBEC-5i | Hypoxic | Up | miR-516b/SAV1/YAP1 | Inhibited the proliferation, tube formation, and migration of vascular endothelial cells | 108 |
| circ-ZNF609 | HUVECs | Hypoxic+HG | Up | miR-615-5p/MEF2A | Promoted apoptosis, inhibited migration and tube formation | 109 |
CircRNAs causing VSMC disorder in AAAs.
| circRNA | Cell type | Inducing factor | Expression | Pathway | Function | Ref |
|---|---|---|---|---|---|---|
| circ_0010283 | VSMCs | ox-LDL | Up | miR-370-3p/HMGB1 | Promoted VSMC viability and migration, and proliferating cell nuclear antigen | 125 |
| HVSMCs | ox-LDL | Up | miR-133a-3p/PAPPA | Promoted VSMC proliferation, migration and invasion | 126 | |
| circCHFR | VSMCs | ox-LDL | Up | miR-370/FOXO1/Cyclin D1 | Promoted proliferation and migration ability of VSMCs | 127 |
| VSMCs | ox-LDL | Up | miR-214-3p/Wnt3/ | Promoted cell growth, migration, and inflammation | 128 | |
| circ_0029589 | VSMCs | ox-LDL | Up | miR-424-5p/IGF2 | Promoted proliferation, migration, and invasion | 129 |
| VSMCs | ox-LDL | Up | miR-214-3p and STIM1 | Promoted proliferation, migration, and invasion | 130 | |
| circNRG-1 | MASMCs | Ang II | Down | miR-193b-5p/NRG-1 | Promoted apoptosis | 131 |
| circWDR77 | VSMCs | HG | Up | miR-124/FGF-2 | Promoted migration and proliferation | |
| circ_0077930 | HUVEC-Exos>VSMCs | HG | — | miR-622-Kras | Induce cellular senescence in VSMCs | 132 |
| circ_0044073 | HUVEC | LPS | Down | miR-107/JAK/STAT | Promoted the proliferation and invasion | 133 |
| HUVSMCs | Up | |||||
| circ-Sirt1 | VSMCs | TNF- | Down | miR-132/212/SIRT1 | Inhibited inflammation | 134 |
| circDHCR24 | HA-VSMC | PDGF-BB | Up | miR-149-5p/MMP9 | Promoted proliferation, migration, and phenotypic switch | 135 |
| circ-SATB2 | Proliferative VSMCs | N/A | Up | miR-939/STM1 | Promoted migration, proliferation; inhibited apoptosis | 136 |
| circ-RUSC2 | Proliferative VSMCs | N/A | Up | miR-661/SYK | Promoted migration, proliferation; inhibited apoptosis | 137 |
| circACTA2 | HASMCs | N/A | Up | NRG-1/circACTA2/miR-548f-5p | Promoted contraction |