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      Circular RNA EIF6 (Hsa_circ_0060060) sponges miR-144-3p to promote the cisplatin-resistance of human thyroid carcinoma cells by autophagy regulation

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          Abstract

          Anaplastic thyroid carcinoma (ATC) responds for the majority of death of thyroid carcinoma and often causes chemotherapy resistance. We investigated the influence of circEIF6 (Hsa_circ_0060060) on the cisplatin-sensitivity in papillary thyroid carcinoma (PTC) and ATC cells, and explored its regulation to downstream molecules miR-144-3p and Transforming Growth Factor α (TGF-α). Differentially expressed circRNAs in PTC were analyzed using the GSE93522 data downloaded. Expressions of circEIF6, miR-144-3p, TGF-α, autophagy-related proteins and apoptosis-related proteins were determined using qRT-PCR or western blot. RNA pull-down assay and dual luciferase report assay were applied to reveal the target relationships. Autophagy marker LC3 and cell proliferation marker ki67 were evaluated by immunofluorescence and immunohistochemistry. Cell viability was evaluated with MTT assay and cell apoptosis was assessed by flow cytometric analysis. CircEIF6, could promote autophagy induced by cisplatin, thus inhibiting cell apoptosis and enhancing the resistance of PTC and ATC cells to cisplatin. Has-miR-144-3p was the target of circEIF6 and was regulated by circEIF6. Besides, circEIF6 promoted autophagy by regulating miR-144-3p/TGF-α axis, enhancing the cisplatin-resistance in PTC and ATC cells. CircEIF6 promoted tumor growth by regulating miR-144-3p/TGF-α and circEIF6 knock-down enhanced cisplatin sensitivity in vivo. CircEIF6 could provide a target for therapy of cisplatin-resistance in thyroid carcinoma.

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          Most cited references20

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          Silencing of circRNA.2837 Plays a Protective Role in Sciatic Nerve Injury by Sponging the miR-34 Family via Regulating Neuronal Autophagy

          Circular RNAs (circRNAs) represent a class of non-coding RNAs that are involved in transcriptional and posttranscriptional gene expression regulation and associated with different kinds of human diseases. However, the characterization and function of circular RNAs in peripheral nerve injuries remain elusive. Here, we established a rat sciatic nerve injury model and identified at least 4,942 distinct circular RNA candidates and a series of circular RNAs that were differentially expressed in injured nerve tissues compared with matched normal tissues. We characterized one frequently downregulated circular RNA, circRNA.2837, and further investigated its function in sciatic nerve injury. We found that circRNA.2837 regulated autophagy in neurons in vitro and in vivo, and downregulation of circRNA.2837 alleviated sciatic nerve injury via inducing autophagy in vivo. Mechanistically, knockdown of circRNA.2837 may protect neurons against neurological injury by acting as a sponge for members of miR-34 family. Our findings suggested that differentially expressed circular RNAs were involved in the pathogenesis of sciatic nerve injury, and circular RNAs exerted regulatory functions in sciatic nerve injury and might be used as potential targets in sciatic nerve injury therapy.
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            A circular twist on microRNA regulation

            Circular RNAs (circRNAs) are a novel class of RNA whose physiological function has yet to be investigated. A recent publication in Science provides the first evidence of the biological relevance of a circRNA in an in vivo model and unveils an unexpected twist on their crosstalk with miRNAs.
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              Effects and Role of Multikinase Inhibitors in Thyroid Cancer.

              Thyroid cancer is the most common type of endocrine neoplasia. Differentiated thyroid carcinoma (DTC) represents 94% of all thyroid cancer types. Approximately 20% experience local recurrence and 10% distant metastasis. The recurrent DTC often becomes less differentiated, loses the iodine uptake capability and consequently loses the radioactive iodine treatment option. Under these circumstances survivability drops below 10% at 10 years. The treatment options for dedifferentiated thyroid cancers are extremely limited. This category sometimes referred to as poorly differentiated thyroid cancer (PDTC), is characterised by a missing response to radioiodine treatment and a remarkably reduced survivability. Therefore, new drugs have been developed to fill this gap in treatment.
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                Author and article information

                Journal
                Aging (Albany NY)
                Aging (Albany NY)
                Aging
                Aging (Albany NY)
                Impact Journals
                1945-4589
                December 2018
                12 December 2018
                : 10
                : 12
                : 3806-3820
                Affiliations
                [1 ]Department of Forensic Medicine, Shanxi Medical University, Taiyuan 030001, Shanxi, , China
                [2 ]Department of General Surgery, First Hospital of Shanxi Medical University, Taiyuan 030001, Shanxi, , China
                [3 ]Department of General Surgery, First Clinical Medical College of Shanxi Medical University, Taiyuan 030001, Shanxi, , China
                [4 ]Department of General Surgery, Second Clinical Medical College of Shanxi Medical University, Taiyuan 030001, Shanxi, , China
                [* ]Equal contribution
                Author notes
                Correspondence to: Jing Liu; email: jljkyk@ 123456163.com
                Article
                101674
                10.18632/aging.101674
                6326687
                30540564
                58fec8cc-179f-4c92-b4e8-31752165dd62
                Copyright © 2018 Liu et al.

                This is an open-access article distributed under the terms of the Creative Commons Attribution (CC BY) 3.0 License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

                History
                : 13 August 2018
                : 15 November 2018
                Categories
                Research Paper

                Cell biology
                thyroid carcinoma,circular rna,hsa_circ_0060060,mir-144-3p,cisplatin
                Cell biology
                thyroid carcinoma, circular rna, hsa_circ_0060060, mir-144-3p, cisplatin

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