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首页> 外文期刊>Cancer Medicine >Circ‐SPECC1 modulates TGFβ2 and autophagy under oxidative stress by sponging miR‐33a to promote hepatocellular carcinoma tumorigenesis
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Circ‐SPECC1 modulates TGFβ2 and autophagy under oxidative stress by sponging miR‐33a to promote hepatocellular carcinoma tumorigenesis

机译:CiRC-SCOMC1通过海绵miR-33a调节氧化应力下的TGFβ2和自噬,以促进肝细胞癌肿瘤瘤

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Circular RNAs (circRNAs) play vital roles in the pathogenesis and development of multiple cancers, including hepatocellular carcinoma (HCC). Nevertheless, the regulatory mechanisms of circ‐SPECC1 in HCC remain poorly understood. In our study, we found that circ‐SPECC1 was apparently downregulated in H2O2‐treated HCC cells. Additionally, knockdown of circ‐SPECC1 inhibited cell proliferation and promoted cell apoptosis of HCC cells under H2O2 treatment. Moreover, circ‐SPECC1 inhibited miR‐33a expression by direct interaction, and miR‐33a inhibitor partially reversed the effect of circ‐SPECC1 knockdown on proliferation and apoptosis of H2O2‐treated HCC cells. Furthermore, TGFβ2 was demonstrated to be a target gene of miR‐33a and TGFβ2 overexpression rescued the phenotypes of HCC cells attenuated by miR‐33a mimics. Meanwhile, autophagy inhibition by 3‐methyladenine (3‐MA) abrogated the effect of miR‐33a mimics on proliferation and apoptosis of H2O2‐treated HCC cells. Finally, knockdown of circ‐SPECC1 hindered tumor growth in vivo. In conclusion, our study demonstrated that circ‐SPECC1 regulated TGFβ2 and autophagy to promote HCC tumorigenesis under oxidative stress via miR‐33a. These findings might provide potential treatment strategies for patients with HCC.
机译:圆形RNA(Circrnas)在多种癌症的发病机制和发育中起重要作用,包括肝细胞癌(HCC)。尽管如此,HCC中的CIRC-SCOMC1的监管机制仍然明确。在我们的研究中,我们发现在H2O2处理的HCC细胞中明显下调Circ-specc1。另外,在H 2 O 2处理下,循环循环循环循环抑制循环循环和促进HCC细胞的细胞凋亡。此外,循环循环型通过直接相互作用抑制miR-33a表达,MiR-33a抑制剂部分逆转了循环循环敲低对H2O2处理的HCC细胞增殖和凋亡的影响。此外,TGFβ2被证明是miR-33a的靶基因,TGFβ2过表达拯救了MiR-33a模拟物测量的HCC细胞的表型。同时,通过3-甲基腺嘌呤(3-mA)的自噬抑制废除了miR-33a模拟对H2O2处理的HCC细胞增殖和凋亡的影响。最后,敲低Circ-specc1阻碍了体内肿瘤生长。总之,我们的研究表明,Circ-specc1调节TGFβ2和自噬,以通过miR-33a在氧化胁迫下促进HCC肿瘤内酯。这些调查结果可能为HCC患者提供潜在的治疗策略。

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