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Molecular mechanisms underlying the enhancement of carbon ion beam radiosensitivity of osteosarcoma cells by miR-29b

机译:MiR-29b骨肉瘤细胞碳离子束辐射敏感性提高的分子机制

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Carbon ion radiotherapy (CIRT) is more effective than conventional photon beam radiotherapy in treating osteosarcoma (OSA); however, the outcomes of CIRT alone are still unsatisfactory. In this study, we aimed to investigate whether miR-29b acts as a radiosensitizer for CIRT. The OSA cell lines U2OS and KHOS were treated with carbon ion beam alone, γ-ray irradiation alone, or in combination with an miR-29b mimic. OSA cell death as well as invasive and migratory abilities were analyzed through viability, colony formation, Transwell, and apoptosis assays. miR-29 expression was downregulated in OSA tissues compared to that in normal tissues and was associated with metastasis and relapse in patients with OSA. Further, miR-29b was found to directly target the transcription factor Sp1 and suppress the activation of the phosphatase and tensin homolog (PTEN)-AKT pathway. Conversely, Sp1 was found to attenuate the inhibitory effects of miR-29b in OSA cells. When used in combination with miR-29b mimic, carbon ion beam markedly inhibited invasion, migration, and proliferation of OSA cells and promoted apoptosis by inhibiting AKT phosphorylation in a Sp1/PTEN-mediated manner. Taken together, miR-29b mimic improved the radiosensitivity of OSA cells via the PTEN-AKT-Sp1 signaling pathway, presenting a novel strategy for the development of carbon ion beam combination therapy.
机译:碳离子放射疗法(CIRT)比传统的光子束放射疗法更有效地治疗骨肉瘤(OSA);然而,单独的瞬间的结果仍然不满意。在这项研究中,我们旨在调查miR-29b是否充当岩石的放射敏化器。 OSA细胞系U2OS和KHO用单独的碳离子束,单独使用γ射线照射,或与miR-29b模拟的γ射线照射。通过活力,菌落形成,Transwell和凋亡测定分析了OSA细胞死亡以及侵袭性和迁移能力。与正常组织相比,在OSA组织中下调miR-29表达,并与OSA患者的转移和复发相关。此外,发现miR-29b直接靶向转录因子SP1并抑制磷酸酶和硫素同源物(PTEN)-AKT途径的活化。相反,发现SP1衰减miR-29b在OSA细胞中的抑制作用。当与MiR-29B模拟的组合使用时,碳离子束明显抑制OSA细胞的侵袭,迁移和增殖,并通过以SP1 / PTEN介导的方式抑制Akt磷酸化而促进细胞凋亡。在一起,MiR-29B模仿通过PTEN-AKT-SP1信号通路改善OSA细胞的放射敏感性,呈现了一种新颖的碳离子束组合疗法的策略。

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