雄激素受体抑制通过miR-1/miR-26a-1/miR-487b信号介导的WT1和FOXA1沉默,使胶质母细胞瘤干细胞对替莫唑胺敏感。

IF 6.1 2区 生物学 Q1 CELL BIOLOGY
Ana Belén Díaz Méndez, Marta Di Giuliani, Andrea Sacconi, Elisa Tremante, Valentina Lulli, Marta Di Martile, Giulia Vari, Francesca De Bacco, Carla Boccaccio, Giulia Regazzo, Maria Giulia Rizzo
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引用次数: 0

摘要

胶质母细胞瘤(GBMs)是侵袭性脑肿瘤和具有挑战性的癌症的诊断和治疗。治疗方案包括手术后化疗与DNA烷基化剂替莫唑胺(TMZ)和放疗。然而,由于肿瘤异质性、细胞浸润及固有或获得性耐药,患者预后仍较差。了解耐药机制以及识别新的生物标志物对于开发新的治疗策略至关重要。mirna在胶质瘤的生物学中起着重要的作用,它们调节肿瘤的发生和治疗反应。我们最近发现了诊断/预后的miR-1-3p、miR-26a-1-3p和miR-487b-3p特征,它们在几种胶质瘤生物学功能中显示出肿瘤抑制作用。在这项研究中,我们研究了这三种mirna信号作为对TMZ反应的调节因子的治疗潜力。我们发现,在TMZ处理的患者源性GBM神经球中,miRNA特征的异位表达会通过诱导坏死导致细胞增殖和活力受损。此外,我们发现WT1和FOXA1这两个转录因子专门参与TMZ抗性,作为miRNA信号的新的直接靶点。值得注意的是,WT1和FOXA1的抑制,引起雄激素受体(AR)表达的下调,肿瘤球状体形成的损害和癌细胞干细胞的逆转。使用AR抑制剂enzalutamide重现了这些结果,证实了AR途径的参与。我们的数据表明,miR-1-3p/miR-26a-1-3p/miR-487b-3p特征对治疗反应和细胞干细胞性有影响,可能为基于mirna的GBM患者补充治疗铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Androgen receptor inhibition sensitizes glioblastoma stem cells to temozolomide by the miR-1/miR-26a-1/miR-487b signature mediated WT1 and FOXA1 silencing.

Glioblastomas (GBMs) are aggressive brain tumors and challenging cancers for diagnosis and treatment. Therapeutic options include surgery followed by chemotherapy with the DNA alkylator temozolomide (TMZ) and radiotherapy. However, the patient's prognosis remains poor due to tumor heterogeneity, cell infiltration and intrinsic or acquired resistance to therapy. Understanding the resistance mechanisms together with identifying new biomarkers are crucial for developing novel therapeutic strategies. MiRNAs play an important role in the biology of gliomas, they modulate tumorigenesis and therapy response. We recently identified the diagnostic/prognostic miR-1-3p, miR-26a-1-3p and miR-487b-3p signature that displays an oncosuppressive role on several glioma biological functions. In this study, we investigated the effects of the therapeutic potential of this three-miRNA signature as a regulator of response to TMZ. We found that ectopic expression of the miRNA signature in patient-derived GBM neurospheres treated with TMZ impaired cell proliferation and viability by necroptosis induction. Moreover, we identified WT1 and FOXA1, two transcription factors specifically involved in TMZ resistance, as novel direct targets of the miRNA signature. Of note, the repression of WT1 and FOXA1, elicited by the signature, caused a downregulation of the Androgen Receptor (AR) expression, an impairment of tumor-spheroid formation and reversed cancer cell stemness. These results were recapitulated using the AR inhibitor enzalutamide, confirming the involvement of the AR pathway. Our data indicate that the miR-1-3p/miR-26a-1-3p/miR-487b-3p signature, which has an impact on treatment response and cell stemness, may pave the way for miRNA-based complementary therapies in GBM patients.

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来源期刊
Cell Death Discovery
Cell Death Discovery Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
8.30
自引率
1.40%
发文量
468
审稿时长
9 weeks
期刊介绍: Cell Death Discovery is a multidisciplinary, international, online-only, open access journal, dedicated to publishing research at the intersection of medicine with biochemistry, pharmacology, immunology, cell biology and cell death, provided it is scientifically sound. The unrestricted access to research findings in Cell Death Discovery will foster a dynamic and highly productive dialogue between basic scientists and clinicians, as well as researchers in industry with a focus on cancer, neurobiology and inflammation research. As an official journal of the Cell Death Differentiation Association (ADMC), Cell Death Discovery will build upon the success of Cell Death & Differentiation and Cell Death & Disease in publishing important peer-reviewed original research, timely reviews and editorial commentary. Cell Death Discovery is committed to increasing the reproducibility of research. To this end, in conjunction with its sister journals Cell Death & Differentiation and Cell Death & Disease, Cell Death Discovery provides a unique forum for scientists as well as clinicians and members of the pharmaceutical and biotechnical industry. It is committed to the rapid publication of high quality original papers that relate to these subjects, together with topical, usually solicited, reviews, editorial correspondence and occasional commentaries on controversial and scientifically informative issues.
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