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在人肿瘤异种移植和具有免疫活性的同基因小鼠肿瘤模型中,抑制PI4K IIIα可使肿瘤对放疗敏感。

Inhibition of PI4K IIIα radiosensitizes in human tumor xenograft and immune-competent syngeneic murine tumor model.

作者信息

Park Younghee, Park Ji Min, Kim Dan Hyo, Kwon Jeanny, Kim In Ah

机构信息

Department of Radiation Oncology, Graduate School of Medicine, Seoul National University, Seoul, Republic of Korea.

Medical Science Research Institute, Seoul National University Bundang Hospital, Seongnam, Republic of Korea.

出版信息

Oncotarget. 2017 Nov 30;8(66):110392-110405. doi: 10.18632/oncotarget.22778. eCollection 2017 Dec 15.

Abstract

Phosphatidylinositol (PI) 4-kinase (PI4K) has emerged as a potential target for anti-cancer treatment. We recently reported that simeprevir, an anti-hepatitis C viral (HCV) agent, radiosensitized diverse human cancer cells by inhibiting PI4K IIIα . In this study, we investigated the radiosensitizing effect of simeprevir in an tumor xenograft model and the mechanism of its interaction. The immune modulatory effect of PI4K IIIα was evaluated in an immune-competent syngeneic murine tumor model. In xenograft models using BT474 breast cancer and U251 brain tumor cells, inhibition of PI4K IIIα induced by simeprevir combined with radiation significantly delayed tumor growth compared to either treatment alone. PI4K IIIα inhibition led to eversion of the epithelial-mesenchymal transition as suggested by decreased invasion/migration and vascular tube formation. Simeprevir down-regulated PI3Kδ expression and PI3Kδ inhibition using RNA interference radiosensitized breast cancer cells. PI4K IIIα inhibition enhanced the radiosensitizing effect of anti-programmed death-ligand 1 (PD-L1) and decreased the expression of PI3Kδ, phosphorylated-Akt, and PD-L1 in breast cancer cells co-cultured with human T-lymphocytes. The immune modulatory effect was evaluated in immune-competent syngeneic 4T1 murine tumor models. Simeprevir showed significant radiosensitizing effect and immune modulatory function by affecting the CD4(+)/CD8(+) ratio of tumor infiltrating lymphocytes. These findings suggest that targeting PI4K IIIα with an anti-HCV agent is a viable drug repositioning approach for enhancing the therapeutic efficacy of radiation therapy. The immune regulatory function of PI4K IIIα via modulation of PI3Kδ suggests a strategy for enhancing the radiosensitizing effect of immune checkpoint blockades.

摘要

磷脂酰肌醇(PI)4-激酶(PI4K)已成为抗癌治疗的潜在靶点。我们最近报道,抗丙型肝炎病毒(HCV)药物西米普明通过抑制PI4K IIIα使多种人类癌细胞对辐射敏感。在本研究中,我们研究了西米普明在肿瘤异种移植模型中的放射增敏作用及其相互作用机制。在具有免疫活性的同基因小鼠肿瘤模型中评估了PI4K IIIα的免疫调节作用。在使用BT474乳腺癌和U251脑肿瘤细胞的异种移植模型中,与单独的任何一种治疗相比,西米普明联合辐射诱导的PI4K IIIα抑制显著延迟了肿瘤生长。PI4K IIIα抑制导致上皮-间质转化逆转,表现为侵袭/迁移和血管管形成减少。西米普明下调PI3Kδ表达,使用RNA干扰抑制PI3Kδ可使乳腺癌细胞对辐射敏感。PI4K IIIα抑制增强了抗程序性死亡配体1(PD-L1)的放射增敏作用,并降低了与人类T淋巴细胞共培养的乳腺癌细胞中PI3Kδ、磷酸化Akt和PD-L1的表达。在具有免疫活性的同基因4T1小鼠肿瘤模型中评估了免疫调节作用。西米普明通过影响肿瘤浸润淋巴细胞的CD4(+)/CD8(+)比值显示出显著的放射增敏作用和免疫调节功能。这些发现表明,用抗HCV药物靶向PI4K IIIα是一种可行的药物重新定位方法,可提高放射治疗的疗效。PI4K IIIα通过调节PI3Kδ的免疫调节功能提示了一种增强免疫检查点阻断放射增敏作用的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91ca/5746391/28d1f86896d2/oncotarget-08-110392-g001.jpg

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