PO.ET01.03 · 实验与分子治疗

靶向LPAR1作为胶质母细胞瘤的潜在治疗策略

Targeting LPAR1 as a potential therapeutic strategy for glioblastoma

海报缩略图:靶向LPAR1作为胶质母细胞瘤的潜在治疗策略
编号 4535 展板 3 时间 4/21 09:00–12:00 区域 Section 16 主讲 Satoshi Takagi, PhD
分会场 Next-Generation Targeted Therapies Directed Against Tumor Surface Antigens
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作者与单位 Authors & Affiliations

Satoshi Takagi, Sumie Koike, Ryohei Katayama

Japanese Foundation for Cancer Research, Tokyo, Japan

摘要 Abstract

中文摘要
胶质母细胞瘤(GBM)是最具侵袭性的原发性脑肿瘤,尽管采用手术、放疗和化疗相结合的多模式治疗,其预后仍然很差,5年生存率为10%。由于其高度侵袭性,完全手术切除具有挑战性,使得术后放疗和化疗不可或缺。替莫唑胺(TMZ)是一种DNA烷化剂,仍是唯一获FDA批准的GBM治疗药物,因此有必要开发GBM的新型治疗药物。在本研究中,为鉴定GBM中的潜在治疗靶点,我们对G蛋白偶联受体(GPCRs)进行了基于siRNA的筛选,并鉴定出溶血磷脂酸受体1(LPAR1)为一个关键分子,其敲低显著降低了GBM细胞的活力。LPA是一种生物活性脂质介质,通过六种受体(LPAR1-6)进行信号传导,其中LPAR1尤其涉及细胞骨架重塑、迁移、增殖和分化。对TCGA数据的分析显示,与其他癌症类型相比,LPAR1在脑肿瘤中高表达。在体外,LPAR1敲低显著抑制细胞增殖,并在几种表达LPAR1的GBM细胞系中诱导PARP切割(凋亡的标志)。LPA处理以浓度依赖性方式增强LPAR1阳性GBM细胞系的增殖,而该效应可被LPAR1的遗传学和药理学抑制所消除。这些结果表明,LPA-LPAR1轴在促进GBM细胞增殖和存活中发挥关键作用。使用磷酸化激酶阵列和通路特异性抑制剂的进一步分析显示,LPAR1下游的PI3K/Akt信号通路参与了这些促存活效应。在原位GBM异种移植模型中,口服LPAR1拮抗剂BMS-986020显著抑制脑内肿瘤生长。此外,BMS-986020与TMZ的联合治疗在体外降低了TMZ的IC₅₀值,提示存在潜在的协同细胞毒性效应。我们此前已报道LPAR1拮抗剂作为骨肉瘤治疗药物的潜力(Takagi S等,Oncogene 2021);我们目前的研究结果提示LPAR1拮抗剂将成为GBM治疗的一种有前景的治疗选择。
查看英文原文 English abstract
Glioblastoma (GBM) is the most aggressive primary brain tumor, with a poor prognosis and a 5-year survival rate of 10%, despite multimodal treatment combining surgery, radiotherapy, and chemotherapy. Due to its high invasiveness, complete surgical resection is challenging, making postoperative radiotherapy and chemotherapy indispensable. Temozolomide (TMZ), a DNA alkylating agent, remains the only FDA-approved therapeutic agent for GBM, novel therapeutic agents for GBM are warranted. In this study, to identify potential therapeutic targets in GBM, we conducted an siRNA-based screening of G protein-coupled receptors (GPCRs) and identified lysophosphatidic acid receptor 1 (LPAR1) as a key molecule whose knockdown significantly reduced the GBM cell viability. LPA, a bioactive lipid mediator, signals through six receptors (LPAR1-6), with LPAR1 particularly implicated in cytoskeletal remodeling, migration, proliferation, and differentiation. Analysis of TCGA data revealed that LPAR1 is highly expressed in brain tumors compared to other cancer types. In vitro , LPAR1 knockdown significantly suppressed cell proliferation and induced PARP cleavage, a hallmark of apoptosis, in several GBM cell lines expressing LPAR1. LPA treatment enhanced proliferation of LPAR1-positive GBM cell lines in a concentration-dependent manner and this effect was cancelled by both genetic and pharmacological inhibition of LPAR1. These results indicate that the LPA-LPAR1 axis plays a critical role in promoting GBM cell proliferation and survival. Further analysis using phospho-Kinase arrays and pathway-specific inhibitors revealed that the PI3K/Akt signaling pathway downstream of LPAR1 is involved in these pro-survival effects. In an orthotopic GBM xenograft model, oral administration of the LPAR1 antagonist BMS-986020 significantly suppressed tumor growth in brain. Additionally, combinatorial treatment with BMS-986020 and TMZ lowered the IC ₅₀ value of TMZ in vitro , suggesting a potential synergistic cytotoxic effect. We have previously reported the potential of LPAR1 antagonists as therapeutic agents for osteosarcoma (Takagi S et al. Oncogene 2021); our current findings suggest that LPAR1 antagonists would be promising therapeutic option for GBM treatment.
利益披露 Disclosure
S. Takagi, None.. S. Koike, None. R. Katayama, Chugai Pharmaceutical Co., Ltd. ). Nippon Kayaku Co., Ltd. ). TOPPAN Inc. ). Eiken Chemical Co., Ltd. ). UBE Corp. ). BML Inc. ). Eiken Chemical Co., Ltd. Patent.

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