PO.CT01.02 · 临床试验

针对长链非编码RNA TUG1的寡核苷酸疗法治疗复发性胶质母细胞瘤的研究者发起的I期试验

Investigator-initiated phase I trial of an oligonucleotide therapeutic targeting long noncoding RNA TUG1 for recurrent glioblastoma

编号 CT041 展板 1 时间 4/20 09:00–12:00 区域 Section 50 主讲 Keiko Shinjo, MD;PhD
分会场 First-in-Human Phase I Clinical Trials
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作者与单位 Authors & Affiliations

Ryuta Saito1, Fumiharu Ohka1, Yohei Mineharu2, Makoto Ohno3, Miho Suzuki1, Keiko Shinjo1, Shoichi Deguichi1, Yoshiki Shiba1, Aya Sato1, Yoshiki Arakawa2, Yoshitaka Narita3, Shiro Akinaga4, Yutaka Kondo1

1Nagoya University, Nagoya, Japan,2Kyoto University, Kyoto, Japan,3National Cancer Center Hospital, Tokyo, Japan,4NANO MRNA Co.,Ltd., Tokyo, Japan

摘要 Abstract

中文摘要
背景:胶质母细胞瘤(GB)被认为是成人中最难治疗的原发性恶性脑肿瘤。迄今为止,复发性GB(rGB)尚无有效治疗方法。牛磺酸上调基因1(TUG1)是一种在GB中高表达的长链非编码RNA,可消除R环形成,从而维持肿瘤增殖。TUG1靶向反义寡核苷酸(ASO)与Y形嵌段阳离子聚合物配制而成的TUG1ASO是一种新型核酸制剂,尺寸为18 nm,在原位小鼠GB模型中展现出临床前疗效。我们正在进行一项多中心I期试验,以确定TUG1ASO的安全性和最大耐受剂量(MTD)。 方法:本试验纳入了年龄18至75岁、在接受标准术后治疗(替莫唑胺放化疗)后复发的患者。主要终点为TUG1ASO的安全性和耐受性以及MTD。次要终点包括缓解率、缓解持续时间、无进展生存期(PFS)、总生存期(OS)和药代动力学。剂量递增采用3+3设计,设定四个剂量水平;以TUG1ASO活性成分计,水平1=0.1 mg/kg,水平2=0.3 mg/kg,水平3=0.6 mg/kg,水平4=1.0 mg/kg。除非满足终止标准,否则治疗给药4个周期,每个周期持续7天,并允许TUG1ASO给药直至满足终止标准。该试验目前正在进行中,但本报告呈现的是截至2025年12月24日数据截止日期的数据。 结果:迄今为止,本试验在水平1纳入4例,水平2纳入3例,水平3纳入6例,水平4纳入3例。导致给药延迟的不良事件包括3例白细胞减少、1例中性粒细胞减少、6例高甘油三酯血症、1例血胆固醇升高、1例高尿酸血症、1例咽炎和2例脑梗死。1例过敏反应导致治疗终止。其中,高尿酸血症(水平3)、1例脑梗死和过敏反应(水平4)为3级不良事件,被归类为剂量限制性毒性。所有病例均出现改善或恢复。中位mPFS为54天(范围:28至312天)。8例达到SD;作为最佳缓解,包括1例未确认的PR。药物暴露在剂量水平3以上呈非线性。 讨论:TUG1ASO是首个带有靶向TUG1药物递送系统的核酸疗法,有望对GBM有效。这项首次人体研究确定以TUG1ASO活性成分计0.6 mg/kg为最大耐受剂量(MTD)。该治疗已安全给药至MTD,并有确认的疗效病例。该疗法有望推动胶质母细胞瘤新治疗方法的开发。
查看英文原文 English abstract
Background: Glioblastoma (GB) is considered the most difficult-to-treat primary malignant brain tumor in adults. To date, there is no effective treatment for relapsed GB (rGB). Taurine-upregulated gene 1 (TUG1), a long noncoding RNA highly expressed in GB, resolves R-loop formation and thereby maintains tumor proliferation. TUG1 targeted antisense oligonucleotide (ASO) formulated with a Y-shaped block catiomer (TUG1ASO) is a novel nucleic acid formulation having 18 nm size, which demonstrates pre-clinical efficacy in orthotopic mouse GB models. We are conducting a multicenter Phase I trial to determine the safety and maximum tolerated dose (MTD) of TUG1ASO. Methods: This trial enrolled patients aged 18 to 75 years who relapsed after receiving standard postoperative treatment, chemoradiotherapy with temozolomide. The primary endpoints were the safety and tolerability of TUG1ASO and the MTD. Secondary endpoints included response rate, duration of response, progression-free survival (PFS), overall survival (OS), and pharmacokinetics. The dose escalation was conducted using a 3+3 design, with four dose levels established; level 1=0.1 mg/kg, level 2=0.3 mg/kg, level 3=0.6 mg/kg, and level 4=1.0 mg/kg as the active ingredient for TUG1ASO. Unless discontinuation criteria were met, treatment was administered for 4 cycles, each lasting 7 days, and TUG1ASO administration was permitted until discontinuation criteria were met. The test is currently ongoing, but this report presents the data as December 24, 2025 as the data cutoff date. Results: So far, this trial had enrolled 4 cases at Level 1, 3 cases at Level 2, 6 cases at Level 3, and 3 cases at Level 4. Adverse events leading to delayed administration included 3 cases of leukopenia, 1 case of neutropenia, 6 cases of hypertriglyceridemia, 1 case of increased blood cholesterol, 1 case of hyperuricemia, 1 case of pharyngitis, and 2 cases of cerebral infarction. One case of an allergic reaction led to discontinuation. Among these, hyperuricemia (Level 3), one case of cerebral infarction, and allergic reactions (Level 4) were Grade 3 adverse events and were classified as dose limiting toxicities. All cases showed improvement or recovery. The median mPFS was 54 days (range: 28 to 312 days). Eight cases achieved SD; including one with unconfirmed PR, as the best response. Drug exposure was non-linear beyond dose level 3. Discussion: TUG1ASO is the first nucleic acid therapeutics with a drug delivery system targeting TUG1, and is expected to be effective against GBM. This first-in-human study determined 0.6 mg/kg, as the active ingredient for TUG1ASO, as the maximum tolerated dose (MTD). The treatment has been safely administered up to MTD, with confirmed cases of efficacy. This therapy is expected to lead to the development of new treatments for glioblastoma.
利益披露 Disclosure
R. Saito, NANO MRNA Co.,Ltd. ). F. Ohka, None.. Y. Mineharu, None.. M. Ohno, None.. M. Suzuki, None.. K. Shinjo, None.. S. Deguichi, None.. Y. Shiba, None.. A. Sato, None.. Y. Arakawa, None.. Y. Narita, None. S. Akinaga, NANO MRNA Co.,Ltd. Employment. Y. Kondo, NANO MRNA Co.,Ltd. ).

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