PO.CTP01.03 · 进行中的临床试验
一项关于ENPP1抑制剂vizenpistat联合botensilimab和balstilimab在难治性转移性微卫星稳定型结直肠癌受试者中的1b/2期研究进展报告
A progress report for a Phase 1b/2 study of ENPP1 inhibitor, vizenpistat in combination with botensilimab and balstilimab in subjects with refractory metastatic microsatellite stable colorectal cancer
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摘要 Abstract
中文摘要
背景:微卫星稳定型(MSS)结直肠癌(CRC)约占CRC总人群的85%,其结局依然较差,五年生存率停滞在约13%。这凸显了显著的未满足需求,尤其是在晚期疾病患者中。MSS CRC的特征是免疫惰性的肿瘤环境,对免疫检查点抑制剂(ICI)等标准疗法的反应有限。一项2期研究(NCT03860272)报告了在MSS CRC中的临床活性,该研究评估了新一代CTLA-4抑制剂botensilimab(bot)与PD-1抑制剂balstilimab(bal)联合用于经过大量预治疗的转移性疾病患者。该方案显示出可管理的安全性特征和持久的疾病控制,尤其是在无活动性肝转移的患者中。约70%的患者达到疾病稳定或更好,客观缓解率为17-19%,肿瘤负荷减轻,并在部分病例中出现近乎完全缓解。虽然这些发现较现有标准治疗有所改善,但很大比例的患者,无论有无肝转移,仍对免疫治疗无应答。新兴数据提示,对适应性免疫治疗的有效应答取决于肿瘤微环境中先天免疫信号的成功激活。在MSS CRC中,先天免疫激活不足导致抗原呈递受损、树突状细胞启动有限以及T细胞募集不足,进一步限制了检查点阻断的活性。先天免疫信号由干扰素基因刺激因子(STING)通路介导,该通路受外核苷酸焦磷酸酶/磷酸二酯酶1(ENPP1)通过水解2′3′-cGAMP进行负调控。作为STING信号的直接抑制因子,抑制ENPP1代表了一种增强先天免疫激活的临床相关策略。此前,我们报告了临床候选药物vizenpistat(SR-8541A)的开发,它是一种强效、口服生物利用度良好的ENPP1抑制剂。在此,我们报告vizenpistat联合bot和bal在MSS CRC中正在进行研究的初步发现。
研究设计:这项1b/2期研究(NCT06589440)正在评估口服vizenpistat联合bot和bal在难治性转移性MSS CRC患者中的安全性、耐受性、药代动力学(PK)和疗效。研究的主要目的是表征该联合方案的安全性、耐受性和疗效,并确定vizenpistat的最佳剂量,该药以28天治疗周期每日两次口服给药。迄今为止,已成功完成五个vizenpistat剂量递增队列。采集血样用于PK分析、靶点结合和生物标志物评估。
查看英文原文 English abstract
Background: Microsatellite stable (MSS) colorectal cancer (CRC) comprises approximately 85% of the total CRC population and outcomes remain poor with five-year survival rates plateauing at roughly 13%. This highlights a significant unmet need, particularly in patients with advanced disease. MSS CRC is characterized by immunologically inactive tumor environments and shows limited response to standard therapies like immune checkpoint inhibitors (ICIs). Clinical activity in MSS CRC was reported in a Phase 2 study (NCT03860272) evaluating the combination of the next-generation CTLA-4 inhibitor botensilimab (bot) with the PD-1 inhibitor balstilimab (bal) in heavily pretreated patients with metastatic disease. The regimen demonstrated a manageable safety profile and durable disease control, particularly among patients without active liver metastases. Approximately 70% of patients achieved stable disease or better, with objective response rates of 17-19%, reductions in tumor burden, and near complete responses in select cases. While these findings represent an improvement over existing standards of care, a large proportion of patients, both with and without liver mets, remain unresponsive to immune therapy. Emerging data suggests that effective responses to adaptive immune therapies depend on successful engagement of innate immune signaling within the tumor microenvironment. In MSS CRC, insufficient innate immune activation contributes to impaired antigen presentation, limited dendritic cell priming, and inadequate T-cell recruitment, further constraining the activity of checkpoint blockade. Innate immune signaling is mediated by the STimulator of INterferon Genes (STING) pathway, which is negatively regulated by ectonucleotide pyrophosphatase/phosphodiesterase 1 (ENPP1) through hydrolysis of 2′3′-cGAMP. As a direct suppressor of STING signaling, ENPP1 inhibition represents a clinically relevant strategy to enhance innate immune activation. Previously, we reported the development of a clinical candidate, vizenpistat (SR-8541A), a potent, orally bioavailable ENPP1 inhibitor. Here, we report initial findings from the ongoing study of vizenpistat in combination with bot and bal in MSS CRC.
Study Design: This Phase 1b/2 study (NCT06589440) is evaluating the safety, tolerability, pharmacokinetics (PK), and efficacy of vizenpistat administered orally in combination with bot and bal in patients with refractory metastatic MSS CRC. The primary study objective is to characterize the safety, tolerability, and efficacy of the combination and to define the optimal dose of vizenpistat, which is administered orally twice daily in 28-day treatment cycles. To date, five vizenpistat dose escalation cohorts have been successfully completed. Blood samples are collected for PK analysis, target engagement, and biomarker assessment.
利益披露 Disclosure
A. S. Larsen,
Stingray Therapeutics Employment, Stock, Stock Option, Travel.
M. R. Kaadige,
Stingray Therapeutics Employment, Stock, Stock Option.
T. Thode,
Stingray Therapeutics Employment, Stock, Stock Option.
M. Steinbach,
Stingray Therapeutics Employment.
S. Houston,
Stingray Therapeutics Independent Contractor, Stock.
J. Northrup,
Stingray Therapeutics Employment, g., Board of Directors, non-salaried role), Stock, Stock Option.
S. Sharma,
Stingray Therapeutics g., Board of Directors, non-salaried role), Stock, Stock Option.