PO.IM01.15 · 免疫学

一种新型抗PD-1/IL-15融合蛋白JMT108(SYS6090),具有高度选择性的PD-1⁺免疫细胞激活作用和强效抗肿瘤疗效

A novel anti-PD-1/IL-15 fusion protein JMT108 (SYS6090) with highly selective PD-1⁺ immune cell activation and potent anti-tumor efficacy

编号 4343 展板 14 时间 4/21 09:00–12:00 区域 Section 9 主讲 Feifei Zhang, PhD
分会场 Monoclonal Antibodies and Antibody-Cytokine Platforms
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作者与单位 Authors & Affiliations

Ke He, Yushan Kong, Jun Mu, Hongyan Wang, Yisha She, Yanfang Su, Yi Fan, Liping Song

CSPC Pharmaceutical Group Ltd., Shanghai, China

摘要 Abstract

中文摘要
引言:PD-1是一种在肿瘤微环境(TME)内耗竭T细胞上高表达的关键抑制性受体。PD-1阻断已在部分癌症患者中显示出持久的临床获益。然而,其有限的疗效和频繁的耐药性凸显了对改进方法以重振T细胞功能这一未满足临床需求。IL-15支持CD8⁺ T细胞和NK细胞的存活、增殖和细胞毒性,但由于快速清除和炎症毒性,其全身给药在肿瘤学中的应用价值有限。为应对这些挑战,我们开发了JMT108,一种PD-1靶向的抗体-细胞因子融合蛋白,包含一个减毒的IL-15突变体和IL15Ralpha sushi结构域。该设计实现了双重免疫调节活性:(i)PD-1检查点阻断;以及(ii)在TME内PD-1⁺免疫细胞中选择性顺式激活IL-15信号传导,在增强肿瘤特异性免疫的同时最大限度地降低全身毒性。 方法:采用标准化试验在人PBMC(PD-1⁻)和预激活T细胞(PD-1⁺)中体外测定免疫细胞增殖。在食蟹猴和人造血干细胞(hHSC)重建小鼠中评估体内对PD-1⁺相对于PD-1⁻亚群的选择性。在免疫人源化A375黑色素瘤和Huh-7肝细胞癌异种移植模型中检验抗肿瘤活性。在食蟹猴中表征PK/毒理学,并在PBMC中离体评估细胞因子释放潜能。 结果:JMT108对PD-1⁺ T细胞激活的选择性显著高于N-803,在初始PBMC中的效力低>10000倍。值得注意的是,它降低了活化CD8⁺ T细胞上的PD-1表达,这与N-803所观察到的上调形成对比。在hHSC小鼠中,JMT108诱导CD8⁺效应细胞(PD-1⁺)持续扩增,而不引起初始T细胞增殖。在食蟹猴中,它对PD-1⁺免疫细胞的扩增发挥了持久(>2周)的作用,而PD-1⁻亚群的增殖明显较低。JMT108在A375和Huh-7两种模型中均表现出优于抗PD-1抗体的抗肿瘤疗效,并伴随肿瘤浸润免疫群体的强劲扩增。JMT108在猴中表现出良好的PK特征,并在一项为期4周的GLP毒性研究中具有良好的耐受性,在hPBMC试验中炎性细胞因子诱导极小。 小结:JMT108是一种PD-1靶向的IL-15融合蛋白,可选择性激活PD-1⁺免疫细胞,下调活化/耗竭CD8⁺ T细胞上的PD-1,并驱动持续的效应细胞扩增,且脱靶增殖有限。它实现了比抗PD-1抗体更强的抗肿瘤疗效,具有良好的PK和安全性特征,以及低细胞因子释放风险。JMT108已进入I期临床试验(NCT06877650)。
查看英文原文 English abstract
Introduction: PD-1 is a key inhibitory receptor highly expressed on exhausted T cells within the tumor microenvironment (TME). PD-1 blockade has shown durable clinical benefit in a subset of cancer patients. However, its limited efficacy and frequent resistance highlight an unmet clinical need for improved approaches to reinvigorate T cell function. IL-15 supports survival, proliferation, and cytotoxicity of CD8⁺ T cells and NK cells, yet systemic delivery has shown limited oncology utility due to rapid clearance and inflammatory toxicity. To address these challenges, we developed JMT108, a PD-1 targeted antibody-cytokine fusion protein containing an attenuated IL 15 mutant and IL15Ralpha sushi domain. This design enables dual immunomodulatory activity: (i) PD-1 checkpoint blockade; and (ii) selective cis-activation of IL-15 signaling in PD-1⁺ immune cells within the TME, enhancing tumor specific immunity while minimizing systemic toxicity. Method: Immune cell proliferation was measured in vitro in human PBMCs (PD-1⁻) and pre-activated T cells (PD-1⁺) using standardized assays. In vivo selectivity for PD-1⁺ versus PD-1⁻ subsets was assessed in cynomolgus monkeys and human hematopoietic stem cell (hHSC) reconstituted mice. Anti-tumor activity was tested in immune-humanized A375 melanoma and Huh-7 hepatocellular carcinoma xenografts. PK/toxicology were characterized in cynomolgus monkeys, and cytokine release potential was evaluated ex vivo in PBMCs. Results: JMT108 showed markedly higher selectivity for PD-1⁺ T cell activation versus N-803, with >10,000 fold lower potency in naïve PBMCs. Notably, it reduced PD-1 expression on activated CD8⁺ T cells, in contrast to the upregulation observed with N-803. In hHSC-mice, JMT108 induced sustained expansion of CD8⁺ effector cells (PD-1⁺) without proliferation of naïve T cells. In cynomolgus monkeys, it exerted a long-lasting (>2 weeks) effect on the expansion of PD-1⁺ immune cells, with PD-1⁻ subsets showing markedly lower proliferation. JMT108 exhibited superior anti-tumor efficacy versus anti-PD-1 antibodies in both A375 and Huh-7 models, accompanied by robust expansion of tumor-infiltrating immune populations. JMT108 demonstrated a favorable PK profile in monkeys and was well tolerated in a 4-week GLP toxicity study, with minimal inflammatory cytokine induction in hPBMC assays. Summary: JMT108, a PD-1-targeted IL-15 fusion protein, selectively activates PD-1⁺ immune cells, downregulates PD-1 on activated/exhausted CD8⁺ T cells, and drives sustained effector cell expansion with limited off-target proliferation. It achieves greater anti-tumor efficacy than anti -PD-1 antibodies, with favorable PK and safety profile,and low cytokine release risk. JMT108 has been in Phase I clinical trial (NCT06877650).
利益披露 Disclosure
K. He, CSPC Pharmaceutical Group Ltd. Employment. Y. Kong, CSPC Pharmaceutical Group Ltd. Employment. J. Mu, CSPC Pharmaceutical Group Ltd. Employment. H. Wang, CSPC Pharmaceutical Group Ltd. Employment. Y. She, CSPC Pharmaceutical Group Ltd. Employment. Y. Su, CSPC Pharmaceutical Group Ltd. Employment. Y. Fan, CSPC Pharmaceutical Group Ltd. Employment. L. Song, CSPC Pharmaceutical Group Ltd. Employment.

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