PO.CL05.07 · 临床研究

PD-L1依赖性的4-1BB共刺激作为单药或与tarlatamab联合使用可增强抗肿瘤疗效和T细胞持久性

PD-L1-dependent 4-1BB costimulation enhances anti-tumor efficacy and T cell persistence as monotherapy or in combination with tarlatamab

海报缩略图:PD-L1依赖性的4-1BB共刺激作为单药或与tarlatamab联合使用可增强抗肿瘤疗效和T细胞持久性
编号 7762 展板 22 时间 4/22 09:00–12:00 区域 Section 42 主讲 Sungeun Kim, PhD
分会场 Immune Response to Therapies
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作者与单位 Authors & Affiliations

Felipe Vences Catalan1, Willy Tsai1, Wendy Chen1, Anja Henn2, Kevin Cook1, Maryam Yousefi3, Tanya Vagner3, Andrew Jimena1, Khushboo Sharma4, Deepali Sawant1, Jason DeVoss1, Matthias Friedrich2, Mithun Khattar1, Julie Bailis1, Andrew Rankin1, Sungeun Kim1

1Amgen Research, Amgen, Inc., South San Francisco, CA,2Amgen Research, Amgen, Inc., Munich, Germany,3Research biomarkers, Amgen, Inc., South San Francisco, CA,4Precision Medicine, Amgen, Inc., South San Francisco, CA

摘要 Abstract

中文摘要
双特异性T细胞衔接器(TCEs)通过重定向T细胞以清除肿瘤细胞,已展现出变革性的临床疗效。然而,临床结果凸显了进一步增强治疗获益的机会,尤其是通过提高总体应答率和应答持久性。TCEs对CD3的持续衔接可导致T细胞耗竭,从而使效应功能减弱和持久性降低。为应对这些挑战,我们开发了AMG 728,一种靶向PD-L1的4-1BB双特异性分子,旨在增强T细胞抗肿瘤活性和持久性。AMG 728同时阻断PD-1/PD-L1抑制性信号,并以PD-L1依赖的方式激活4-1BB共刺激信号。这一双重机制旨在增强T细胞激活和持久性,同时最大限度地降低与全身性4-1BB激动相关的免疫激活和脱靶毒性风险。通过将TCEs介导的CD3信号与AMG 728提供的4-1BB共刺激相结合,我们旨在充分激活T细胞,从而促进细胞溶解性效应分化、改善生存并扩增记忆T细胞群。在携带同基因、表达人PD-L1肿瘤的人PD-L1/4-1BB双敲入小鼠模型中,一种小鼠替代性PD-L1-4-1BB双特异性分子作为单药展现出剂量依赖性的抗肿瘤疗效。对该替代分子的机制表征进一步揭示了体内若干潜在的药效学生物标志物,包括CD8⁺T细胞增殖增加、引流淋巴结中中央记忆T细胞的扩增、肿瘤内细胞溶解性效应T细胞分化增强以及可溶性4-1BB水平升高。此外,评估了AMG 728在体外及在T细胞人源化小细胞肺癌(SCLC)临床前小鼠模型中提高tarlatamab(一种DLL3靶向双特异性TCE)疗效的潜力。在PD-L1阳性肿瘤上选择性的4-1BB激动增强了tarlatamab在体外的细胞毒活性。在植入NSG小鼠的人PD-L1过表达SHP-77 SCLC异种移植瘤中,与任一单药相比,以次优剂量联合使用AMG 728和tarlatamab可显著提高肿瘤生长抑制、延长生存并提高完全缓解的频率。值得注意的是,AMG 728处理导致tarlatamab治疗小鼠肿瘤中的中央记忆T细胞显著增加。总之,这些发现提示,在tarlatamab基础上加入AMG 728是一种合理的联合策略,可增强T细胞激活和寿命,从而改善抗肿瘤活性和生存。
查看英文原文 English abstract
Bispecific T-cell engagers (TCEs) have demonstrated transformative clinical efficacy by redirecting T cells to eliminate tumor cells. However, clinical outcomes highlight opportunities to further enhance therapeutic benefits, particularly by improving overall response rates and durability of responses. Sustained CD3 engagement by TCEs can lead to T cell exhaustion, resulting in diminished effector function and reduced persistence. To address these challenges, we developed AMG 728, a PD-L1-targeted 4-1BB bispecific molecule designed to enhance T cell anti-tumor activity and persistence. AMG 728 simultaneously blocks PD-1/PD-L1 inhibitory signaling and activates 4-1BB costimulatory signaling in a PD-L1-dependent manner. This dual mechanism is intended to enhance T cell activation and persistence while minimizing the risk of immune activation and off-tumor toxicity associated with systemic 4-1BB agonism. By combining the CD3-mediated signaling from TCEs with 4-1BB costimulation provided by AMG 728, we aimed to fully activate T cells, thereby promoting cytolytic effector differentiation, improving survival, and expanding memory T cell populations. A mouse surrogate PD-L1-4-1BB bispecific molecule demonstrated dose-dependent anti-tumor efficacy as a monotherapy in a human PD-L1/4-1BB double knock-in mouse model bearing syngeneic, human PD-L1-expressing tumors. Mechanistic characterization of this surrogate molecule further revealed several potential pharmacodynamic biomarkers in vivo , including increased CD8 + T cell proliferation, expansion of central memory T cells in draining lymph nodes, enhanced cytolytic effector T cell differentiation within tumors, and elevated levels of soluble 4-1BB. Furthermore, AMG 728 was evaluated for its potential to improve the efficacy of tarlatamab, a DLL3-targeted bispecific TCE in vitro and in a T cell humanized small cell lung cancer (SCLC) preclinical mouse model. Selective 4-1BB agonism on PD-L1-positive tumors enhanced the cytotoxic activity of tarlatamab in vitro . In the human PD-L1-overexpressing SHP-77 SCLC xenograft implanted in NSG mice, combination treatment with AMG 728 and tarlatamab at suboptimal doses resulted in significantly greater tumor growth inhibition, extended survival, and a higher frequency of complete responses, compared with either monotherapy. Notably, AMG 728 treatment led to a significant increase in central memory T cells in the tumors from tarlatamab-treated mice. Collectively, these findings suggest that the addition of AMG 728 to tarlatamab represents a rational combination strategy that enhances T cell activation and longevity, resulting in improved antitumor activity and survival.
利益披露 Disclosure
F. Vences Catalan, None.. W. Tsai, None.. W. Chen, None.. A. Henn, None.. K. Cook, None.. M. Yousefi, None.. T. Vagner, None.. A. Jimena, None.. K. Sharma, None.. D. Sawant, None.. J. DeVoss, None.. M. Friedrich, None.. M. Khattar, None.. J. Bailis, None.. A. Rankin, None.. S. Kim, None.

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