PO.CL05.08 · 临床研究

GS24-B047:一种整合共刺激信号、具有潜在同类最佳(best-in-class)性能的DLL3靶向T细胞衔接器,用于治疗小细胞肺癌

GS24-B047, a potential best-in-class DLL3-targeting T-cell engager with integrated costimulatory signal, for the treatment of small cell lung cancer

海报缩略图:GS24-B047:一种整合共刺激信号、具有潜在同类最佳(best-in-class)性能的DLL3靶向T细胞衔接器,用于治疗小细胞肺癌
编号 7778 展板 6 时间 4/22 09:00–12:00 区域 Section 43 主讲 Fu Li, PhD
分会场 Immunomodulatory Agents and Interventions
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作者与单位 Authors & Affiliations

Zeng Qi1, Fu Li1, Zhiyu Cui1, Hongmei Xie1, Sijia Liu1, Dechen Cao1, Liang Xu1, Yihui Lin1, Lishan Kang1, Siqin Wang1, Lei Jin2, John L. Xu2

1Changchun GeneScience Pharmaceutical Co., Ltd., Shanghai, China,2Changchun GeneScience Pharmaceutical Co., Ltd, Shanghai, China

摘要 Abstract

中文摘要
背景:小细胞肺癌(SCLC)仍是一种侵袭性恶性肿瘤,治疗选择有限、预后不良,尤其是在复发/难治情况下。DLL3是一种在SCLC细胞上高表达而在正常组织中表达极少的肿瘤相关抗原,是一个有前景的治疗靶点。虽然靶向DLL3和CD3的T细胞衔接器(TCEs),如Tarlatamab,已显示出临床活性,但在肿瘤微环境中维持T细胞功能仍具挑战性,无进展生存期(PFS)的改善也有限。GS24-B047是一种新型DLL3靶向TCE,整合了专有的共刺激信号,旨在增强T细胞激活和持久性,有望改善SCLC患者的临床疗效。 方法:通过表面等离子体共振(SPR)、Octet生物传感器和流式细胞术表征GS24-B047与DLL3、CD3及共刺激靶点的结合活性和特异性。在与人PBMCs和表达DLL3的SCLC细胞系的共培养实验中评估体外功能活性,测定T细胞激活、细胞因子释放和细胞毒性。在具有人免疫系统重建的SCLC细胞来源异种移植(CDX)模型中评估体内抗肿瘤疗效。 结果:GS24-B047以亚纳摩尔亲和力与DLL3结合,相比Tarlatamab识别一个不同的、更靠近膜近端的表位,并有效介导对肿瘤细胞上DLL3和T细胞上CD3的同时结合。在体外,GS24-B047诱导T细胞激活、增殖和细胞因子分泌,并对表达DLL3的SCLC细胞系表现出强效细胞毒性(EC50值处于皮摩尔范围)。GS24-B047显示出良好的治疗指数,肿瘤细胞杀伤与IL-6释放之比高。相比基准DLL3xCD3 TCE,整合的共刺激信号降低了T细胞耗竭标志物,支持更持久的T细胞反应。在体内,GS24-B047治疗在多个SCLC的CDX模型中导致显著且持久的肿瘤消退,相比临床基准显示出增强的抗肿瘤活性。 结论:GS24-B047是一种新型DLL3靶向TCE,整合了共刺激作用,在临床前SCLC模型中促进强效且持久的抗肿瘤免疫。总之,我们的数据支持GS24-B047作为SCLC的潜在治疗候选药物,值得在支持IND的研究中进一步评估。
查看英文原文 English abstract
Background: Small cell lung cancer (SCLC) remains an aggressive malignancy with limited therapeutic options and poor prognosis, particularly in the relapsed/refractory settings. DLL3, a tumor-associated antigen highly expressed on SCLC cells with minimal expression in normal tissues, represents a promising therapeutic target. While T-cell engagers (TCEs) targeting DLL3 and CD3, such as Tarlatamab, have demonstrated clinical activity, maintaining T-cell function in the tumor microenvironment remains challenging, and improvements in progression-free survival (PFS) have been limited. GS24-B047 is a novel DLL3-targeting TCE that incorporates a proprietary costimulatory signal designed to enhance T cell activation and persistence, with the potential to improve clinical efficacy in SCLC patients. Methods: Binding activity and specificity of GS24-B047 to DLL3, CD3, and the costimulatory target were characterized by surface plasmon resonance (SPR), Octet biosensor, and flow cytometry. In vitro functional activity was assessed in co-culture assays with human PBMCs and DLL3-expressing SCLC cell lines, measuring T cell activation, cytokine release, and cytotoxicity. In vivo anti-tumor efficacy was evaluated in SCLC cell-derived xenograft (CDX) models with human immune system reconstitution. Results: GS24-B047 bound to DLL3 with sub-nanomolar affinity, recognizing a distinct, more membrane-proximal epitope as compared to Tarlatamab, and effectively mediated simultaneous engagement of DLL3 on tumor cells and CD3 on T cells. In vitro , GS24-B047 induced T cell activation, proliferation, and cytokine secretion, and exhibited potent cytotoxicity against DLL3-expressing SCLC cell lines (with EC 50 values in the picomolar range). GS24-B047 demonstrated a favorable therapeutic index with a high ratio of tumor cell killing to IL-6 release. The integrated costimulatory signal reduced markers of T-cell exhaustion as compared to a benchmark DLL3xCD3 TCE, supporting a more sustained T-cell response. In vivo , GS24-B047 treatment resulted in significant and durable tumor regression in multiple CDX models of SCLC, showing enhanced anti-tumor activity when compared to clinical benchmarks. Conclusion: GS24-B047 is a novel DLL3-targeting TCE with integrated costimulation that promotes potent and sustained anti-tumor immunity in preclinical SCLC models. Collectively, our data support GS24-B047 as a potential therapeutic candidate for SCLC and warrant further evaluation in IND-enabling studies.
利益披露 Disclosure
Z. Qi, Changchun GeneScience Pharmaceutical Co., Ltd. Employment. F. Li, Changchun GeneScience Pharmaceutical Co., Ltd. Employment. Z. Cui, Changchun GeneScience Pharmaceutical Co., Ltd. Employment. H. Xie, Changchun GeneScience Pharmaceutical Co., Ltd. Employment. S. Liu, Changchun GeneScience Pharmaceutical Co., Ltd. Employment. D. Cao, Changchun GeneScience Pharmaceutical Co., Ltd. Employment. L. Xu, Changchun GeneScience Pharmaceutical Co., Ltd. Employment. Y. Lin, Changchun GeneScience Pharmaceutical Co., Ltd. Employment. L. Kang, Changchun GeneScience Pharmaceutical Co., Ltd. Employment. S. Wang, Changchun GeneScience Pharmaceutical Co., Ltd. Employment. L. Jin, Changchun GeneScience Pharmaceutical Co., Ltd Employment. J. Xu, Changchun GeneScience Pharmaceutical Co., Ltd Employment.

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