PO.IM01.16 · 免疫学

一个高通量荧光素酶癌细胞组合推动DLL3靶向TCE的发现

A high-throughput luciferase cancer cell panel driving DLL3-targeted TCE discovery

海报缩略图:一个高通量荧光素酶癌细胞组合推动DLL3靶向TCE的发现
编号 1638 展板 30 时间 4/20 09:00–12:00 区域 Section 10 主讲 Tj (Tiejun) Bing, Dr PH
分会场 T Cell Engagers 1
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作者与单位 Authors & Affiliations

Chen Cai, Yue Zhai, Kejun Mao, Yixiao Zhao, Mingying Li, Qian Wang, Yan Zhang, Lili Chai, Tj (Tiejun) Bing

ICE Bioscience, Beijing, China

摘要 Abstract

中文摘要
背景:T细胞衔接器(TCE)已迅速成为焦点,作为下一代免疫疗法而备受赞誉,其优势包括:(1)"即用型"的便利性;(2)双臂精准性,重新导向而非重新改造患者自身的T细胞;(3)即使在传统检查点阻断失败后仍能实现深度、持久应答的能力。实体瘤TCE开发如今已成为一个主要前沿领域,然而传统检测局限于少数细胞系,通量有限,无法探究完整的抗原表达谱,为候选物的筛选分诊留下了盲区。为弥补这一空白,我们选择了delta样配体3(DLL3)——一种胚胎期Notch抑制因子,其在高级别神经内分泌肿瘤中被转录性重新激活,但在正常成人组织中缺失——并构建了一个完全整合的发现平台,以一个由20个成员组成的荧光素酶报告基因肿瘤组合为核心,系统性地重现了临床相关的表达梯度。方法:该平台融合四个模块:(1)通过SPR结合动力学和基于细胞的亲和力筛选进行生物物理表征;(2)平行的2D/3D肿瘤共培养检测以及ICI联合,以评估T细胞介导的细胞毒性;(3)多参数T细胞激活读出(CD69/CD25、增殖);以及(4)10重细胞因子释放检测,以绘制与安全性相关的炎症特征谱。结果:在此,我们利用一个多样化的荧光素酶-神经内分泌细胞组合展示了若干DLL3靶向TCE。临床前研究证明了它们在跨癌种的DLL3+细胞系中的结合、激活、抗肿瘤活性和T细胞扩增,并与其对DLL3-细胞系的减弱影响形成对照。结论:该平台能够在完整的抗原表达谱范围内对TCE进行高通量评估,系统性地将靶标密度与治疗活性和安全性结果联系起来。通过将靶标密度与TCE性能联系起来,该系统指导候选物选择并加速实体瘤TCE开发,同时可轻松适配其他抗原。
查看英文原文 English abstract
Background: T-cell engagers (TCEs) have rapidly moved into the spotlight as a next-generation immunotherapy, lauded for their (1) “off-the-shelf” convenience, (2) dual-arm precision that re-directs, rather than re-engineers, a patient's own T cells, and (3) capacity to deliver deep, durable responses even after conventional checkpoint blockade has failed. Solid-tumor TCE development is now a major frontier, yet conventional assays-confined to few cell lines-offer limited throughput and cannot probe the full antigen expression spectrum, leaving a blind spot for candidate triage. To close this gap, we selected delta-like ligand 3 (DLL3)-an embryonic Notch inhibitor that is transcriptionally resurrected in high-grade neuroendocrine tumors yet absent from normal adult tissues-and constructed a fully integrated discovery platform anchored by a 20-member luciferase-reporter tumor panel that systematically recapitulates clinically relevant expression gradients. Methods : The platform merges four modules: (1) biophysical profiling via SPS binding kinetics and cell-based affinity screens; (2) parallel 2-D/3-D tumor co-culture assays as well as ICI combination to evaluate T-cell mediated cytotoxicity; (3) multiparametric T-cell activation readouts (CD69/CD25, proliferation); and (4) 10-plex cytokine release assays to map safety-relevant inflammatory signatures. Results Here we showcase several DLL-3 targeting TCEs using a diverse luciferase-neuroendocrine cell panel. Preclinical studies demonstrate their binding, activation, antitumor activity, and T cell expansion in DLL3+ cell lines across cancer types, juxtaposed with a diminished impact on DLL3- cell lines. Conclusions: This platform enables high-throughput evaluation of TCEs across the full antigen expression spectrum, systematically linking target density to therapeutic activity and safety outcomes. By linking target density to TCE performance, this system guides candidate selection and accelerates solid-tumour TCE development, while being readily adaptable to other antigens.
利益披露 Disclosure
C. Cai, None.. Y. Zhai, None.. K. Mao, None.. Y. Zhao, None.. M. Li, None.. Q. Wang, None.. Y. Zhang, None.. L. Chai, None.. T. Bing, None.

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