PO.IM01.09 · 免疫学

ATG-125,一种新型B7H3 × PD-L1双特异性抗体药物偶联物,通过双靶向免疫逃逸和直接肿瘤杀伤展现出强效抗肿瘤疗效

ATG-125, a novel B7H3 × PD-L1 bispecific antibody-drug conjugate, demonstrates potent antitumor efficacy by dual targeting of immune evasion and direct tumor killing

海报缩略图:ATG-125,一种新型B7H3 × PD-L1双特异性抗体药物偶联物,通过双靶向免疫逃逸和直接肿瘤杀伤展现出强效抗肿瘤疗效
编号 5599 展板 18 时间 4/21 02:00–05:00 区域 Section 8 主讲 Bing Hou, PhD
分会场 T Cell Engagers 2 / Antibody-Drug Conjugates 1
查看 PDF 下载 PDF 🔒 查看 / 下载完整 PDF 需登录并开通下载套餐 · 查看套餐 / 开通 AACR 官方页面

作者与单位 Authors & Affiliations

Jishun Chen1, Suya Bai1, Yu Bai1, Huiling Liu1, Zaoshun Hu1, Jay Mei2, Peng Chen3, Bing Hou2

1Antengene (Hangzhou) Biologics Co., Ltd, Hangzhou, China,2Antengene Corporation, Shaoxing, China,3Shanghai Antengene Corporation Limited, Shanghai, China

摘要 Abstract

中文摘要
背景 B7-H3(CD276)和PD-L1(CD274)是在多种实体瘤中过表达的免疫检查点分子,常与免疫逃逸和不良预后相关。虽然靶向PD-1/PD-L1的单克隆抗体已取得临床成功,但耐药仍是一项重大挑战。由于B7-H3具有广泛的肿瘤表达和快速内化的特点,它是抗体药物偶联物(ADC)一个新兴且极具前景的靶点。B7-H3和PD-L1在肿瘤细胞上的共表达为双靶向以同时增强直接细胞毒性和免疫激活提供了理论依据。ATG-125是一种旨在应对这一机遇的新型双特异性ADC。 方法 ATG-125是一种B7-H3 × PD-L1双特异性ADC(BsADC),由人IgG1抗B7-H3抗体经工程改造并在C端融合PD-L1特异性scFv而成。它通过可切割的GGFG连接子与DNA拓扑异构酶I抑制剂偶联,产生约4的药物抗体比(DAR)。在具有不同B7-H3和PD-L1表达水平的实体瘤细胞系中评估了结合亲和力、细胞毒性、内化、溶酶体转运、旁观者杀伤和T细胞活化。在裸鼠中评估了ATG-125对HCC827人NSCLC模型的体内抗肿瘤疗效。 结果 ATG-125以纳摩尔级亲和力结合B7-H3和PD-L1,并在双靶点和单靶点阳性肿瘤细胞中展现出强烈的、抗原依赖的内化,从而实现Dxd载荷的高效胞内释放。ATG-125对共表达B7-H3和PD-L1的多种癌细胞系(如肺癌、乳腺癌、卵巢癌)表现出强效的、靶点依赖的细胞毒性。亲本裸抗体阻断了PD1-PDL1相互作用,并在混合淋巴细胞反应(MLR)实验中诱导了强烈的IL-2和IFNγ产生。BsADC诱导了显著增强的T细胞活化,表现为在与HCC827细胞和人PBMC共培养中CD69+ CD3+ T细胞频率更高。在体内,ATG-125在耐受良好的剂量下诱导HCC827异种移植模型中显著且持久的肿瘤消退。其疗效显著优于单靶点ADC对照物。 结论 ATG-125代表了一种新型双特异性ADC,共靶向B7-H3和PD-L1以实现协同的IO+ADC抗肿瘤疗效。其独特机制将增强的双靶点介导内化(用于更佳的载荷递送)与抗肿瘤免疫的潜在恢复相结合。ATG-125令人信服的临床前特征凸显了其重大的治疗潜力,并支持其推进至针对实体瘤患者的临床试验。
查看英文原文 English abstract
Background B7-H3 (CD276) and PD-L1 (CD274) are immune checkpoint molecules overexpressed in a wide range of solid tumors, often associated with immune evasion and poor prognosis. While monoclonal antibodies targeting PD-1/PD-L1 have shown clinical success, resistance remains a major challenge. B7-H3 is an emerging, highly promising target for antibody-drug conjugates (ADCs) due to its broad tumor expression and rapid internalization. Co-expression of B7-H3 and PD-L1 on tumor cells provides a rationale for dual targeting to enhance both direct cytotoxicity and immune activation. ATG-125 is a novel bispecific ADC designed to address this opportunity. Methods ATG-125 is a B7-H3 × PD-L1 bispecific ADC (BsADC) engineered from a human IgG1 anti-B7-H3 antibody with C-terminally fused PD-L1-specific scFv. It is conjugated via a cleavable GGFG linker to the DNA topoisomerase I inhibitor, resulting in a drug-to-antibody ratio (DAR) of ~4. Binding affinity, cytotoxicity, internalization, lysosomal trafficking, bystander killing, and T-cell activation were evaluated in solid tumor cell lines with varying expression levels of B7-H3 and PD-L1. The in vivo antitumor efficacy of ATG-125 against the HCC827 human NSCLC model was evaluated in nude mice. Results ATG-125 bound B7-H3 and PD-L1 with nanomolar affinity and demonstrated strong, antigen-dependent internalization in dual- and single-target positive tumor cells, enabling efficient intracellular release of the Dxd payload. ATG-125 exhibited potent, target-dependent cytotoxicity against multiple cancer cell lines (e.g., lung, breast, ovarian) that co-expressing B7-H3 and PD-L1. The parental naked antibody blocked PD1-PDL1 interaction and induced robust IL-2 and IFNgamma production in a Mixed Lymphocyte Reaction (MLR) experiment. The BsADC induced significantly enhanced T-cell activation, as shown by a higher frequency of CD69 + CD3 + T cells in a co-culture with HCC827 cells and human PBMCs. In vivo , ATG-125 induced marked and sustained tumor regression in HCC827 xenograft models at well-tolerated doses. Its efficacy was significantly superior to that of single-target ADC comparators. Conclusion ATG-125 represents a novel bispecific ADC that co-targets B7-H3 and PD-L1 to achieve synergistic IO+ADC antitumor efficacy. Its unique mechanism combines enhanced, dual-target-mediated internalization for superior payload delivery with potential restoration of anti-tumor immunity. The compelling preclinical profile of ATG-125 underscores its significant therapeutic potential and supports its advancement into clinical trials for patients with solid tumors.
利益披露 Disclosure
J. Chen, Antengene (Hangzhou) Biologics Co., Ltd Employment. S. Bai, Antengene (Hangzhou) Biologics Co., Ltd Employment. Y. Bai, Antengene (Hangzhou) Biologics Co., Ltd Employment. H. Liu, Antengene (Hangzhou) Biologics Co., Ltd Employment. Z. Hu, Antengene (Hangzhou) Biologics Co., Ltd Employment. J. Mei, Antengene Corporation Stock. P. Chen, Shanghai Antengene Corporation Limited Employment. B. Hou, Antengene Corporation Employment, Stock.

← 返回 AACR 2026 检索