PO.IM01.15 · 免疫学
基于冷冻电镜的IMC-002结构表征——一种具有独特结合位点和候选生物标志物的下一代抗CD47抗体,支持其增强安全性和疗效的证据
Cryo EM-based structural characterization of IMC-002, a next-generation anti-CD47 antibody with a unique binding site and biomarker candidates, supporting evidence of enhanced safety and efficacy
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摘要 Abstract
中文摘要
CD47是一种普遍表达的跨膜糖蛋白,与巨噬细胞上的SIRPα相互作用以传递"别吃我"信号,从而抑制吞噬作用。肿瘤细胞上调CD47以逃避免疫监视,这与不良的临床结局相关。因此,CD47-SIRPα轴已成为癌症免疫治疗的一个有前景的靶点。然而,CD47阻断的临床开发因血液学毒性以及正常细胞(尤其是红细胞,RBCs)上高CD47表达所致的快速药物清除而受阻。IMC-002是一种针对CD47的全人源IgG4单克隆抗体,其开发旨在实现平衡治疗疗效与安全性的优化亲和力。与Hu5F9和13H3相比,IMC-002显示出显著增强的肿瘤细胞选择性,且RBC结合极少。此外,与Hu5F9不同,IMC-002不诱导RBC吞噬和血凝。IMC-002的肿瘤选择性和缺乏RBC结合似乎源于其结合位点的差异。冷冻电子显微镜(cryo-EM)揭示了在含有预测O-糖基化位点的残基附近的独特结合界面,这不同于竞争性抗体的结合模式。如AACR 2025所报道,去糖基化研究也支持这种糖基化依赖性的结合选择性。生化和结构研究的结果解释了IMC-002在其临床试验中降低的血液学毒性和增强的肿瘤选择性。1a期数据证实了良好的安全性特征,1b期的肝细胞癌(HCC)队列已完成。一项正在进行的1b期试验正在评估其与标准治疗(SoC)联合在三阴性乳腺癌(TNBC)和胆道癌(BTC)队列中的疗效。IMC-002与标准治疗药物联合在体外增强了巨噬细胞介导的吞噬和T细胞激活,并在HCC异种移植模型中显示出强效抗肿瘤活性,与肿瘤CD47表达相关。在一项1b期试验(NCT05276310)中,对HCC患者样本进行的基于适配体的蛋白质组学和AI辅助IHC分析鉴定出与IMC-002疗效和巨噬细胞相关特征相关的候选生物标志物,提示其可用于患者选择。总之,IMC-002的癌症选择性结合特征在于其结合位点靠近预测的O-糖基化区域,这一点得到生化和结构研究的支持。通过蛋白质组学和基于AI的IHC研究鉴定的若干因素显示出作为预测性生物标志物候选的潜在可能性。IMC-002在临床试验中通过其独特的结合机制展示了出色的疗效和安全性,支持其作为有前景的癌症治疗继续进行临床开发。
查看英文原文 English abstract
CD47 is a ubiquitously expressed transmembrane glycoprotein that interacts with SIRPalpha on macrophages to deliver a “don't eat me” signal, thereby inhibiting phagocytosis. Tumor cells upregulate CD47 to evade immune surveillance, which correlates with poor clinical outcomes. Consequently, the CD47-SIRPalpha axis has emerged as a promising target for cancer immunotherapy. However, clinical development of CD47 blockade has been hampered by hematologic toxicities and rapid drug clearance due to high CD47 expression on normal cells, particularly red blood cells (RBCs). IMC-002 is a fully human IgG4 monoclonal antibody against CD47, developed to achieve an optimized affinity that balances therapeutic efficacy with safety. IMC-002 shows markedly enhanced tumor-cell selectivity with minimal RBC binding, compared with Hu5F9 and 13H3. Moreover, unlike Hu5F9, IMC-002 did not induce RBC phagocytosis and hemagglutination. The tumor selectivity and lack of RBC binding by IMC-002 appear to result from differences in its binding site. Cryo-electron microscopy (cryo-EM) revealed a unique binding interface near residues containing a predicted O-glycosylation site, which is distinct from the binding modes of competitive antibodies. De-glycosylation study also supported this glycosylation-dependent binding selectivity, as reported at AACR 2025. The results from biochemical and structural studies explaining IMC-002's reduced hematologic toxicity and enhanced tumor selectivity in its clinical trials. Phase 1a data confirmed a favorable safety profile, and a hepatocellular carcinoma (HCC) cohort in phase 1b has been completed. An ongoing Phase 1b trial is evaluating its efficacy in triple-negative breast cancer (TNBC) and biliary tract cancer (BTC) cohorts in combination with standard of care (SoC). IMC-002 in combination with standard-of-care agents enhanced macrophage-mediated phagocytosis and T-cell activation in vitro and showed potent anti-tumor activity in HCC xenograft model, correlating with tumor CD47 expression. In a Phase 1b (NCT05276310), aptamer-based proteomic and AI-assisted IHC analyses of HCC patient samples identified candidate biomarkers associated with IMC-002 efficacy and macrophage-related signatures, suggesting their use in patient selection. In conclusion, the cancer-selective binding of IMC-002 is characterized by binding sites located proximal to a predicted O-glycosylation region, as supported by biochemical and structural studies. Several factors identified through proteomics and AI-based IHC studies showed potential possibilities as predictive biomarker candidates. IMC-002 demonstrated excellent efficacy and safety in clinical trials through its unique binding mechanism, supporting its continued clinical development as a promising cancer therapy.
利益披露 Disclosure
H. Lee,
ImmuneOncia Therapeutics, Inc. Employment.
J. Choi,
ImmuneOncia Therapeutics, Inc. Employment.
H. Jang,
ImmuneOncia Therapeutics, Inc. Employment.
H. Shin,
ImmuneOncia Therapeutics, Inc. Employment.
J. Yoon,
ImmuneOncia Therapeutics, Inc. Employment.
W. Hwang,
Lunit Inc. Employment.
S. Kim,
ImmuneOncia Therapeutics, Inc. Employment.
H. Kim,
ImmuneOncia Therapeutics, Inc. Board of Directors.