研究概要
有效且持续抑制表皮生长因子受体(EGFR)信号传导对于抑制结直肠癌(CRC)生长至关重要,然而当前的EGFR治疗常受限于不完全的EGFR阻断以及靶向/脱靶毒性,尤其是皮疹。
中文摘要
强效且持续抑制表皮生长因子受体(EGFR)信号传导对于抑制结直肠癌(CRC)生长至关重要,然而当前的EGFR疗法往往受限于不完全的EGFR阻断以及靶向/脱靶毒性,尤其是皮疹。在此,我们通过一种双特异性抗体(bsAb)共靶向EGFR和cadherin-17(CDH17),通过降低皮肤相关毒性并实现优于EGFR或c-MET/EGFR靶向抗体的肿瘤生长抑制,克服了这些局限。在机制上,高亲和力的CDH17结合臂将EGFR/CDH17 bsAb锚定在肿瘤细胞表面,促进其快速结合未结合或新合成的EGFR。这种“锚定与捕获”机制使EGFR/CDH17 bsAb能够实现优于cetuximab和amivantamab且更持久的EGFR通路抑制。进一步引入抗CD16A纳米抗体,将EGFR/CDH17 bsAb转化为三特异性自然杀伤(NK)细胞衔接器。广泛的格式筛选显示,NK细胞活化在很大程度上受肿瘤抗原结合Fab与抗CD16A纳米抗体之间空间距离的影响,较长的距离会削弱体积较大的CD45磷酸酶从免疫突触中的排除,从而导致细胞毒性显著降低。因此,广泛采用的Morrison型抗体相比具有更短CD16A-TAA-Fab间距的结构始终表现较差。最终优化的分子为IBI3019,这是一种CDH17/EGFR/CD16A三特异性抗体,将强效的CDH17增强型EGFR阻断与用于高效NK细胞衔接的最佳结构整合在一起。它在食蟹猴中表现出优越的体内疗效和良好的安全性特征,未观察到皮肤毒性。这些有前景的临床前发现支持IBI3019的临床开发。
展开英文摘要原文
Potent and sustained inhibition of epidermal growth factor receptor (EGFR) signaling is critical for suppressing colorectal cancer (CRC) growth, yet current EGFR therapies are often limited by incomplete EGFR blockade and on-target/off-tumor toxicities, particularly skin rash. Here, we co-targeted EGFR and cadherin-17 (CDH17) with a bispecific antibody (bsAb), overcoming these limitations by reducing skin-related toxicities and achieving superior tumor growth inhibition compared to EGFR- or c-MET/EGFR-targeting antibodies. Mechanistically, the high-affinity CDH17-binding arm anchored the EGFR/CDH17 bsAb to the tumor cell surface, facilitating rapid engagement of unbound or newly synthesized EGFR. This "anchor and capture" mechanism allowed the EGFR/CDH17 bsAb to achieve superior and more sustained suppression of the EGFR pathway than cetuximab and amivantamab. Further incorporation of an anti-CD16A nanobody transformed the EGFR/CDH17 bsAb into a trispecific natural killer (NK)-cell engager. Extensive format screening revealed that NK cell activation is heavily influenced by the spatial distance between the tumor antigen-binding Fab and the anti-CD16A nanobody, with longer distances impairing the bulky CD45 phosphatase exclusion from the immunological synapse and leading to significantly reduced cytotoxicity. Consequently, the widely adopted Morrison-type antibody consistently underperformed compared to architectures with shorter CD16A-TAA-Fab spacing. The final optimized molecule was IBI3019, a CDH17/EGFR/CD16A trispecific antibody that integrates potent CDH17-enhanced EGFR blockade with optimal architecture for efficient NK cell engagement. It demonstrated superior in vivo efficacy and a good safety profile in cynomolgus monkeys, with no observable skin toxicity. These promising pre-clinical findings warrant the clinical development of IBI3019. .
论文信息
- 作者
- Liu J、Ma J、Lin S、Dai W、Lu J、Wu M、Wang Y、Zheng H
- 单位
- Innovent Biologics Suzhou China.China
- 期刊
- Cancer research2026 Sep 1