PO.IM01.13 · 免疫学
BCG017的临床前评价:一种靶向PTK7和EGFR的新型双特异性ADC
Preclinical evaluation of BCG017, a novel bispecific ADC targeting PTK7 and EGFR
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:靶向关键致癌驱动因子EGFR的长期有效性可能受到获得性耐药以及靶向毒性相关担忧的限制。PTK7是受体酪氨酸激酶(RTK)家族的成员,在Wnt信号传导中发挥重要作用,并影响癌症进展和转移。PTK7在多种实体瘤中过表达,且已被证明可与EGFR的细胞外区域相互作用。BCG017是一种首创(first-in-class)的双特异性ADC,专门设计用于同时靶向EGFR和PTK7,旨在克服与EGFR相关的耐药机制,同时通过其双靶向策略增强肿瘤选择性。BCG017的骨架(PTK7×EGFR bsAb)采用全人源共同轻链RenLite®小鼠平台开发,其对PTK7的亲和力高于对EGFR的亲和力。该bsAb在多种癌细胞系中表现出强结合活性和有效内化,而单价EGFR抗体的能力则有所降低。此外,该bsAb在仅表达单一靶点的细胞系中表现出与单价抗体相当的疗效,提示其最佳功能依赖于两条臂的同时结合。
结果:随后将该bsAb与vcMMAE偶联。与基准治疗和亲本ADC相比,MMAE偶联物在PDX模型中表现出增强的疗效,即使在PTK7表达水平较低时亦如此。这些发现提示PTK7×EGFR bsADC通过靶向两种不同抗原具有协同效应,与单靶点ADC相比可能有助于有效应对肿瘤异质性。此外,虽然MMAE偶联物表现出最佳活性,其单价ADC对应物在PDX模型中却显示出疗效降低。这些结果凸显了同时结合bsADC两条臂以实现最大治疗效果的重要性。另外,这些发现表明其具有高度的肿瘤选择性,可能有助于减少正常组织中EGFR相关毒性。随后,BCG017与BLD1102(一种专有的拓扑异构酶1抑制剂(TOP1i)连接子-载荷)偶联。BCG017在代表多种表达EGFR和PTK7肿瘤类型的PDX模型中展现出强效的体内疗效,包括胃癌、结直肠癌、食管癌、乳腺癌和肺癌。在PDX模型中,使用相同bsAb骨架,BCG017始终表现出优于MMAE偶联物的疗效。BCG017在小鼠中表现出良好的药代动力学、在异种移植模型中有效的肿瘤递送以及良好的血浆稳定性。
结论:这些结果凸显了BCG017在临床前模型中的良好疗效,表明其肿瘤选择性得到改善,并提示其能够解决EGFR靶向疗法的局限性,同时为PTK7和EGFR共表达情形拓展治疗选择。
查看英文原文 English abstract
Background: The long-term effectiveness of targeting the key oncogenic driver EGFR can be limited by acquired drug resistance, along with concerns related to on-target toxicity. PTK7, a member of the receptor tyrosine kinase (RTK) family, plays a significant role in Wnt signaling and influences cancer progression and metastasis. PTK7 is overexpressed in various types of solid tumors and has been shown to interact with the extracellular region of EGFR. BCG017, a first-in-class bispecific ADC specifically designed to target both EGFR and PTK7, aims to overcome the resistance mechanisms associated with EGFR while enhancing tumor selectivity through its dual targeting approach.The BCG017 backbone (PTK7×EGFR bsAb) was developed using the fully human common light RenLite® mouse platform, and it exhibits a higher affinity for PTK7 than for EGFR. The bsAb showed strong binding activity and effective internalization in various cancer cell lines, while the monovalent EGFR antibody had reduced capabilities. Furthermore, the bsAb exhibited efficacy comparable to that of monovalent antibodies in cell lines expressing either target alone, suggesting that optimal function relies on the simultaneous binding of both arms.
Results: The bsAb was then conjugated to vcMMAE. The MMAE conjugate exhibited enhanced efficacy in PDX models compared to both benchmark treatments and parental ADCs, even when PTK7 expression levels were low. These findings suggest that the PTK7×EGFR bsADC has a synergistic effect by targeting two distinct antigens, which may help to effectively address tumor heterogeneity in comparison to single-target ADCs. Moreover, while the MMAE conjugate displayed optimal activity, its monovalent ADC counterparts showed reduced efficacy in PDX models. These results highlight the importance of engaging both arms of the bsADC to achieve maximal therapeutic effectiveness. Additionally, the findings indicate a high degree of tumor selectivity, which could potentially minimize EGFR-related toxicity in normal tissues.Then, BCG017 was conjugated with BLD1102, a proprietary topoisomerase 1 inhibitor (TOP1i) linker-payload. BCG017 demonstrated potent in vivo efficacy in PDX models representing various tumor types expressing both EGFR and PTK7, including gastric, colorectal, esophageal, breast, and lung cancers. BCG017 consistently showed superior efficacy to MMAE conjugate using the same bsAb backbone in PDX models. BCG017 exhibited favorable pharmacokinetics in mice, effective tumor delivery in a xenograft model, and good plasma stability.
Conclusion: These results highlight the promising efficacy of BCG017 in preclinical models, indicating improved tumor selectivity and suggesting that it could address the limitations of EGFR-targeting therapies while expanding treatment options for PTK7 and EGFR co-expressed settings.
利益披露 Disclosure
Z. Zeng, None..
N. Zhang, None..
C. Shang, None..
Y. Yang, None.