PO.IM01.13 · 免疫学
BCG029:一种靶向ADAM9、搭载新型拓扑异构酶I抑制剂载荷的ADC,在PDX模型中展现出强效疗效
BCG029: An ADAM9-Targeting ADC Featuring a Novel Topoisomerase I Inhibitor Payload Demonstrated Potent Efficacy in PDX Models
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
ADAM9(去整合素和金属蛋白酶9)是一种膜锚定蛋白,对多种生理功能至关重要,主要通过其去整合素结构域介导黏附以及金属蛋白酶结构域介导细胞表面蛋白的胞外域脱落。其在多种癌症中过表达,包括胰腺癌、食管癌、乳腺癌、胃癌、肺癌和结直肠癌,与肿瘤侵袭性增强和预后不良相关。尽管ADAM9是ADC开发的一个有前景靶点,但其在人体组织及免疫细胞(如单核细胞、巨噬细胞和中性粒细胞)中的表达带来了挑战。这种重叠表达增加了脱靶效应和对正常组织毒性的风险,可能阻碍靶向ADAM9的ADC疗法的疗效和安全性。
因此,我们利用全人源RenLite ADAM9敲除(KO)小鼠开发了一个ADAM9克隆Ab.01。Ab.01特异性结合ADAM9-L的近膜区,而忽略分泌型异构体ADAM9-S。该克隆靶向ADAM9且不与其他ADAM家族成员交叉反应,这一特异性已用ADAM9 KO细胞系得到证实。此外,Ab.01对一组癌症细胞系表现出广泛的结合活性。Ab.01还显示出有效的内化活性。此外,在PBMC结合实验中,Ab.01相较于基准抗体对髓系细胞表现出极低的结合活性。这一观察表明Ab.01可能减少脱靶相互作用,凸显其在治疗应用中改善特异性的潜力。
与vcMMAE偶联的Ab.01在多个PDX模型中相较于偶联相同载荷的基准抗体展现出更优的疗效。随后将Ab.01与新型Top1抑制剂BLD1102偶联,形成BCG029,其在PDX模型中展现出强效疗效。正在进行的体内研究持续评估BCG029的表现。
这些发现凸显了BCG029在靶向表达ADAM9的实体瘤方面的治疗潜力。通过特异性靶向ADAM9,BCG029可为ADAM9表达肿瘤患者提供一种更安全、更有效的治疗选择。
查看英文原文 English abstract
ADAM9 (A disintegrin and metalloprotease 9) is a membrane-anchored protein that is crucial for various physiological functions, mainly through its disintegrin domain for adhesion and metalloprotease domain for ectodomain shedding of cell surface proteins. Its overexpression in various cancers, including pancreatic, esophageal, breast, gastric, lung, and colorectal cancers, is linked to increased tumor aggressiveness and poor prognosis. Although ADAM9 is a promising target for ADC development, its expression in human tissues and immune cells, such as monocytes, macrophages, and neutrophils, poses challenges. This overlapping expression raises the risk of off-target effects and toxicity to normal tissues, which may hinder the efficacy and safety of ADC therapies targeting ADAM9.
Therefore, we have developed an ADAM9 clone, Ab.01, utilizing the fully human RenLite ADAM9 knockout (KO) mice. Ab.01 specifically binds to the membrane-proximal region of ADAM9-L while disregarding the secreted isoform, ADAM9-S. This clone targets ADAM9 without cross-reactivity to other ADAM family members, a specificity confirmed using an ADAM9 KO cell line. Additionally, Ab.01 demonstrated broad binding activity to a panel of cancer cell lines. Ab.01 also showed effective internalization activity. Furthermore, in a PBMC binding assay, Ab.01 demonstrated minimal binding activity to myeloid cells compared to the benchmark antibody. This observation suggests that Ab.01 may reduce off-target interactions, underscoring its potential for improved specificity in therapeutic applications.
Ab.01 conjugated to vcMMAE showed superior efficacy in several PDX models compared to benchmark antibodies conjugated with the same payload. Ab.01 was then conjugated with BLD1102, a novel Top1 inhibitor, resulting in BCG029, which demonstrated potent efficacy in PDX models. Ongoing in vivo studies are continuing to evaluate the performance of BCG029.
These findings underscore the therapeutic potential of BCG029 in targeting solid tumors that express ADAM9. By targeting ADAM9 specifically, BCG029 could provide a safer and more effective treatment option for patients with ADAM9-expressing tumors.
利益披露 Disclosure
Y. Xie, None..
M. Li, None..
C. Shang, None..
Y. Yang, None.