PO.ET01.01 · 实验与分子治疗

ALK101sc:一种新型去岩藻糖基化、采用共同轻链、靶向EGFR和c-MET的双特异性抗体,展现出强效、广谱的抗肿瘤活性

ALK101sc, a novel afucosylated bispecific antibody targeting EGFR and c-MET with common light chain demonstrates potent, broad-spectrum antitumor activity

编号 1776 展板 21 时间 4/20 09:00–12:00 区域 Section 15 主讲 Jiajia Pan, PhD
分会场 Engineering the Next Wave of Antibody-Based Cancer Therapeutics
该海报暂无可下载的资料 AACR 官方页面

作者与单位 Authors & Affiliations

Li Li, Hongwang He, Mengfan Peng, Meiyu Yang, Jiajia Pan, Hui Feng

Allink Biotherapeutics, Shanghai, China

摘要 Abstract

中文摘要
对EGFR酪氨酸激酶抑制剂(TKI)的获得性耐药是治疗EGFR突变型非小细胞肺癌(NSCLC)的一大临床挑战。这种耐药或源于继发性EGFR突变(如C797S),或通过c-MET通路的旁路信号传导产生——包括c-MET突变、基因扩增或肝细胞生长因子(HGF)上调。为克服这些机制,我们开发了ALK101sc,一种去岩藻糖基化的IgG1双特异性抗体(bsAb),与透明质酸酶共制剂,设计用于同时靶向EGFR和c-MET。ALK101sc(120 mg/mL)采用单细胞共同轻链(CLC)平台生产,该平台确保正确的异源二聚化和可规模化生产,且无链错配或交换。体外功能试验表明,ALK101sc有效结合EGFR/c-MET双阳性肿瘤细胞,诱导受体内化和溶酶体降解,并强效抑制EGFR和c-MET两者配体诱导的下游信号传导,包括ERK和AKT的磷酸化。去岩藻糖基化的Fc区增强了抗体依赖性细胞毒性(ADCC),从而增强FcγR介导的抗肿瘤免疫。在体内,ALK101sc单药治疗在细胞系来源异种移植(CDX)和患者来源异种移植(PDX)模型中均诱导显著的肿瘤消退,包括携带EGFR突变和/或c-MET驱动耐药的模型。此外,ALK101sc与osimertinib联合产生协同抗肿瘤疗效,即使在存在TKI不敏感突变的情况下也是如此。食蟹猴皮下给药后的药代动力学(PK)和GLP毒理学研究显示典型的抗体样PK特征,在等剂量下的全身暴露与amivantamab相当,生物利用度约为89%。未观察到安全药理学或毒性方面的显著异常,无可见不良反应水平(NOAEL)为120 mg/kg。总之,这些结果表明ALK101sc在多种临床前模型中展现出与amivantamab相当的抗肿瘤效力。此外,其基于CLC的设计提供了简化的CMC开发路径,使其成为克服EGFR TKI耐药的有前景的候选疗法。与静脉制剂相比,皮下注射的ALK101sc可大幅缩短给药时间、提高患者便利性,并预期具有更有利的安全性特征——表现为输注相关反应(IRR)和静脉血栓栓塞(VTE)发生率的显著降低。
查看英文原文 English abstract
Acquired resistance to EGFR tyrosine kinase inhibitors (TKIs) represents a major clinical challenge in treating EGFR‑mutant non‑small cell lung cancer (NSCLC). This resistance arises either from secondary EGFR mutations (e.g., C797S) or via bypass signaling through the c-MET pathway-including c-MET mutation, gene amplification, or hepatocyte growth factor (HGF) upregulation. To overcome these mechanisms, we developed ALK101sc, an afucosylated IgG1 bispecific antibody (bsAb) co-formulated with hyaluronidase, designed to simultaneously target EGFR and c‑MET. ALK101sc (120 mg/mL) was produced using a single‑cell common‑light‑chain (CLC) platform, which ensured correct heterodimerization and scalable manufacturing without chain mispairing or exchange. In vitro functional assays demonstrated that ALK101sc effectively bound to EGFR/c-MET double-positive tumor cells, inducing receptor internalization and lysosomal degradation, and potently suppressed ligand-induced downstream signaling of both EGFR and c-MET, including phosphorylation of ERK and AKT. The afucosylated Fc region enhanced antibody-dependent cellular cytotoxicity (ADCC), thereby boosting FcgammaR-mediated antitumor immunity. In vivo, ALK101sc monotherapy induced significant tumor regression in both cell line-derived xenograft (CDX) and patient-derived xenograft (PDX) models, including those with EGFR mutations and/or c-MET-driven resistance. Furthermore, combining ALK101sc with osimertinib produced synergistic antitumor efficacy, even in the presence of TKI‑insensitive mutations. Pharmacokinetic (PK) and GLP toxicology studies in cynomolgus monkeys following subcutaneous administration revealed typical antibody‑like PK profiles, with systemic exposures comparable to amivantamab at equivalent doses and a bioavailability of approximately 89%. No significant abnormalities in safety pharmacology or toxicity were observed, with a no-observed-adverse-effect level (NOAEL) of 120 mg/kg. Together, these results demonstrate that ALK101sc exhibits antitumor potency comparable to amivantamab across preclinical models. Moreover, its CLC-based design provides a streamlined CMC development pathway, positioning it as a promising therapeutic candidate for overcoming EGFR TKI resistance. Compared with intravenous formulations, subcutaneous ALK101sc can substantially reduce administration time, improve patient convenience, and is expected to have a more favorable safety profile-characterized by meaningful reductions in infusion‑related reactions (IRR) and venous thromboembolism (VTE) rates.
利益披露 Disclosure
L. Li, Shanghai Allink Biotherapeutics Co., Ltd Employment. H. He, Shanghai Allink Biotherapeutics Co., Ltd Employment. M. Peng, Shanghai Allink Biotherapeutics Co., Ltd Employment. M. Yang, Shanghai Allink Biotherapeutics Co., Ltd Employment. J. Pan, Shanghai Allink Biotherapeutics Co., Ltd Employment. H. Feng, Shanghai Allink Biotherapeutics Co., Ltd Employment, Stock. Shanghai Junshi Biosciences Co., Ltd. Stock.

← 返回 AACR 2026 检索