PO.ET02.02 · 实验与分子治疗
JS212,一种靶向EGFR和HER3的新型双特异性ADC,在临床前评估中展现出优越且广谱的抗肿瘤活性
JS212, a novel bispecific ADC targeting EGFR and HER3, demonstrates superior and broad antitumor activity in preclinical evaluation
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:EGFR和HER3在多种上皮性肿瘤中常常共表达。HER3过表达是NSCLC中对EGFR酪氨酸激酶抑制剂(TKI)耐药的公认机制。靶向HER3的抗体药物偶联物(ADC),如patritumab deruxtecan,已在EGFR突变的NSCLC患者中显示出令人鼓舞的临床获益。此外,一种EGFR和HER3双靶向ADC——BL-B01D1,在EGFR突变的晚期NSCLC患者中展现出有前景的抗肿瘤活性,证实了以双特异性ADC同时靶向EGFR和HER3是实现良好治疗疗效的有前景策略。我们开发了JS212,一种靶向EGFR和HER3的双特异性ADC,通过分子设计增强抗肿瘤活性,同时保持良好的安全性和药代动力学特征。
方法:JS212由靶向EGFR的Fab臂、靶向HER3的scFv臂以及DNA拓扑异构酶I抑制剂exatecan组成,通过可裂解连接子连接,具有均一的药物抗体比(DAR)为6。通过细胞毒性试验测定体外效力。在细胞系来源异种移植(CDX)模型中评估抗肿瘤活性。在食蟹猴中评估临床前安全性和药代动力学。
结果:JS212对表达EGFR和/或HER3的肿瘤细胞表现出高亲和力结合,从而高效杀伤具有广谱EGFR和HER3表达水平的肿瘤细胞。在CDX模型中,其抗肿瘤活性也优于BL-B01D1。在EGFR主导的NCI-H1975模型中,JS212在单次给药1.9 mg/kg后展现出显著的肿瘤生长抑制,TGI为113%。相比之下,相同摩尔剂量的BL-B01D1仅能达到75%的TGI。在HER3主导的SW620模型中,JS212单次给药1.3 mg/kg使全部5只小鼠的肿瘤完全消退,而BL-B01D1仅在2.5 mg/kg、D1D8 Q3W下抑制肿瘤生长。在osimertinib耐药的HCC827模型中,JS212的抗肿瘤活性也优于BL-B01D1。此外,JS212在BL-B01D1或patritumab-deruxtecan耐药的SW620模型中诱导了近乎完全的消退。在食蟹猴中,JS212在30 mg/kg重复给药下耐受性良好。它还表现出良好的药代动力学特征,半衰期>3天。
结论:JS212是一种有前景的EGFR和HER3双靶向ADC,在临床前评估中展现出优越且广谱的抗肿瘤活性以及良好的安全性和药代动力学特征,支持其首次人体研究。其I期临床试验正在进行中,结果将另行报告。
查看英文原文 English abstract
Background: EGFR and HER3 are frequently co-expressed across multiple epithelial tumors. HER3 overexpression is a recognized resistance mechanism to EGFR tyrosine kinase inhibitors (TKIs) in NSCLC. The HER3-targeting antibody-drug conjugates (ADC), such as patritumab deruxtecan, has shown encouraging clinical benefit in NSCLC patients with EGFR mutations. Additionally, an EGFR and HER3 dual targeting ADC, BL-B01D1, demonstrated promising antitumor activities in patients with EGFR-mutated advanced NSCLC, confirming simultaneous targeting of EGFR and HER3 with a bispecific ADC as a promising strategy to achieve good therapeutic efficacy. We have developed JS212, a bispecific ADC targeting EGFR and HER3 with molecular design to enhance antitumor activity while maintaining a favorable safety and pharmacokinetic profile.
Methods: JS212 is composed of a Fab arm targeting EGFR, a scFv arm targeting HER3, and DNA topoisomerase I inhibitor, exatecan, linked through a cleavable linker with a homogeneous drug-to-antibody ratio (DAR) of 6. In vitro potencies were measured through cytotoxicity assays. Antitumor activities were evaluated in cell line-derived xenograft (CDX) models. Preclinical safety pharmacokinetics were assessed in cynomolgus monkeys.
Results: JS212 exhibited high-affinity binding to tumor cells expressing either or both of EGFR and HER3, resulting in efficient killing of tumor cells with a broad spectrum of EGFR and HER3 expression levels. It also demonstrated superior antitumor activities to BL-B01D1 in CDX models. In the EGFR-dominant NCI-H1975 model, JS212 demonstrated a significant tumor growth inhibition, with a TGI of 113% after the administration of a single dose of 1.9 mg/kg. In comparison, BL-B01D1 at the same molar dose, could only achieve a 75% TGI. In the HER3-dominant SW620 model, JS212 at a single dose of 1.3 mg/kg resulted in complete tumor regression in all 5 mice, whereas BL-B01D1 only suppressed tumor growth at 2.5 mg/kg, D1D8 Q3W. JS212 also had better antitumor activity than BL-B01D1 in an osimertinib-resistant HCC827 model. Additionally, JS212 induced near complete regression in either BL-B01D1 or patritumab-deruxtecan resistant SW620 model. In cynomolgus monkeys, JS212 was well tolerated with repeated doses at 30 mg/kg. It also showed favorable pharmacokinetics profiles with half-life > 3 Days.
Conclusion: JS212 is a promising EGFR and HER3 dual targeting ADC that shows superior and broad-spectrum antitumor activities and a favorable safety and pharmacokinetic profiles in preclinical evaluation, supporting its first-in-human studies. Its phase I clinical trial is ongoing, and results will be reported elsewhere.
利益披露 Disclosure
W. Shi, None..
N. Song, None..
Q. Fu, None..
L. Ye, None..
A. Xia, None..
M. Yang, None..
J. Wang, None..
X. Wu, None..
Y. Deng, None..
Y. Xu, None..
X. Wang, None..
H. He, None..
Y. Yan, None..
Z. Zhong, None.