PO.CH01.06 · 化学
一种同类首创的IKZF1/3降解剂抗体偶联物(DAC)作为潜在的骨髓瘤治疗药物
A first-in-class IKZF1/3 degrader antibody conjugate (DAC) as a potential myeloma treatment
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
抗体药物偶联物(ADC)将强效细胞毒素递送至肿瘤,但受到脱靶毒性和耐药性的限制。这推动了降解剂抗体偶联物(DAC)平台的开发,该平台将靶向蛋白降解(TPD)的催化活性与抗体的组织特异性相结合。我们将这一创新方法应用于多发性骨髓瘤,其中大多数患者在一线方案(例如RVd、PVd)后复发,从而产生了对能够克服IMiD耐药的新型疗法的迫切需求。新兴的新型IKZF1/3降解剂通过变构重编程CRBN,提供了一种强效的解决方案,能够克服临床中的IMiD耐药。我们假设将这些催化降解剂偶联至CD38抗体将产生一种协同治疗药物,把这一强效机制从后线治疗迁移至一线治疗。在此我们描述了ADC-2419的合理设计和临床前特征,这是一种同类首创的CD38导向DAC,可将强效IKZF1/3降解剂P5递送至肿瘤。从一组候选载荷中,我们鉴定出P5,其与CRBN的结合亲和力(Kd <10 nM)比来那度胺高80倍。这种超高亲和力使得即使在细胞内CRBN水平较低时也能形成稳健的三元复合物,从而绕过削弱IMiD疗效的耐药机制。P5表现出低皮摩尔级降解效力(IKZF1 EC₅₀ < 0.1 nM;IKZF3 EC₅₀ < 0.1 nM),并驱动深度的靶点降解(Dmax ≥ 90%)。对超过8,000种蛋白的定量蛋白质组学证实了极高的选择性;没有内源性CRBN新底物被显著减少。因此,P5对MM细胞表现出强效细胞毒性(IC₅₀ < 1 nM),同时在高达1 μM时对PBMC表现出有限的细胞毒性。P5在体外和体内表现出良好的PK,并在食蟹猴毒性研究中耐受性良好,支持其作为新一代载荷进行开发。因此,通过组织蛋白酶可切割连接子将P5偶联至人类CD38抗体生成了ADC-2419。ADC-2419在体外对表达CD38的细胞表现出强效细胞毒性。在NCI-H929异种移植模型中,单次1 mpk剂量实现了完全肿瘤消退,优于相同剂量的亲本CD38抗体。在PBMC人源化小鼠模型中,ADC-2419表现出增强的疗效,并保持了对CD38抗体的显著优势。此外,在荷瘤小鼠中观察到显著的肿瘤蓄积,与体内疗效一致,验证了我们DAC平台的靶向递送能力。总之,ADC-2419将抗体靶向与催化蛋白降解相协同,其稳健的临床前证据支持其在克服骨髓瘤治疗关键局限方面的转化前景。
查看英文原文 English abstract
Antibody-drug conjugates (ADCs) deliver potent cytotoxins to tumors but are limited by off-target toxicity and resistance. This drives the development of Degrader Antibody Conjugates (DACs) platform, which combine the catalytic activity of targeted protein degradation (TPD) with the tissue specificity of antibodies. We applied this innovative approach to multiple myeloma, where most patients relapse after frontline regimens (e.g., RVd, PVd), creating a critical need for novel therapies that overcome IMiD resistance. Emerging novel IKZF1/3 degraders, which allosterically reprogram CRBN, offer a potent solution by overcoming IMiD resistance in the clinic. We hypothesized that conjugating these catalytic degraders to CD38 antibody would create a synergistic therapeutic, migrating this potent mechanism from late-line to frontline treatment. Here we describe the rational design and pre-clinical profile of ADC-2419, the first-in-class CD38-directed DAC that delivers the potent IKZF1/3 degrader P5 to tumors. From a panel of candidate payloads, we identified P5 that binds CRBN with an 80-fold higher affinity (Kd <10 nM) than lenalidomide. This ultra-high affinity enables robust ternary-complex formation even at low intracellular CRBN levels, thereby bypassing the resistance mechanisms that cripple IMiD efficacy. P5 exhibits low-picomolar degradation potency (IKZF1 EC₅₀ < 0.1 nM; IKZF3 EC₅₀ < 0.1 nM) and drives deep target degradation (≥ 90% D max ) in tumor cells. Quantitative proteomics of >8,000 proteins confirmed exquisite selectivity; no endogenous CRBN neosubstrates were significantly reduced. Consequently, P5 shows potent cytotoxicity against MM cells (IC₅₀ < 1 nM) while exhibiting limited cytotoxicity toward PBMCs up to 1 µM. P5 exhibited favorable PK in vitro and in vivo and was well tolerated in cynomolgus monkey toxicity study, supporting its development as a next-generation payload. Therefore, conjugation of P5 to the human CD38 antibody via a cathepsin-cleavable linker generated ADC-2419. ADC-2419 demonstrates potent cytotoxicity against CD38-expressing cells in vitro. In NCI-H929 xenograft model, a single 1 mpk dose achieved complete tumor regression, outperforming parental CD38 antibody at the same dose. In the PBMC-humanized mouse model, ADC-2419 demonstrated enhanced efficacy and maintained significant superiority over the CD38 antibody. Furthermore, pronounced tumor accumulation was observed in tumor-bearing mice, aligning with the in vivo efficacy and validating the targeted-delivery capability of our DAC platform. Collectively, the robust preclinical evidence for ADC-2419, which synergizes antibody targeting with catalytic protein degradation, supports its translational promise in overcoming key limitations in myeloma treatment.
利益披露 Disclosure
S. Wu, None..
J. Yang, None..
M. Dan, None..
X. Hui, None..
B. Yao, None..
M. Wei, None..
B. Bao, None..
Q. Zhu, None..
L. Xiao, None..
P. Wen, None..
X. Zhang, None..
W. Fang, None..
X. Li, None.