PO.ET02.06 · 实验与分子治疗
开发一种靶向ALPP/ALPPL2、具有强效抗肿瘤活性和优异耐受性的同类首创喜树碱类抗体-药物偶联物
Development of a first-in-class camptothecin-based antibody-drug conjugate targeting ALPP/ALPPL2 with potent antitumor activity and excellent tolerability
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
引言:ALPP(碱性磷酸酶,胎盘型)和ALPPL2(碱性磷酸酶,胎盘样2)因其在多种实体瘤中的表达(包括卵巢癌(60%)、子宫内膜癌(50%)、胰腺癌(30%)和胃癌(15%))以及在正常成人组织中的极低表达,成为有前景的靶点。我们开发了一种新型ALPP/ALPPL2靶向抗体-药物偶联物(ADC),其将专有的喜树碱衍生载荷通过蛋白酶可裂解连接子偶联至高亲和力单克隆抗体。临床前研究显示其具有强劲的抗肿瘤活性和良好的安全性,支持其惠及难治性晚期实体瘤患者的潜力。
方法:通过流式细胞术评估亲本抗体与ALPP/ALPPL2阳性细胞的结合。通过酶联免疫吸附实验证实其对相关磷酸酶(hALPL和hALPI)的选择性。使用CellTiter-Glo(CTG)在ALPPL2阳性细胞(HEP2、NCI-H1651)中评估ALPP/ALPPL2-ADC的细胞毒性。通过测定Jurkat活力,在ALPPL2阳性HEP2细胞与Jurkat对照的共培养中量化旁观者杀伤。在Capan-1胰腺腺癌细胞系来源异种移植(CDX)模型和LD1-0017-200702胃癌患者来源异种移植(PDX)模型中考察体内疗效。在食蟹猴中以20和40 mg/kg剂量、每三周一次、共三个周期表征药代动力学和毒理学。
结果:亲本ALPP/ALPPL2抗体对人和食蟹猴ALPP/ALPPL2表现出高特异性,与相关磷酸酶(hALPL和hALPI)无交叉反应。ALPP/ALPPL2-ADC(药物抗体比为8)采用专有的喜树碱类连接子-载荷,在体外对HEP2(ALPP/ALPPL2高)和NCI-H1651(ALPP/ALPPL2中)细胞表现出靶点介导的细胞毒性。与基于德鲁替康的ADC相比,该ADC还显示出高50倍的旁观者杀伤效应。体内,单次1 mg/kg剂量在Capan-1 CDX模型中诱导了显著的肿瘤消退,而在对采用MMAE载荷的ADC难治的胃腺癌PDX模型中,单次8 mg/kg剂量实现了深度肿瘤缓解。在非人灵长类动物中,ALPP/ALPPL2显示出线性药代动力学和优异的耐受性(最高非严重毒性剂量 ≥40 mg/kg)。
结论:ALPP/ALPPL2-ADC是一种有前景的实体瘤治疗候选物,尤其适用于妇科肿瘤。作为一种靶向ALPP/ALPPL2的同类首创喜树碱类ADC,它结合了高抗体特异性、强劲的抗肿瘤疗效和良好的耐受性,支持其推进至临床开发。
查看英文原文 English abstract
Introduction: ALPP (alkaline phosphatase, placental) and ALPPL2 (alkaline phosphatase, placental-like 2) emerge as promising targets due to their expression across multiple solid tumors, including ovarian (60%), endometrial (50%), pancreatic (30%), and gastric cancer (15%) along with minimal expression in normal adult tissues. We developed a novel ALPP/ALPPL2-directed antibody-drug conjugate (ADC) incorporated a proprietary camptothecin-derived payload linked through a protease-cleavable linker to a high-affinity monoclonal antibody. Preclinical studies demonstrate robust antitumor activity with favorable safety, supporting its potential to benefit patients with refractory advanced solid tumors.
Methods: Parental antibody binding to ALPP/ALPPL2-positive cells was evaluated by flow cytometry. Selectivity against related phosphatases (hALPL and hALPI) was confirmed via enzyme-linked immunosorbent assay. ALPP/ALPPL2-ADC cytotoxicity was assessed using CellTiter-Glo (CTG) in ALPPL2-positive cells (HEP2, NCI-H1651). Bystander killing was quantified in co-cultures of ALPPL2-positive HEP2 cells and Jurkat controls by measuring Jurkat viability with CTG assay. In vivo efficacy was examined in Capan-1 pancreatic adenocarcinoma cell line-derived xenograft (CDX) model and LD1-0017-200702 gastric patient-derived xenograft (PDX) models. Pharmacokinetics and toxicology were characterized in cynomolgus monkeys at 20 and 40 mg/kg, administered every three weeks for three cycles.
Results: The parental ALPP/ALPPL2 antibody demonstrated high specificity for human and cynomolgus ALPP/ALPPL2, with no cross-reactivity to related phosphatases (hALPL and hALPI). The ALPP/ALPPL2-ADC (drug antibody ratio of 8), incorporating a proprietary camptothecin-based linker-payload, exhibited target mediated cytotoxicity in HEP2 (ALPP/ALPPL2 high ) and NCI-H1651 (ALPP/ALPPL2 medium ) cells in vitro . The ADC also showed a 50-fold greater bystander killing effect compared with a deruxtecan-based ADC. In vivo , a single 1 mg/kg dose induced profound tumor regression in the Capan-1 CDX model, while in the gastric adenocarcinoma PDX model refractory to an ADC with an MMAE payload, a single 8 mg/kg dose achieved deep tumor remission. In non-human primates, the ALPP/ALPPL2 showed linear pharmacokinetics and excellent tolerability (highest non severely toxic dose ≥40 mg/kg).
Conclusion: ALPP/ALPPL2-ADC is a promising therapeutic candidate for solid tumors, particularly gynecologic cancers. As a first-in-class camptothecin-based ADC targeting ALPP/ALPPL2, it combines high antibody specificity with robust antitumor efficacy and favorable tolerability, supporting advancement into clinical development.
利益披露 Disclosure
R. Liu,
Shanghai Henlius Biotech, Inc. Employment.
L. Zhang,
Shanghai Henlius Biotech, Inc. Employment.
F. Yang,
Shanghai Henlius Biotech, Inc. Employment.
J. Zhang,
Shanghai Henlius Biotech, Inc. Employment.
W. Yang,
Shanghai Henlius Biotech, Inc. Employment.
X. Yuan,
Shanghai Henlius Biotech, Inc. Employment.
J. Sha,
Shanghai Henlius Biotech, Inc. Employment.
Y. Chi,
Shanghai Henlius Biotech, Inc. Employment.
G. Song,
Shanghai Henlius Biotech, Inc. Employment.
W. Qu,
Shanghai Henlius Biotech, Inc. Employment.
Z. Lv,
Shanghai Henlius Biotech, Inc. Employment.
Q. Zou,
Shanghai Henlius Biotech, Inc. Employment.
H. Yan,
Shanghai Henlius Biotech, Inc. Employment.
C. Hu,
Shanghai Henlius Biotech, Inc. Employment.
J. Yuan,
Shanghai Henlius Biotech, Inc. Employment.