PO.ET02.03 · 实验与分子治疗

一种新型协同双载荷TROP2 ADC(CTPH-03)通过提高MTD带来更佳安全性

A novel synergistic dual-payload TROP2 ADC (CTPH-03) delivering enhanced safety by increased MTD

海报缩略图:一种新型协同双载荷TROP2 ADC(CTPH-03)通过提高MTD带来更佳安全性
编号 4438 展板 16 时间 4/21 09:00–12:00 区域 Section 12 主讲 Chang-Sun Lee, PhD
分会场 Antibody-Drug Conjugates and Linker Engineering 3
查看 PDF 下载 PDF 🔒 查看 / 下载完整 PDF 需登录并开通下载套餐 · 查看套餐 / 开通 AACR 官方页面

作者与单位 Authors & Affiliations

Myeong Joo Kim, Soyeon Lim, Dahyun Kim, Han ah Kim, Jaebeom Park, Eunseok Choi, Da wo Jeong, Ji Eun Choi, Young Sang Kim, Seung Chan Kim, Hyo Jin Kang, Chang-Sun Lee

Celltrion Pharm, Inc., Incheon, Korea, Republic of

摘要 Abstract

中文摘要
双载荷抗体药物偶联物(antibody-drug conjugate, ADC)因其克服单载荷ADC局限性的潜力而日益受到关注。根据组合策略的不同,已报道的双载荷形式旨在缓解肿瘤异质性或应对单载荷ADC可能产生的耐药性。我们的双载荷方法有别于这些方法,其目标是识别两种不同的载荷,以在最大限度减少重叠的不良副作用的同时提供协同抗肿瘤活性。通过广泛的组合筛选,我们借助ZIP评分实验发现了彼此协同的载荷配对。TROP2是验证我们双载荷ADC形式的理想靶抗原,因为它已获临床验证。尽管已有两种FDA批准的ADC——Trodelvy和Datroway,但由于剂量限制性毒性,这些TROP2 ADC的抗肿瘤疗效一直不尽人意。我们利用基于MMAE的双载荷组合开发了一种新型靶向TROP2的双载荷ADC(AD 2 C),以满足这一未被满足的需求。本报告通过以下方面展示了协同双载荷TROP2 ADC相较于已知单载荷ADC或其他双载荷ADC形式的优势:(1)针对具有不同TROP2表达水平的癌细胞的体外细胞毒性;(2)在各种CDX(癌细胞来源异种移植)模型中的体内疗效;(3)通过PK(药代动力学)研究评估的大鼠和猴体内ADC稳定性;(4)在小鼠和猴中进行的初步毒性研究。目前我们正在筹备PDX疗效研究,以进一步确认其在各种患者来源肿瘤细胞中的体内疗效,以及支持IND申报的毒理学研究,从而尽快将双载荷TROP2 ADC(AD 2 C)推进至临床研究。
查看英文原文 English abstract
Dual-payload antibody drug conjugates (ADCs) have gained increasing attention due to their potential to overcome limitations of single-payload ADCs. Depending on the combination strategy, dual-payload formats have been reported in order to mitigate tumor heterogeneity or to address resistance that may develop with single payload ADCs. Our dual-payload approach is differentiated from these approaches by aiming to identify two distinct payloads that could provide synergistic anti-tumor activities while minimizing overlapping unwanted side effects. Through extensive combination screening campaigns, we have discovered payload pairs that synergize each other by ZIP score experiments. TROP2 is a perfect target antigen to validate our dual-payload ADC format since it is a clinically validated. Although there are two FDA-approved ADCs, Trodelvy and Datroway, anti-tumor efficacy from these TROP2 ADCs have been subpar due to dose-limiting toxicities. We have developed a novel TROP2-targeting dual-payload ADC (AD 2 C) by using MMAE-based dual-payload combination to address this unmet need. The presentation highlights advantages of the synergistic dual-payload TROP2 ADC over known single-payload ADCs or other dual-payload ADC formats by demonstrating, (1) in vitro cytotoxicity for cancer cells having different TROP2 expression levels (2) in vivo efficacy in various CDX(cancer-cell derived xenograft) models (3) in vivo ADC stability in rats and monkeys by PK(pharmacokinetics) studies, and (4) preliminary toxicity studies conducted in mice and monkeys.In due course, we are currently in preparation of PDX efficacy studies for further confirming its in vivo efficacy over various patient-derived tumor cells, and IND-enabling toxicology studies in order to quickly move forward the dual-payload TROP2 ADC(AD 2 C) into clinical study.
利益披露 Disclosure
M. Kim, None.. S. Lim, None.. D. Kim, None.. H. Kim, None.. J. Park, None.. E. Choi, None.. D. Jeong, None.. J. Choi, None.. Y. Kim, None.. S. Kim, None.. H. Kang, None.. C. Lee, None.

← 返回 AACR 2026 检索