PO.ET02.01 · 实验与分子治疗

HA-00495:一种开发候选ADC,具有新型蛋白质翻译抑制剂载荷,具备广谱疗效和有利的非人灵长类安全性特征

HA-00495: A development candidate ADC featuring a novel protein translation inhibitor payload with broad efficacy and a favorable non human primate safety profile

编号 1676 展板 5 时间 4/20 09:00–12:00 区域 Section 12 主讲 Tara Arvedson, PhD
分会场 Antibody-Drug Conjugates and Linker Engineering 1
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作者与单位 Authors & Affiliations

Tara L. Arvedson, Victor Cee, Corey Reeves, Madhura Deshpande, Natacha Le Moan, Kyle Dunbar, Amandeep Gakhal, Chris Kimberlin, Cynthia Bailey, Edres Babacarkhial, Nolan Carney, Xufeng Cao, Yi-Ming Chiang, Amber Cornelius, Natalie Duong, Colin Harvey, Yingxia Hu, Dimitri Kharakovsky, Jose Leighton, Dennis Liu, Luca Lizzardo, Octovia Monteiro, Samuel Oteng-Pabi, Bruno Perlatti, Rajani Marthappa Shenoy, Joseph Spraker, Mélanie Uguen, Jakub Vaith, Sandeep Venkataram, Kendra Wheeler, Shiyan Xu, Danielle Yee, Clarence Yeung, Eva Yuan

Hexagon Bio, Menlo Park, CA

摘要 Abstract

中文摘要
抗体偶联药物(ADC)已在多种癌症中展现出临床获益,然而对现有载荷类别(尤其是拓扑异构酶和微管抑制剂)的耐药仍是实现持久疗效的一大障碍。为解决这一局限,Hexagon Bio正利用其天然产物发现平台,识别具有与当前已获批载荷类别非重叠作用机制(MOA)的新型ADC载荷。借助我们专有的天然产物文库,我们识别出一种蛋白质翻译抑制剂作为一种高效的ADC载荷。我们将该载荷偶联到一组识别肿瘤相关抗原的多样化抗体上,并观察到跨细胞系一致的ADC介导细胞毒性,支持其在多种肿瘤类型中的广泛适用性。在体内,使用抗TROP2(sacituzumab)和抗HER2(trastuzumab)抗体生成的ADC在膀胱癌、胃癌、乳腺癌和肺癌模型中展现出深度而持久的抗肿瘤活性,包括已知对基于拓扑异构酶抑制剂的ADC耐药的模型。在此,我们提供跨多个肿瘤模型的更新疗效数据,并首次报告一种含该载荷的ADC的非人灵长类(NHP)安全性特征。我们的新数据包括对HER2 ADC HA-00495在NHP中的全面评估,考察多个剂量水平以及重复给药方案。这些研究揭示了可接受的安全性和耐受性特征。我们将展示这些研究的临床观察、临床病理学、组织病理学和关键发现。总之,我们已识别出一种用于ADC的新型蛋白质翻译抑制剂载荷类别,其展现出强效疗效、在耐药情形下的活性以及有利的NHP安全性特征。这些结果支持HA-00495解决当前ADC疗法关键空白的潜力,该候选药物的开发活动现已启动。
查看英文原文 English abstract
Antibody drug conjugates (ADCs) have demonstrated clinical benefit across multiple cancers, yet resistance to existing payload classes, particularly topoisomerase and microtubule inhibitors, remains a major barrier to durable efficacy. To address this limitation, Hexagon Bio is leveraging its natural product discovery platform to identify new ADC payloads with mechanisms of action (MOAs) that are non-overlapping with currently approved payload classes. Enabled by our proprietary natural product library, we identified a protein translation inhibitor as a highly potent ADC payload. We conjugated the payload to a diverse panel of antibodies recognizing tumor-associated antigens and observed consistent ADC-mediated cytotoxicity across cell lines, supporting broad applicability across tumor types. In vivo, ADCs generated using anti-TROP2 (sacituzumab) and anti-HER2 (trastuzumab) antibodies demonstrated deep and durable antitumor activity in bladder, gastric, breast and lung cancer models, including models with known resistance to topoisomerase inhibitor-based ADCs. Here, we provide updated efficacy data across multiple tumor models and, for the first time, report the non-human primate (NHP) safety profile of an ADC incorporating this payload. Our new data include a comprehensive assessment of the HER2 ADC HA-00495 in NHPs, evaluating multiple dose levels as well as repeat-dose regimens. These studies reveal an acceptable safety and tolerability profile. We will present the clinical observations, clinical pathology, histopathology and key findings from these studies.In summary, we have identified a novel protein translation inhibitor payload class for ADCs that demonstrates strong efficacy, activity in resistance settings and a favorable NHP safety profile. These results support the potential of HA-00495 to address critical gaps in current ADC therapies and development activities for this candidate are now underway.
利益披露 Disclosure
T. L. Arvedson, None.. V. Cee, None.. C. Reeves, None.. M. Deshpande, None.. N. Le Moan, None.. K. Dunbar, None.. A. Gakhal, None.. C. Kimberlin, None.. C. Bailey, None.. E. Babacarkhial, None.. N. Carney, None.. X. Cao, None.. Y. Chiang, None.. A. Cornelius, None.. N. Duong, None.. C. Harvey, None.. Y. Hu, None.. D. Kharakovsky, None.. J. Leighton, None.. D. Liu, None.. L. Lizzardo, None.. O. Monteiro, None.. S. Oteng-Pabi, None.. B. Perlatti, None.. R. Marthappa Shenoy, None.. J. Spraker, None.. M. Uguen, None.. J. Vaith, None.. S. Venkataram, None.. K. Wheeler, None.. S. Xu, None.. D. Yee, None.. C. Yeung, None.. E. Yuan, None.

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