PO.ET09.07 · 实验与分子治疗

新型B7-H4靶向抗体-药物偶联物Mocertatug Rezetecan(GSK5733584)的非临床表征

Non-clinical characterization of Mocertatug Rezetecan (GSK5733584), a novel B7-H4-directed antibody-drug conjugate

海报缩略图:新型B7-H4靶向抗体-药物偶联物Mocertatug Rezetecan(GSK5733584)的非临床表征
编号 4575 展板 18 时间 4/21 09:00–12:00 区域 Section 17 主讲 Jeremy Waight, PhD
分会场 Novel Antitumor Agents 2
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作者与单位 Authors & Affiliations

Jeremy Waight1, Yuanfeng Zhou2, Danni Sun2, Lu Zhang3, Jon Chung4, Michael Adam1, Wenjin Zhou3, Pengchao Qiu3, Jifa Fan3, Anna Strobl5, Jaegil Kim4, Aishwarya Bhaskar1, Srujana Neelam1, Geeta Sharma4, Shannon McKearnan1, Huifeng Niu2, Takahiro Sato1, Derek Poore1, Alexander Cocks5, Prajna Behera4, Chris Hopson1, Ken Hance1, Richard Davidson5

1GSK, Collegeville, PA,2Hansoh Pharmaceutical Group Co., Ltd, Shanghai, China,3Hansoh Pharmaceutical Group Co., Ltd., Shanghai, China,4GSK, Waltham, MA,5GSK, London, United Kingdom

摘要 Abstract

中文摘要
B7-H4(B7同源物4蛋白),又称B7S1(B7超家族成员1)或VTCN1(含V-set结构域T细胞激活抑制因子1),是B7-CD28家族中一个重要的免疫调节配体。B7-H4在多种肿瘤组织中过表达,如乳腺癌、卵巢癌、子宫癌和肺癌。据报道,B7-H4既能减弱T细胞功能(如增殖、细胞因子分泌和细胞周期),又能促进肿瘤细胞增殖、侵袭和转移。与其所述的免疫调节和促肿瘤作用一致,B7-H4与晚期肿瘤患者的不良预后和不利的临床病理特征相关。由于其在肿瘤中的过表达和促肿瘤功能,B7-H4是抗体-药物偶联物(ADC)等肿瘤选择性疗法的一个有吸引力的靶点。Mocertatug Rezetecan(Mo-Rez)是一种新型ADC,将人源化抗B7-H4免疫球蛋白G1单克隆抗体与依喜替康衍生的拓扑异构酶I(TOPO1)抑制剂(SHR-9265,GSK5757810A,平均DAR为6)相结合。 本文我们描述了Mo-Rez的多种非临床特征,包括该ADC的生物物理、功能和机制属性。在体外,Mo-Rez表现出与B7-H4表达肿瘤细胞的浓度依赖性结合,从而导致时间依赖性的B7-H4内化及随后的细胞毒性。与其TOPO1i载荷特征一致,Mo-Rez还表现出细胞周期阻滞(S期)和旁观者杀伤能力。在体内,Mo-Rez对MX-1(乳腺)和RL95-2(子宫内膜)CDX模型表现出显著且剂量依赖性的肿瘤生长抑制(TGI)。在乳腺癌、胆管癌、宫颈癌和卵巢癌的人源PDX模型中观察到类似的抗肿瘤活性。值得注意的是,在同源重组缺陷型和功能正常型(分别为HRD和HRP)卵巢癌PDX模型中均观察到Mo-Rez的抗肿瘤反应。 重要的是,卵巢模型中的强抗肿瘤活性与Mo-Rez在既往接受多线治疗的铂耐药卵巢癌(PROC,ORR为48.5%)中近期的临床数据相一致。总的来说,这些发现支持Mo-Rez作为一种有前景的癌症疗法及其快速推进的全球临床开发(BEHOLD试验)。
查看英文原文 English abstract
B7-H4 (B7 homolog 4 protein), also known as B7S1 (B7 superfamily member 1) or VTCN1 (V-set domain-containing T cell activation inhibitor 1), is an important immunoregulatory ligand in the B7-CD28 family. B7-H4 is overexpressed in various tumor tissues such as breast, ovarian, uterine, and lung cancers. B7-H4 has been described to both attenuate T cell function (e.g., proliferation, cytokine secretion and cell cycle) as well as promote tumor cell proliferation, invasion, and metastasis. Consistent with its described immunoregulatory and tumor promoting role, B7-H4 is associated with poor prognosis and negative clinicopathological features in patients with advanced tumors. Due to its overexpression in tumors and tumor-promoting functions, B7-H4 represents an attractive target for tumor-selective therapies like antibody-drug conjugates (ADCs). Mocertatug Rezetecan (Mo-Rez) is a novel ADC that combines a humanized anti-B7-H4 immunoglobulin G1 monoclonal antibody with an exatecan-derived topoisomerase I (TOPO1) inhibitor (SHR-9265, GSK5757810A, average DAR of 6). Here we describe various non-clinical characteristics of Mo-Rez, including biophysical, functional, and mechanistic attributes of the ADC. In vitro, Mo-Rez demonstrated concentration-dependent binding to B7-H4-expressing tumor cells, which resulted in time-dependent B7-H4 internalization and subsequent cellular cytotoxicity. Consistent with its TOPO1i payload characteristics, Mo-Rez also exhibited cell cycle arrest (S-phase) and bystander killing capability. In vivo, Mo-Rez exhibited significant and dose-dependent tumor growth inhibition (TGI) towards MX-1 (breast) and RL95-2 (endometrial) CDX models. Similar anti-tumor activity was observed across human PDX models of breast cancer, cholangiocarcinoma, cervical cancer, and ovarian cancer. Notably, Mo-Rez antitumor responses were observed in both homologous recombination deficient and proficient (HRD and HRP, respectively) ovarian cancer PDX models. Importantly, the strong antitumor activity in ovarian models align with recent clinical data for Mo-Rez in heavily pretreated platinum-resistant ovarian cancer (PROC, 48.5% ORR). Collectively, these findings support Mo-Rez as a promising cancer therapy and its rapidly progressing global clinical development (BEHOLD trials).
利益披露 Disclosure
J. Waight, GlaxoSmithKline Employment, Stock, Stock Option. Y. Zhou, Hansoh Pharmaceutical Group Co., Ltd Employment, Stock, Stock Option. D. Sun, Hansoh Pharmaceutical Group Co., Ltd Employment, Stock, Stock Option. L. Zhang, Hansoh Pharmaceutical Group Co., Ltd. Employment. J. Chung, GlaxoSmithKline Employment, Stock, Stock Option. W. Zhou, Hansoh Pharmaceutical Group Co., Ltd. Employment. P. Qiu, Hansoh Pharmaceutical Group Co., Ltd. Employment. J. Fan, Hansoh Pharmaceutical Group Co., Ltd. Employment. A. Strobl, GlaxoSmithKline Employment, Stock, Stock Option. J. Kim, GlaxoSmithKline Employment, Stock, Stock Option. A. Bhaskar, GlaxoSmithKline Employment, Stock, Stock Option. S. Neelam, GlaxoSmithKline Employment, Stock, Stock Option. G. Sharma, GlaxoSmithKline Employment, Stock, Stock Option. S. McKearnan, GlaxoSmithKline Employment, Stock, Stock Option. H. Niu, Hansoh Pharmaceutical Group Co., Ltd Employment, Stock, Stock Option. T. Sato, GlaxoSmithKline Employment, Stock, Stock Option. D. Poore, GlaxoSmithKline Employment, Stock, Stock Option. A. Cocks, GlaxoSmithKline Employment, Stock, Stock Option. P. Behera, GlaxoSmithKline Employment, Stock, Stock Option. C. Hopson, GlaxoSmithKline Employment, Stock, Stock Option. K. Hance, GlaxoSmithKline Employment, Stock, Stock Option. R. Davidson, GlaxoSmithKline Employment, Stock, Stock Option.

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