A B7-H4–Targeting Antibody–Drug Conjugate Shows Antitumor Activity in PARPi and Platinum-Resistant Cancers with B7-H4 Expression

卵巢癌 癌症研究 医学 抗体-药物偶联物 流式细胞术 癌症 抗体 内科学 免疫学 单克隆抗体
作者
Sarah B. Gitto,Margaret Whicker,Gareth Davies,Sushil Kumar,Krista Kinneer,Haineng Xu,Arthur Lewis,Srinivas Mamidi,Sergey Medvedev,Hyoung Kim,Judith Anderton,E. Jessica Tang,Benjamin Ferman,Steven Coats,Robert W. Wilkinson,Eric J. Brown,Daniel J. Powell,Fiona Simpkins
出处
期刊:Clinical Cancer Research [American Association for Cancer Research]
卷期号:30 (8): 1567-1581 被引量:25
标识
DOI:10.1158/1078-0432.ccr-23-1079
摘要

Abstract Purpose: Platinum and PARP inhibitors (PARPi) demonstrate activity in breast and ovarian cancers, but drug resistance ultimately emerges. Here, we examine B7-H4 expression in primary and recurrent high-grade serous ovarian carcinoma (HGSOC) and the activity of a B7-H4-directed antibody–drug conjugate (B7-H4-ADC), using a pyrrolobenzodiazepine-dimer payload, in PARPi- and platinum-resistant HGSOC patient-derived xenograft (PDX) models. Experimental Design: B7-H4 expression was quantified by flow cytometry and IHC. B7-H4-ADC efficacy was tested against multiple cell lines in vitro and PDX in vivo. The effect of B7-H4-ADC on cell cycle, DNA damage, and apoptosis was measured using flow cytometry. Results: B7-H4 is overexpressed in 92% of HGSOC tumors at diagnosis (n = 12), persisted in recurrent matched samples after platinum treatment, and was expressed at similar levels across metastatic sites after acquired multi-drug resistance (n = 4). Treatment with B7-H4-ADC resulted in target-specific growth inhibition of multiple ovarian and breast cancer cell lines. In platinum- or PARPi-resistant ovarian cancer cells, B7-H4-ADC significantly decreased viability and colony formation while increasing cell-cycle arrest and DNA damage, ultimately leading to apoptosis. Single-dose B7-H4-ADC led to tumor regression in 65.5% of breast and ovarian PDX models (n = 29), with reduced activity in B7-H4 low or negative models. In PARPi and platinum-resistant HGSOC PDX models, scheduled B7-H4-ADC dosing led to sustained tumor regression and increased survival. Conclusions: These data support B7-H4 as an attractive ADC target for treatment of drug-resistant HGSOC and provide evidence for activity of an ADC with a DNA-damaging payload in this population. See related commentary by Veneziani et al., p. 1434
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