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Selective Tumor Cell Apoptosis and Tumor Regression in CDH17-Positive Colorectal Cancer Models using BI 905711, a Novel Liver-Sparing TRAILR2 Agonist

结直肠癌 癌症 细胞凋亡 癌症研究 体内 体外 癌细胞 分子医学 细胞 生物 兴奋剂 医学 受体 药理学 内科学 细胞周期 生物化学 生物技术
作者
Juan Manuel García‐Martínez,Shirley Wang,Cordula Weishaeupl,Andreas Wernitznig,Paolo Chetta,Catarina Pinto,Jason Ho,Darrin Dutcher,Philip N. Gorman,Rachel Kroe‐Barrett,Joerg Rinnenthal,Craig Giragossian,Maria Antonietta Impagnatiello,Iñigo Tirapu,Frank Hilberg,Norbert Kraut,Mark Pearson,Klaus Peter Kuenkele
出处
期刊:Molecular Cancer Therapeutics [American Association for Cancer Research]
卷期号:20 (1): 96-108 被引量:26
标识
DOI:10.1158/1535-7163.mct-20-0253
摘要

Activation of TRAILR2 has emerged as an important therapeutic concept in cancer treatment. TRAILR2 agonistic molecules have only had limited clinical success, to date, due either to lack of efficacy or hepatotoxicity. BI 905711 is a novel tetravalent bispecific antibody targeting both TRAILR2 and CDH17 and represents a novel liver-sparing TRAILR2 agonist specifically designed to overcome the disadvantages of previous strategies. Here, we show that BI 905711 effectively triggered apoptosis in a broad panel of CDH17-positive colorectal cancer tumor cells in vitro. Efficient induction of apoptosis was dependent on the presence of CDH17, as exemplified by the greater than 1,000-fold drop in potency in CDH17-negative cells. BI 905711 demonstrated single-agent tumor regressions in CDH17-positive colorectal cancer xenografts, an effect that was further enhanced upon combination with irinotecan. Antitumor efficacy correlated with induction of caspase activation, as measured in both the tumor and plasma. Effective tumor growth inhibition was further demonstrated across a series of different colorectal cancer PDX models. BI 905711 induced apoptosis in both a cis (same cell) as well as trans (adjacent cell) fashion, translating into significant antitumor activity even in xenograft models with heterogeneous CDH17 expression. In summary, we demonstrate that BI 905711 has potent and selective antitumor activity in CDH17-positive colorectal cancer models both in vitro and in vivo. The high prevalence of over 95% CDH17-positive tumors in patients with colorectal cancer, the molecule preclinical efficacy together with its potential for a favorable safety profile, support the ongoing BI 905711 phase I trial in colorectal cancer and additional CDH17-positive cancer types (NCT04137289).
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