Preclinical Antitumor Activity and Biodistribution of a Novel Anti-GCC Antibody–Drug Conjugate in Patient-derived Xenografts

体内分布 体内 细胞毒性T细胞 抗体-药物偶联物 癌症研究 体外 药理学 化学 治疗指标 医学 抗体 单克隆抗体 药品 生物 免疫学 生物化学 生物技术
作者
Adnan O. Abu‐Yousif,Donna Cvet,Melissa Gallery,Bret Bannerman,Michelle L. Ganno,Michael D. Smith,Katharine C. Lai,Thomas A. Keating,Bradley Stringer,Afrand Kamali,Kurt Eng,Secil Koseoglu,Andy Z. X. Zhu,Cindy Q. Xia,Melissa Saylor Landen,Maria Borland,Robbie Robertson,Jayaprakasam Bolleddula,Mark G. Qian,Jennifer Fretland
出处
期刊:Molecular Cancer Therapeutics [American Association for Cancer Research]
卷期号:19 (10): 2079-2088 被引量:13
标识
DOI:10.1158/1535-7163.mct-19-1102
摘要

Guanylyl cyclase C (GCC) is a unique therapeutic target with expression restricted to the apical side of epithelial cell tight junctions thought to be only accessible by intravenously administered agents on malignant tissues where GCC expression is aberrant. In this study, we sought to evaluate the therapeutic potential of a second-generation investigational antibody-dug conjugate (ADC), TAK-164, comprised of a human anti-GCC mAb conjugated via a peptide linker to the highly cytotoxic DNA alkylator, DGN549. The in vitro binding, payload release, and in vitro activity of TAK-164 was characterized motivating in vivo evaluation. The efficacy of TAK-164 and the relationship to exposure, pharmacodynamic marker activation, and biodistribution was evaluated in xenograft models and primary human tumor xenograft (PHTX) models. We demonstrate TAK-164 selectively binds to, is internalized by, and has potent cytotoxic effects against GCC-expressing cells in vitro A single intravenous administration of TAK-164 (0.76 mg/kg) resulted in significant growth rate inhibition in PHTX models of metastatic colorectal cancer. Furthermore, imaging studies characterized TAK-164 uptake and activity and showed positive relationships between GCC expression and tumor uptake which correlated with antitumor activity. Collectively, our data suggest that TAK-164 is highly active in multiple GCC-positive tumors including those refractory to TAK-264, a GCC-targeted auristatin ADC. A strong relationship between uptake of 89Zr-labeled TAK-164, levels of GCC expression and, most notably, response to TAK-164 therapy in GCC-expressing xenografts and PHTX models. These data supported the clinical development of TAK-164 as part of a first-in-human clinical trial (NCT03449030).
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