Safety and biomarker assessment of ST316, a novel peptide antagonist of ß-catenin, in patients with advanced solid tumors.
Abstract
286 Background: Constitutive activation of ß-catenin, resulting in its nuclear accumulation and deregulated transcriptional activity, is a key event in colorectal cancer (CRC). Additionally, pathway mutations correlate with immune exclusion in CRC and across different tumor types. Disruption of the interaction of ß-catenin and its co-activator BCL9 is sufficient to suppress oncogenic ß-catenin transcriptional activity, without impacting its homeostatic functions in normal tissue. ST316 is a first-in-class, cell-penetrating peptide antagonist of the ß-catenin and BCL9 interaction. Preclinical evaluation revealed significant bioavailability and potent activity in CRC models with no impact on ß-catenin homeostatic functions such as intestinal stem cell survival or bone morphology. Methods: A phase 1-2 (P1-2) escalation-expansion study has enrolled patients (pts) with advanced solid tumors likely to harbor abnormalities in the Wnt/ß-catenin pathway, to assess the safety, pharmacokinetics (PK), biomarker and preliminary activity of ST316, and to recommend a P2 dose (RP2D). Paired biopsies were collected when feasible and assessed for drug penetration and pharmacodynamic biomarkers. Peripheral blood (PB) collected pre- and post-treatment was assessed by flow cytometry for polymorphonuclear myeloid-derived suppressor cells (PMN-MDSCs). Results: As of Sep.24, 2024; 23 pts with CRC (N=14), NSCLC (N=4), PDAC (N=2), or Breast and Ovarian cancer (N=1, each), were treated in 6 cohorts (0.5-12mg/kg) with IV ST316, once weekly. Treatment related AEs were observed in 17/23 pts and were mostly low grade, except for 2 G3 AEs that resolved: Fatigue (1) and ALT/AST elevation (1). No dose-limiting toxicities (DLTs) were observed. Single agent ST316 showed disease stabilization in 4 pts. PK analysis showed dose-proportional increases in Cmax and AUC for doses up to 8 mg/kg. IHC analysis showed substantial tumor penetration of ST316 in all analyzed samples and evidence of a treatment-induced redistribution of β-catenin in a subset of pts. PB analysis indicated high baseline levels of the ß-catenin-driven immunosuppressive PMN-MDSCs , followed by a significant decrease after ST316 exposure (p<0.005). The RP2D selected for combination cohorts in CRC is 8mg/kg; additional PD assessments are ongoing. Conclusions: Monotherapy ST316 was well-tolerated with dose-proportional PK and substantial tumor uptake. Pharmacodynamic analyses demonstrate mechanistic evidence of antagonism of ß-catenin signaling, including redistribution of ß-catenin subcellular localization and significant depletion of the ß-catenin-driven immunosuppressive PMN-MDSC population. Based on these data, ST316 advanced into P2 in CRC pts in combination with SoC in 2 nd and 3 rd line. Clinical trial information: NCT05848739 .
Article Details
Journal Info
Journal of Clinical Oncology
Lippincott Williams & Wilkins
Authors (10)
Anthony B. El-Khoueiry
University of Southern California Norris Comprehensive Cancer Center, Los Angeles
Nehal J. Lakhani
The START Center for Cancer Research, Grand Rapids, MI
Jason Timothy Henry
Sarah Cannon Research Institute at HealthONE, Denver, CO
Steven Francis Powell
Hematology and Oncology, Sanford Cancer Center, Sioux Falls, SD
Niharika B. Mettu
Duke University, Durham, NC
Joyce Gakuria
Sapience Therapeutics, Inc., Tarrytown, NY
Franco Abbate
Sapience Therapeutics, Inc., Tarrytown, NY
Paolo Nuciforo
Jim Rotolo
Sapience Therapeutics, Inc., Tarrytown, NY
Abi Vainstein Haras
Sapience Therapeutics, Inc., Tarrytown, NY