Repurposing of a Thromboxane Receptor Inhibitor Based on a Novel Role in Metastasis Identified by Phenome-Wide
Thomas A Werfel1,2, Donna J Hicks1, Bushra Rahman1
1Department of Cell and Developmental Biology, Vanderbilt University School of Medicine, Nashville, Tennessee.
Abstract:
Although new drug discoveries are revolutionizing cancer treatments, repurposing existing drugs would accelerate the timeline and lower the cost for bringing treatments to cancer patients. Our goal was to repurpose CPI211, a potent and selective antagonist of the thromboxane A2-prostanoid receptor (TPr), a G-protein-coupled receptor that regulates coagulation, blood pressure, and cardiovascular homeostasis. To identify potential new clinical indications for CPI211, we performed a phenome-wide association study (PheWAS) of the gene encoding TPr, TBXA2R, using robust deidentified health records and matched genomic data from more than 29,000 patients. Specifically, PheWAS was used to identify clinical manifestations correlating with a TBXA2R single-nucleotide polymorphism (rs200445019), which generates a T399A substitution within TPr that enhances TPr signaling. Previous studies have correlated 200445019 with chronic venous hypertension, which was recapitulated by this PheWAS analysis. Unexpectedly, PheWAS uncovered an rs200445019 correlation with cancer metastasis across several cancer types. When tested in several mouse models of metastasis, TPr inhibition using CPI211 potently blocked spontaneous metastasis from primary tumors, without affecting tumor cell proliferation, motility, or tumor growth. Further, metastasis following intravenous tumor cell delivery was blocked in mice treated with CPI211. Interestingly, TPr signaling in vascular endothelial cells induced VE-cadherin internalization, diminished endothelial barrier function, and enhanced transendothelial migration by tumor cells, phenotypes that were decreased by CPI211. These studies provide evidence that TPr signaling promotes cancer metastasis, supporting the study of TPr inhibitors as antimetastatic agents and highlighting the use of PheWAS as an approach to accelerate drug repurposing.
Insights
Repurposing the drug CPI211, an antagonist of thromboxane A2-prostanoid receptor (TPr), effectively inhibited cancer metastasis in mouse models. This study highlights TPr signaling
Area of Science:
- Oncology
- Pharmacology
- Genetics
Background:
- Drug repurposing accelerates cancer treatment development.
- CPI211 is a selective antagonist of the thromboxane A2-prostanoid receptor (TPr).
- TPr signaling influences coagulation, blood pressure, and cardiovascular homeostasis.
Purpose of the Study:
- To repurpose CPI211 for cancer treatment.
- To investigate the role of TPr signaling in cancer metastasis using phenome-wide association studies (PheWAS).
Main Methods:
- Conducted a PheWAS of the TBXA2R gene in over 29,000 patients.
- Correlated a TBXA2R single-nucleotide polymorphism (rs200445019) with clinical manifestations.
- Tested CPI211's efficacy in mouse models of spontaneous and induced metastasis.
- Investigated TPr signaling effects on endothelial barrier function and tumor cell migration.
Main Results:
- PheWAS identified an unexpected correlation between rs200445019 and cancer metastasis.
- CPI211 treatment potently blocked spontaneous metastasis and metastasis after tumor cell injection in mice.
- CPI211 did not affect primary tumor growth, proliferation, or motility.
- TPr signaling promotes tumor cell transendothelial migration by affecting endothelial barrier function.
Conclusions:
- TPr signaling is a novel promoter of cancer metastasis.
- TPr inhibitors like CPI211 show potential as antimetastatic agents.
- PheWAS is a valuable tool for accelerating drug repurposing for cancer therapies.


