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Published on: March 6, 2018
A Phase II Trial of Abiraterone With Dutasteride for Second-Generation Antiandrogen- and Chemotherapy-Naïve Patients
Masaki Shiota1, Ryo Inoue2, Kojiro Tashiro3
1Department of Urology, Graduate School of Medical Sciences, Kyushu University, Fukuoka, Japan.
Abstract:
The development of a novel therapy to overcome primary and acquired resistance to abiraterone is an unmet need. This study aimed to evaluate the efficacy and safety of adding 5α-reductase inhibitor dutasteride to abiraterone, explore proof of concept, and identify candidates suitable for combination therapy. This phase II, single-arm, and open-label study enrolled second-generation antiandrogen- and chemotherapy-naïve patients with castration-resistant prostate cancer. Patients received abiraterone and prednisolone for 4 weeks, followed by adding dutasteride. The primary end point was a 50% prostate-specific antigen response rate. Serum concentrations of abiraterone and its metabolites as well as HSD3B1 and SRD5A2 genotypes were measured. The association between drug metabolism and genotypes and their impact on the efficacy of combination therapy were assessed. Among 21 patients, 18 (85.7%) achieved ≥50% PSA reduction. Median time to treatment failure was not reached during the median follow-up of 15.4 months. No patients experienced grade ≥3 adverse events. Although dutasteride reduced serum 3-keto-5α-abiraterone concentrations, higher serum 3-keto-5α-abiraterone concentrations on combination therapy were associated with a shorter time to treatment failure. HSD3B1 and SRD5A2 genotypes were associated with serum Δ4-abiraterone and 3-keto-5α-abiraterone concentrations before adding dutasteride, respectively. Time to treatment failure was longer in patients with homozygous wild-type HSD3B1, but comparable between those with the SRD5A2 genotype. The promising outcomes of this study warrant further investigation of combination therapy in a randomized trial. Stratification by HSD3B1 and SRD5A2 genetic profiles might identify patients suitable for combination therapy.
Insights
Adding dutasteride to abiraterone therapy shows promise for castration-resistant prostate cancer, with 85.7% achieving a 50% prostate-specific antigen response. This combination therapy was well-tolerated, with no severe adverse events observed.
Area of Science:
- Oncology
- Pharmacology
- Genetics
Background:
- Primary and acquired resistance to abiraterone is a significant clinical challenge in castration-resistant prostate cancer (CRPC).
- Novel therapeutic strategies are needed to overcome abiraterone resistance.
- Combination therapy may offer a new approach to enhance treatment efficacy in CRPC.
Purpose of the Study:
- To evaluate the efficacy and safety of combining dutasteride (a 5α-reductase inhibitor) with abiraterone in CRPC patients.
- To explore the proof-of-concept for this combination therapy.
- To identify patient subgroups potentially benefiting from this combination based on genetic profiles.
Main Methods:
- A phase II, single-arm, open-label study enrolled chemotherapy- and second-generation antiandrogen-naïve CRPC patients.
- Patients received abiraterone and prednisolone, followed by the addition of dutasteride.
- Prostate-specific antigen (PSA) response rates, serum drug concentrations, and HSD3B1/SRD5A2 genotypes were analyzed.
Main Results:
- 18 out of 21 patients (85.7%) achieved a ≥50% PSA reduction.
- No grade ≥3 adverse events were reported, indicating good tolerability.
- While dutasteride decreased 3-keto-5α-abiraterone, higher levels correlated with shorter treatment failure time; HSD3B1/SRD5A2 genotypes influenced drug metabolism and efficacy.
Conclusions:
- The combination of abiraterone and dutasteride demonstrates promising efficacy and safety in this CRPC patient cohort.
- Genetic profiling (HSD3B1 and SRD5A2) may help identify patients suitable for this combination therapy.
- Further investigation in a randomized trial is warranted to confirm these findings.
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