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Published on: July 25, 2020
First phase 1 clinical study of olaparib in pediatric patients with refractory solid tumors
Masatoshi Takagi1, Chitose Ogawa2, Tomoko Iehara3
1Department of Pediatrics and Developmental Biology, Tokyo Medical and Dental University, Bunkyo-ku, Tokyo, Japan.
Background:
The survival of patients with high-risk, refractory, relapsed, or metastatic solid tumors remains dismal. A poly(ADP-ribose) polymerase (PARP) inhibitor could be effective for the treatment of pediatric solid tumors with defective homologous recombination.
Methods:
This open-label, multicenter phase 1 clinical trial evaluated the safety, tolerability, and efficacy of olaparib, a PARP inhibitor, in pediatric patients with refractory solid tumors to recommend a dose for Phase 2 trials. Olaparib (62.5, 125, and 187.5 mg/m2 twice daily) was administered orally every day (1 cycle = 28 days) using a standard 3 + 3 dose-escalation design. Patients aged 3-18 years with recurrent pediatric solid tumors were eligible. Pharmacokinetic and pharmacodynamic analyses were performed.
Results:
Fifteen patients were enrolled and received olaparib monotherapy, which was well tolerated. The recommended phase 2 dose for daily administration was 187.5 mg/m2 twice daily. Pharmacokinetics were dose proportional. The area under the concentration-time curve from 0 to 12 h and the peak plasma concentration for 187.5 mg/m2 twice daily in children were comparable to previous data obtained in a 200-mg, twice-daily cohort and lower than those in the 300-mg twice-daily cohort in adults. Pharmacodynamic studies demonstrated substantial inhibition of PARP activity. Two partial responses were observed in patients with Wilms tumor and neuroblastoma.
Conclusions:
This report is the first clinical trial to describe the use of a PARP inhibitor as monotherapy in children. Olaparib was well tolerated, with preliminary antitumor responses observed in DNA damage response-defective pediatric tumors.
Lay Summary:
This Phase 1 trial evaluated the efficacy and safety of olaparib in patients with refractory childhood solid tumors. Olaparib was well tolerated, achieving objective response in 2/15 patients. The DNA damage response was attenuated in nearly one-half of advanced neuroblastoma patients, demonstrating the utility of the PARP inhibitor. The results support further investigation of olaparib as a new treatment for DNA damage-response or repair-defective pediatric cancers.
Insights
Olaparib, a poly(ADP-ribose) polymerase (PARP) inhibitor, shows promise for treating pediatric solid tumors. This Phase 1 trial found olaparib well-tolerated with preliminary antitumor responses in children.
Area of Science:
- Pediatric Oncology
- Clinical Pharmacology
- Cancer Therapeutics
Background:
- High-risk, refractory, relapsed, or metastatic solid tumors in children have a poor prognosis.
- Poly(ADP-ribose) polymerase (PARP) inhibitors are a potential treatment for pediatric solid tumors with homologous recombination defects.
Purpose of the Study:
- To evaluate the safety, tolerability, and efficacy of olaparib in pediatric patients with refractory solid tumors.
- To determine a recommended dose for Phase 2 trials of olaparib in children.
Main Methods:
- An open-label, multicenter Phase 1 clinical trial using a 3+3 dose-escalation design.
- Oral administration of olaparib at doses of 62.5, 125, and 187.5 mg/m² twice daily in patients aged 3-18 years.
- Pharmacokinetic, pharmacodynamic, and safety analyses were performed.
Main Results:
- Olaparib monotherapy was well tolerated in 15 enrolled pediatric patients.
- The recommended Phase 2 dose was determined to be 187.5 mg/m² twice daily.
- Pharmacokinetics were dose-proportional, and pharmacodynamic studies showed significant PARP inhibition; two partial responses were observed.
Conclusions:
- This is the first clinical trial of a PARP inhibitor as monotherapy in children.
- Olaparib demonstrated good tolerability and preliminary antitumor activity in DNA damage response-defective pediatric tumors.
- Further investigation of olaparib for pediatric cancers with DNA damage response or repair defects is warranted.
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