Background: Biochemically recurrent prostate cancer (BCR) occurs when prostate-specific antigen (PSA) levels in the blood rise after surgery or radiation. BCR affects 30,000 to 50,000 men each year. Researchers want to know if a drug (N-803) alone or combined with a vaccine (ETBX-071) can reduce PSA in BCR prostate cancer after radiation. Objective: To test a study drug alone and combined with a vaccine in people with BCR prostate cancer who have been treated with targeted radiation to areas of recurrent prostate cancer in the past. Eligibility: People aged 18 years and older with BCR prostate cancer who have previously undergone treatment with stereotactic body radiation therapy (SBRT). Design: Participants will be screened. They will have a physical exam with blood tests. They will have tests of their heart and kidney function. They will have 3 different imaging scans of their tumors. N-803 is injected under the skin of the abdomen. ETBX-071 is injected under the skin of thigh. Participants will be divided into 2 groups: 1 group will get N-803 alone; 1 group will get both N-803 and ETBX-071. The drug or drugs will be given on the first day of 21-day treatment cycles. Participants will have 8 treatment cycles. Participants will have a follow-up visit 3 weeks after their last dose of the study drugs. Blood tests and all 3 imaging scans will be repeated. Follow-up visits will continue every 4 to 8 weeks for 5 years. These visits will include a positron emission tomography (PET) scan every 6 months.
Background: * Biochemical recurrence (BCR) denotes rising prostate serum antigen (PSA) and negative computed tomography (CT) and Tc99 bone scan following radical prostatectomy and/or definitive local radiation. * Beyond local salvage radiation options, the management of BCR has not been clearly defined. * As BCR is an asymptomatic stage of disease which can take years to progress to overt metastatic disease, treatment for this stage should have minimal side effects and only be for a limited duration of time. * The advent of prostate-specific membrane antigen (PSMA)-based imaging has driven stereotactic body radiation therapy (SBRT) in BCR despite lack of robust evidence. * Further study is required to ascertain the role of SBRT in BCR. * Due to the presence of only microscopic disease, BCR may be the ideal stage of the disease to evaluate immunotherapy. * Previous studies in the GMB have demonstrated that vaccine can lead to delayed declines in PSA. * N-803 is an IL-15 superagonist which increases the number of natural killer (NK) and CD8 T cells without expanding regulatory T-cells. The net effect is to increase the inflammatory milieu of the tumor microenvironment and this is FDA approved for the treatment of superficial bladder cancer. There is clinical evidence of the activity of N-803 in prostate cancer. * The ETBX-071 is an adenoviral-based vaccine against PSA. * We have previously demonstrated the effects of vaccine in BCR. N-803 has demonstrated preclinical synergy with vaccine and has also been associated with PSA declines in a combination immunotherapy trial in metastatic prostate cancer. Objectives: -To estimate efficacy of N-803 alone or with ETBX-071 vaccine, each administered for 6 months, in participants with biochemically recurrent prostate cancer following PSA progression after SBRT Eligibility: * Biochemically recurrent prostate cancer, defined as PSA over 0.8 ng/ml following radical prostatectomy or \>= 2 ng/ml above the nadir following definitive radiotherapy. * No evidence of soft tissues disease on CT scan and bone metastasis on technetium-99m (Tc99) bone scan. * PSA rise of at least 25% of nadir following prior SBRT treatment for recurrent prostate cancer * Eastern Cooperative Oncology Group (ECOG) performance score 0-1. * No active or organ-threatening autoimmune disease. Design: * This is an open-label phase 2 study in which all participants have received prior SBRT and experienced subsequent PSA progression. * Participants will be randomized between two treatments: N-803 for 6 months versus N-803 with ETBX-071 vaccine for 6 months.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
65
15 mg/kg subcutaneous on Day 1 of every 3-week cycle for up to 8 cycles
The dose to be injected is 5(SqrRoot) 10\^11 viral particles (VP) per 1 mL. Injected subcutaneously on Day 1 of every 3-week cycle for a total of up to 8 cycles
Single IV dose of 18F-DCFPyL by bolus injection. The target administered activity will be 6.5 mCi with a lower limit of 6 mCi
National Institutes of Health Clinical Center
Bethesda, Maryland, United States
Efficacy of N-803 alone or with ETBX-071 vaccine
PSA30 response- defined as a \>= 30% reduction in PSA from PSA at C1D1 of immunotherapy (comparing C1D1 PSA to timepoints during and after immunotherapy). The fractions with PSA30 response will be reported along with a 95% confidence interval, separately for the two randomized treatment groups.
Time frame: D1 of each cycle of immunotherapy, at the end of treatment and every 4-8 weeks during follow-up until up to 5 years
Duration of PSA50 response
Duration of PSA response will be evaluated using the Kaplan-Meier method unless all participants are identified as having an end to their response (no censoring). The median duration of PSA response will be reported, starting at the date the PSA30 response was identified, along with a 95% confidence interval for the median, separately for the two randomized treatment groups.
Time frame: D1 of each cycle of immunotherapy, at the end of treatment and every 4-8 weeks during follow-up until up to 5 years
Time to PSA progression
Time to PSA progression after immunotherapy will be evaluated using the Kaplan-Meier method unless all participants are identified as having an end to their response (no censoring). The median time to PSA progression will be reported, starting at the date Cycle 1 began, along with a 95% confidence interval for the median.
Time frame: D1 of each cycle of immunotherapy, at the end of treatment and every 4-8 weeks during follow-up until up to 5 years
PSA doubling timing
PSA doubling time at randomization, compared to PSA doubling time at the end of treatment (EOT) visit.
Time frame: D1 of each cycle of immunotherapy, at the end of treatment and every 4-8 weeks during follow-up until up to 5 years
Proportion of participants with 30% PSA decline receiving immunotherapy treatment after SBRT
The median changes in PSA doubling time (in months) will be determined separately for both treatment groups with paired differences compared within participants using a Wilcoxon signed rank test.
Time frame: D1 of each cycle of immunotherapy, at the end of treatment and every 4-8 weeks during follow-up until up to 5 years
Safety
The number, grades, and types of adverse events will be reported separately for participants assigned to each treatment group using descriptive statistics.
Time frame: C1D1 of each cycle during immunotherapy and at the end of treatment
Changes in PSMA PET scans
These will be summarized descriptively.
Time frame: Prior to treatment, at end of treatment and in follow-up every 6 months
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