CClinicalTrials.gg
RecruitingNCT07691697PSMA-OLIGO-PROUpdated Sep 17, 2026

PSMA PET-Staged Comprehensive Progression-Directed Radiotherapy for Limited Progression in Prostate Cancer

An observational study in Oligoprogressive Prostate Cancer and Metastatic Prostate Cancer, sponsored by Affidea Nu-med Center of Oncological DIagnostics and Therapy. Recruiting at 1 site in Poland. Open to male participants aged 18 Years and older. Per ClinicalTrials.gov, last updated 2026-09-17.

Sponsored by Affidea Nu-med Center of Oncological DIagnostics and Therapy · Observational

Study type
Observational
Model
Cohort
Time perspective
Other
Enrollment
1,000
Ages
18 Years and older
Sex
Male
01

Study summary

PSMA-OLIGO-PRO is a multicenter, ambispective, observational real-world evidence registry of adults with metastatic hormone-sensitive or metastatic castration-resistant prostate cancer who develop a limited number of progressing metastatic lesions during active systemic therapy and are considered for comprehensive progression-directed radiotherapy (PDRT) in routine clinical care. The registry includes retrospective cases treated before June 26, 2026, and prospective cases enrolled from June 26, 2026, onward. Before the site-specific protocol amendment takes effect, the metastatic-lesion ceiling is 1-5. After the amendment takes effect, prospective candidates with 1-10 qualifying progressing metastatic lesions on baseline PSMA PET/CT or PSMA PET/MRI may be included. Metastatic burden is prespecified as 1-5 lesions, representing classical oligoprogression, or 6-10 lesions, representing exploratory, PSMA PET-defined, limited progression. Intraprostatic and prostate-bed progressing foci are recorded separately from the metastatic count and must also be included in the comprehensive PDRT plan. Otherwise eligible local-only episodes form a separate descriptive stratum. All qualifying metastatic and locally progressing sites must be deemed technically amenable to definitive-intent PDRT before prospective analytic-cohort enrollment. The registry does not assign imaging, systemic therapy, or radiotherapy; these clinical decisions are made independently by the treating team in routine care. A qualifying baseline PSMA PET and documentation of comprehensive treatability are required for inclusion.

The primary endpoint is time to next systemic therapy in the continuation-plan treatment-start set. Key secondary outcomes include PDRT initiation and comprehensive implementation, time to widespread or non-PDRT-amenable progression, classical time to polymetastatic progression in the baseline 1-5 cohort, radiographic progression-free survival, lesion-level local control, overall survival, and treatment-related toxicity. The prespecified 1-5 versus 6-10 comparison is restricted to concurrent post-amendment prospective participants and is exploratory.

Read the detailed description

PSMA-OLIGO-PRO is a multicenter, ambispective, observational real-world evidence registry of adults with metastatic prostate adenocarcinoma who develop limited progression during active systemic therapy and are considered for comprehensive progression-directed radiotherapy (PDRT) in routine clinical practice. The study does not assign imaging, systemic therapy, or radiotherapy. Decisions to obtain PSMA PET, to determine the pre-PDRT systemic-management plan, and to consider comprehensive PDRT are made independently of registry participation. The registry comprises three calendar-defined data-origin cohorts: (1) a retrospective classical-burden cohort treated before June 26, 2026, with 1-5 qualifying progressing metastatic lesions; (2) a prospective pre-amendment classical-burden cohort enrolled from June 26, 2026, until the amendment becomes effective at each site, with 1-5 qualifying progressing metastatic lesions; and (3) a post-amendment prospective cohort with 1-10 qualifying progressing metastatic lesions. Within the post-amendment cohort, burden is prespecified as 1-5 versus 6-10 metastatic lesions. Six to ten lesions constitute an exploratory expanded-burden limited-progression stratum and are not presented as an established consensus definition of oligoprogression. Baseline PSMA PET/CT or PSMA PET/MRI is mandatory for every included episode. For post-amendment prospective enrollment, the qualifying PSMA PET must be performed within 60 days before enrollment, and index PDRT must be planned to begin within 60 days after the scan. Repeat staging or documented multidisciplinary reconfirmation is required if this interval is exceeded or if an intervening clinical event or systemic-treatment change could alter metastatic burden. The eligibility ceiling and burden stratum are based only on qualifying progressing metastatic lesions. Intraprostatic and prostate-bed progressing foci are recorded separately, do not count toward the metastatic ceiling, and must also be included in the comprehensive PDRT plan. Otherwise eligible patients with zero progressing metastases and isolated local or prostate-bed progression form a separate descriptive stratum and do not contribute to the metastatic-burden comparison or metastatic-threshold progression endpoints. Before prospective analytic-cohort enrollment, all qualifying metastatic and local progressing sites must be judged technically amenable to definitive-intent PDRT. Candidates deemed feasible are enrolled before the first PDRT fraction. Prospectively enrolled participants who do not start or do not complete all planned PDRT remain in the enrolled and implementation denominators. Only participants receiving at least one PDRT fraction enter the prospective safety set and the treatment-start clinical-outcome sets. PDRT may include stereotactic body radiotherapy, moderately hypofractionated external-beam radiotherapy, high-dose-rate or low-dose-rate brachytherapy, combined external-beam and brachytherapy, or mixed-modality treatment, according to institutional standards. Every qualifying metastatic and local progressing site must be included in a predefined index treatment strategy. For post-amendment prospective participants, PDRT initiation is assessed within 60 days after enrollment, and comprehensive implementation requires definitive-intent treatment of every locked baseline site within 60 days after the first index fraction. The primary endpoint is time to next systemic therapy (TTNS) in treatment-start participants whose pre-PDRT management plan was continuation of the same systemic regimen and who had not initiated a new systemic therapy line before the first PDRT fraction. Participants with a documented pre-PDRT plan to change or escalate systemic therapy are excluded from the primary TTNS estimand but remain eligible for other analyses. The broad TTNS definition used in the first posted registry version is retained as a supportive analysis for all treatment-start participants. The common expanded-state progression endpoint is time to widespread or non-PDRT-amenable progression (TWNP-10), defined by more than 10 new or unequivocally regrowing metastatic lesions, diffuse or non-enumerable progression, or a documented determination that all active progressing sites can no longer be safely treated with comprehensive definitive-intent local therapy. A supportive classical endpoint, TTPP-5, is restricted to participants with 1-5 metastatic lesions at baseline and retains the threshold of more than five progressing metastatic lesions or loss of comprehensive PDRT eligibility. Other outcomes include radiographic progression-free survival, lesion-level local control, overall survival, repeat limited progression, subsequent lesion-directed therapy, PDRT initiation and comprehensive implementation, disease trajectory, and acute and late treatment-related adverse events graded according to CTCAE version 5.0. The primary 1-5 versus 6-10 metastatic-burden comparison is limited to concurrent post-amendment prospective participants and uses endpoint-specific denominators. All comparisons are exploratory and estimate associations rather than causal treatment effects.

The coordinating center uses a controlled data dictionary and prespecified edit checks for date order, metastatic-count consistency, cohort assignment, lesion-to-treatment linkage, dose and fraction plausibility, endpoint derivation, and duplicate records. Data queries are sent to participating sites for correction or documented resolution. Selected post-amendment records, enriched for 6-10 metastases and discordant disease, may undergo source-data, imaging, and treatment-completeness review. Missingness is reported by data-origin cohort and burden stratum, and time-to-event observations without an event are censored at the last adequate assessment. The statistical analysis plan will be finalized before the comparative post-amendment data lock.

02

Conditions studied

  • Oligoprogressive Prostate Cancer
  • Metastatic Prostate Cancer

Browse trials for

Keywords

  • PSMA PET
  • Oligoprogression
  • Prostate Cancer
  • Progression-Directed Radiotherapy
  • Stereotactic Body Radiotherapy
  • Brachytherapy
  • Metastasis-Directed Therapy
  • Castration-Resistant Prostate Cancer
  • Hormone-Sensitive Prostate Cancer
  • Time to Next Systemic Therapy
  • Real-World Evidence
  • Ambispective Registry
  • Prospective Registry
  • Expanded-burden limited progression
  • 6-10 metastatic lesions
  • Comprehensive progression-directed radiotherapy
03

Who can participate

Ages eligible
18 Years and older
Sexes eligible
Male
Accepts healthy volunteers
No
Sampling method
Non-probability sample

Study population

Adults with histologically confirmed prostate adenocarcinoma and metastatic hormone-sensitive or metastatic castration-resistant disease receiving active systemic therapy at participating centers. Before amendment activation, eligible metastatic progression is limited to 1-5 lesions. After site-specific amendment activation, prospective candidates have 1-10 qualifying progressing metastatic lesions on baseline PSMA PET and undergo formal review to determine whether every metastatic and local progressing site can be treated with comprehensive PDRT. Otherwise, eligible local-only cases form a separate descriptive stratum.

Eligibility criteria

  • Age 18 years or older.
  • Histologically confirmed prostate adenocarcinoma.
  • Metastatic hormone-sensitive or metastatic castration-resistant prostate cancer.
  • Active systemic anticancer therapy at the qualifying limited-progression assessment.
  • Qualifying baseline PSMA PET/CT or PSMA PET/MRI with review of relevant anatomical imaging.
  • Metachronous, repeat, or induced oligoprogression or limited progression according to the protocol framework.
  • Retrospective cases treated before June 26, 2026: 1-5 qualifying progressing metastatic lesions.
  • Prospective cases enrolled before the site-specific amendment effective date: 1-5 qualifying progressing metastatic lesions.
  • Prospective cases enrolled after the site-specific amendment effective date: 1-10 qualifying progressing metastatic lesions, prespecified as 1-5 or 6-10.
  • Intraprostatic or prostate-bed progressing foci are recorded separately from the metastatic-lesion count and must also be technically amenable to comprehensive PDRT.
  • Every qualifying metastatic and local progressing site is judged technically amenable to comprehensive definitive-intent PDRT before prospective analytic-cohort enrollment.
  • For post-amendment prospective enrollment, qualifying PSMA PET performed within 60 days before enrollment and index PDRT planned to begin within 60 days after the scan.
  • Availability of the qualifying PET date, systemic-therapy dates, locked metastatic-lesion count, separate local-site count, lesion map, and eligibility decision. For retrospective inclusion, PDRT exposure and at least one outcome or censoring time must also be determinable.

Exclusion Criteria

  • Limited progression defined only by conventional CT, MRI, or bone scintigraphy without a qualifying PSMA PET examination.
  • More than five qualifying progressing metastatic lesions for retrospective or pre-amendment inclusion.
  • More than 10 qualifying progressing metastatic lesions after amendment activation.
  • Diffuse, non-enumerable, or rapidly progressive disease that is not considered suitable for comprehensive lesion-directed radiotherapy.
  • Any known active metastatic or local progressing site that cannot be included in the comprehensive PDRT plan.
  • Clinical deterioration or an urgent systemic-treatment indication that makes comprehensive PDRT inappropriate or unsafe.
  • Radiotherapy delivered solely with palliative symptom-control intent rather than definitive progression-directed local-control intent.
  • For prospective participation, inability to complete the approved consent process.
  • For retrospective cases, missing baseline imaging or core dates such that metastatic burden, PDRT exposure, or at least one outcome or censoring time cannot be determined reliably.
04

Study design

Observational model
Cohort
Time perspective
Other
Enrollment
1,000 participants (estimated)
Target follow-up
5 Years
Patient registry
Yes

Groups and cohorts

  • PSMA PET-Staged Limited-Progression Registry Cohort

    A single-observational registry cohort comprises adults with prostate cancer who have limited progression during active systemic therapy and are considered for comprehensive PDRT in routine clinical care. Data origin is classified as retrospective classical burden, prospective pre-amendment classical burden, or prospective post-amendment. In the post-amendment cohort, metastatic burden is prespecified as 1-5 or 6-10 qualifying progressing metastases. Prospectively enrolled feasible candidates remain in the cohort if PDRT does not start or is incomplete. PDRT is not assigned by the registry.

    Radiation: Comprehensive Progression-Directed Radiotherapy

Interventions

  • RadiationComprehensive Progression-Directed Radiotherapy

    Observed routine-care exposure includes definitive-intent radiotherapy planned for every qualifying metastatic site and for local or prostate-bed progressing sites identified in the index episode. Treatment may include stereotactic body radiotherapy, moderately hypofractionated external-beam radiotherapy, high-dose-rate or low-dose-rate brachytherapy, combined external-beam and brachytherapy, or mixed-modality radiotherapy. The registry does not assign treatment. Treatment modality, dose, fractionation, timing, site-level completion, and reasons for non-start or incomplete treatment are recorded.

    Also known as: PDRT, Stereotactic Body Radiotherapy, SBRT, Brachytherapy, Metastasis-Directed Therapy, MDT

05

What researchers measure

Primary outcomes

  1. Time to Next Systemic Therapy in the Continuation-Plan Treatment-Start Set

    Time from the first PDRT fraction to initiation of the first new systemic anticancer therapy line among participants who receive at least one PDRT fraction, whose management plan documented before PDRT was continuation of the same systemic regimen, and who had not initiated a new systemic line before the first PDRT fraction. Death before initiation of a new line is treated as a competing event; otherwise, participants are censored at the last adequate assessment.

    Time frame: From first index PDRT fraction to a new systemic therapy line, death, last adequate assessment, or study data cutoff, up to 5 years

Secondary outcomes

  1. Classical Time to Polymetastatic Progression (TTPP-5)

    Supportive endpoint restricted to participants with 1-5 qualifying progressing metastases at baseline. Time to more than five new or unequivocally regrowing qualifying metastatic lesions at one assessment or to disease that is no longer safely amenable to comprehensive PDRT. Participants entering with 6-10 metastases do not contribute. Death without the progression state is treated as a competing event.

    Time frame: From first index PDRT fraction to the event, death, last adequate assessment, or study data cutoff, up to 5 years

  2. Radiographic Progression-Free Survival

    Time from the first index PDRT fraction to radiographic progression at any site or death from any cause, whichever occurs first. Imaging modality and assessment date are recorded. Progression based only on an unconfirmed change in PSMA uptake is not accepted unless it meets the protocol confirmation criteria.

    Time frame: From first index PDRT fraction to radiographic progression, death, last adequate assessment, or study data cutoff, up to 5 years

  3. Overall Survival

    Time from the first index PDRT fraction to death from any cause. Participants alive at the last known follow-up are censored on that date.

    Time frame: From first index PDRT fraction to death, last known follow-up, or study data cutoff, up to 5 years

  4. Lesion-Level Local Control

    Time from completion of PDRT for an individual treated lesion to unequivocal in-field progression of that lesion. Lesions are linked to participants and analyzed with methods that account for within-participant clustering. Death without local failure is treated as a competing event.

    Time frame: From completion of PDRT for each lesion to local failure, death, last adequate assessment, or study data cutoff, up to 5 years

  5. Acute and Late Treatment-Related Adverse Events

    Number and proportion of prospectively enrolled participants who receive at least one index PDRT fraction and experience treatment-related adverse events graded by CTCAE version 5.0. Acute events occur through day 90 after treatment initiation and late events occur after day 90. Maximum grade, serious events, grade 2 or higher events, grade 3 or higher events, and selected site-specific toxicities are summarized. Retrospectively ascertained toxicity is reported separately when adequate.

    Time frame: From first index PDRT fraction through day 90 for acute events and from day 91 through study data cutoff, up to 5 years, for late events

  6. Time to First Repeat Limited-Progression Episode

    Time from the first index PDRT fraction to the first subsequent limited-progression episode with no more than 10 new or unequivocally regrowing qualifying metastatic lesions at one assessment and with every active progressing metastatic and local site judged technically amenable to comprehensive PDRT. Death before repeat limited progression is treated as a competing event; otherwise participants are censored at the last adequate assessment.

    Time frame: From first index PDRT fraction to repeat limited progression, death, last adequate assessment, or study data cutoff, up to 5 years

  7. Time to Next Systemic Therapy in All Treatment-Start Participants

    Supportive analysis of time from the first fraction of index PDRT to initiation of the first new systemic anticancer therapy line among all participants who receive at least one PDRT fraction, regardless of the pre-PDRT intended systemic-management strategy. This outcome preserves the population scope of the first posted registry version. Death before a new line is treated as a competing event; otherwise participants are censored at the last adequate assessment.

    Time frame: From first index PDRT fraction to a new systemic therapy line, death, last adequate assessment, or study data cutoff, up to 5 years

  8. Time to Widespread or Non-PDRT-Amenable Progression (TWNP-10)

    Time to the earliest of more than 10 new or unequivocally regrowing qualifying metastatic lesions at one assessment; diffuse, confluent, or otherwise non-enumerable progression; or a documented multidisciplinary determination that all active progressing sites can no longer be safely treated with comprehensive definitive-intent local therapy. Death without this progression state is treated as a competing event.

    Time frame: From first index PDRT fraction to the event, death, last adequate assessment, or study data cutoff, up to 5 years

  9. Time to First Subsequent Lesion-Directed Therapy

    Time from the first index PDRT fraction to initiation of the first subsequent local treatment course for repeat limited progression. Participants without subsequent lesion-directed therapy are censored at the last adequate assessment.

    Time frame: From first index PDRT fraction to subsequent lesion-directed therapy, last adequate assessment, or study data cutoff, up to 5 years

Other outcomes

  1. Disease Trajectory After Index PDRT

    Number and proportion of participants whose first post-PDRT trajectory is repeat limited progression involving no more than 10 qualifying progressing metastases, crossing of the classical threshold of more than five progressing metastases, direct widespread or non-PDRT-amenable progression, or death without documented progression.

    Time frame: From first index PDRT fraction to the first qualifying trajectory state, death, or study data cutoff, up to 5 years

06

Study locations

1 of 1 sites recruiting
  • Affidea Nu-Med Cancer Diagnostics and Therapy Center
    Zamość, Lublin Voivodeship 22-400, Poland
    Recruiting
07

References and documents

Publications

  • Armstrong AJ, Morris MJ, Abida W, Aggarwal RR, Antonarakis ES, Attard G, Beltran H, Bryce A, Carducci MA, Cheng HH, Chen DL, Chi KN, Childs DS, Dahut W, Emmett L, Fizazi K, Gafita A, George DJ, Hermann K, Hofman MS, Hope T, Hussain M, Kelly WK, Kessler E, Kuo PH, Lang J, Liu G, Marshall CH, Morgans AK, McKay RR, Nanus D, Nelson P, Paller C, Reichert ZR, Ryan CJ, Sartor AO, Schoder H, Schwartz LH, Sharifi N, Stadler WM, Stein M, Sternberg CN, Szmulewitz RZ, Tagawa ST, Sokolova AO, Wyatt AW, Yamoah K, Yu EY, Halabi S, Scher HI; PCWG4 Writing Group. Trial Design and Objectives for Patients With Prostate Cancer: Recommendations From the Prostate Cancer Working Group 4. J Clin Oncol. 2026 May;44(13):1249-1265. doi: 10.1200/JCO-25-02834. Epub 2026 Feb 26. PubMed 41744290 ↗
  • Ashram S, Bahig H, Barry A, Blanchette D, Celinksi A, Chung P, Darko J, Donath D, Doucet R, Erickson A, Giuliani M, Gopaul D, Hipwell S, Javor J, Kuk J, Lindsay P, Millman B, Oliver M, Pearce A, Russell C, Senthi S, Vu T, Warner A, Gaede S, Palma DA. Planning Trade-offs for SABR in Patients With 4 to 10 Metastases: A Substudy of the SABR-COMET-10 Randomized Trial. Int J Radiat Oncol Biol Phys. 2022 Dec 1;114(5):1011-1015. doi: 10.1016/j.ijrobp.2022.05.035. Epub 2022 Jun 3. No abstract available. PubMed 35667527 ↗
  • Palma DA, Olson R, Harrow S, Correa RJM, Schneiders F, Haasbeek CJA, Rodrigues GB, Lock M, Yaremko BP, Bauman GS, Ahmad B, Schellenberg D, Liu M, Gaede S, Laba J, Mulroy L, Senthi S, Louie AV, Swaminath A, Chalmers A, Warner A, Slotman BJ, de Gruijl TD, Allan A, Senan S. Stereotactic ablative radiotherapy for the comprehensive treatment of 4-10 oligometastatic tumors (SABR-COMET-10): study protocol for a randomized phase III trial. BMC Cancer. 2019 Aug 19;19(1):816. doi: 10.1186/s12885-019-5977-6. PubMed 31426760 ↗
  • Eule CJ, Candelario N, Nath SK, Robin TP. Time to Next Systemic Therapy After Stereotactic Body Radiation Therapy for Oligoprogressive Metastatic Castrate-Resistant Prostate Cancer. Adv Radiat Oncol. 2024 Oct 20;9(12):101655. doi: 10.1016/j.adro.2024.101655. eCollection 2024 Dec. PubMed 39620140 ↗
  • Alzibdeh A, Wahbeh L, Taha SA, Qambar M, Al Mousa A, Khader J, Abuhijla F, Erjan A, Alnsour A, Mohamad I, Sharaf B, Ahmed S, Mheid S, Abdel-Razeq H, Asha W. Metastasis-Directed Stereotactic Body Radiation Therapy in Oligometastatic and Oligoprogressive Solid Malignancy: Outcomes and Effect on Systemic Treatment. JCO Glob Oncol. 2025 Oct;11:e2500004. doi: 10.1200/GO-25-00004. Epub 2025 Oct 3. PubMed 41043100 ↗
  • Lievens Y, Guckenberger M, Gomez D, Hoyer M, Iyengar P, Kindts I, Mendez Romero A, Nevens D, Palma D, Park C, Ricardi U, Scorsetti M, Yu J, Woodward WA. Defining oligometastatic disease from a radiation oncology perspective: An ESTRO-ASTRO consensus document. Radiother Oncol. 2020 Jul;148:157-166. doi: 10.1016/j.radonc.2020.04.003. Epub 2020 Apr 22. PubMed 32388150 ↗
  • Guckenberger M, Lievens Y, Bouma AB, Collette L, Dekker A, deSouza NM, Dingemans AC, Fournier B, Hurkmans C, Lecouvet FE, Meattini I, Mendez Romero A, Ricardi U, Russell NS, Schanne DH, Scorsetti M, Tombal B, Verellen D, Verfaillie C, Ost P. Characterisation and classification of oligometastatic disease: a European Society for Radiotherapy and Oncology and European Organisation for Research and Treatment of Cancer consensus recommendation. Lancet Oncol. 2020 Jan;21(1):e18-e28. doi: 10.1016/S1470-2045(19)30718-1. PubMed 31908301 ↗
  • Patel P, Dreibe S, Attard G, Cole A, Diez P, Frew J, Guevara J, Levine D, McDonald F, Mullassery V, Murray J, Parker C, Palaniappan N, Pathmanathan A, Reid A, Suh YE, Syndikus I, Tirona A, Tran A, Tunariu N, van As NJ, Wylie J, Tree AC. Stereotactic Body Radiation Therapy for Oligoprogressive Disease in Androgen-Suppressed Prostate Cancer: Primary Endpoint Analysis of the TRAP Trial. Int J Radiat Oncol Biol Phys. 2026 May 1;125(1):285-294. doi: 10.1016/j.ijrobp.2025.02.046. Epub 2025 Mar 9. PubMed 40068778 ↗
  • Nikitas J, Castellanos Rieger A, Farolfi A, Seyedroudbari A, Kishan AU, Nickols NG, Steinberg ML, Valle LF, Rettig M, Czernin J, Calais J. Prostate-Specific Membrane Antigen PET/CT-Guided, Metastasis-Directed Radiotherapy for Oligometastatic Castration-Resistant Prostate Cancer. J Nucl Med. 2024 Sep 3;65(9):1387-1394. doi: 10.2967/jnumed.124.267922. PubMed 39089811 ↗
  • Rans K, Joniau S, Berghen C, Goffin K, Dumez H, Haustermans K, De Meerleer G. Progression-directed Therapy in Oligoprogressive Castration-resistant Prostate Cancer: Final Results from the Prospective, Single-arm, Phase 2 MEDCARE Trial. Eur Urol Oncol. 2024 Dec;7(6):1441-1450. doi: 10.1016/j.euo.2024.04.003. Epub 2024 Apr 25. PubMed 38664137 ↗
  • Deek MP, Taparra K, Phillips R, Velho PI, Gao RW, Deville C, Song DY, Greco S, Carducci M, Eisenberger M, DeWeese TL, Denmeade S, Pienta K, Paller CJ, Antonarakis ES, Olivier KR, Park SS, Tran PT, Stish BJ. Metastasis-directed Therapy Prolongs Efficacy of Systemic Therapy and Improves Clinical Outcomes in Oligoprogressive Castration-resistant Prostate Cancer. Eur Urol Oncol. 2021 Jun;4(3):447-455. doi: 10.1016/j.euo.2020.05.004. Epub 2020 Jun 11. PubMed 32536574 ↗

Individual participant data

Plan to share: Yes — De-identified individual participant data underlying future publications may include data-origin cohort, locked progressing-metastasis count, 1-5 or 6-10 burden stratum, separate local or prostate-bed site count, PSMA PET characteristics, lesion-level PDRT delivery and completion, pre-PDRT systemic-management plan, follow-up, progression, survival, and toxicity outcomes. Screening-log data from individuals not enrolled in the registry will not be shared unless specifically permitted by the approved lawful basis. Sharing remains subject to steering-group approval, applicable ethics and data-protection requirements, and a data-sharing agreement.

Supporting information: Study protocol

08

Registry details

Key details

Study ID
NCT07691697
Lead sponsor
Affidea Nu-med Center of Oncological DIagnostics and Therapy
Responsible party
Mateusz Bilski (Medical Director and Head of Radiotherapy Department, Affidea Nu-med Center of Oncological DIagnostics and Therapy) — Principal investigator
First posted
Jul 9, 2026
Start date
Jun 26, 2026
Primary completion
Dec 30, 2030 (estimated)
Completion
Dec 30, 2031 (estimated)
Last update
Sep 17, 2026

Study contacts

Mateusz Bilski, MD, PhD
Contact
mateusz.bilski@affidea.com
84 535 99 10 ext. +48
Paulina Kleban
Contact
paulina.kleban@affidea.com
84 535 99 10 ext. +48

Oversight

Data monitoring committee
No
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

Interested in this study?

Eligibility is decided by the study team. Share this record with your doctor or contact the team directly.

Contact study team

Follow this study

Get an email when the registry record changes — status, dates, results — or when someone posts here.

Sign in to follow

Discussion

Questions and observations about this study, from anyone following it. Not medical advice, and not a channel to the study team — their contact details are on the registry record.

Sign in to join the discussion. Reading takes no account; posting does. You choose a display name, and a pseudonym is the default.

Nothing here yet. If you are running this trial, taking part in it, or weighing whether to, this is the place to say so.

Start the discussion