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[18F]Fluorthanatrace - Positron Emission Tomography (FTT-PET) and ctDNA to Predict Response to PARP Inhibitor Therapy in Metastatic Prostate Cancer (mPC)

sunnuntai 19. heinäkuuta 2026 päivittänyt: Washington University School of Medicine

Integration of FTT-PET and ctDNA to Predict Response to PARP Inhibitor Therapy in Metastatic Prostate Cancer (mPC)

This multicenter center, open-label, baseline-controlled diagnostic imaging study designed to assess the use of Fluorthanatrace-Positron Emission tomography (FTT-PET) as a PARP inhibitor (PARPi) therapy predictive imaging biomarker and the use of EnhanceAR-Seq (ctDNA) in predicting response to therapy and to identify genomic alterations associated with resistance. Furthermore, to correlate changes in ctDNA and imaging (FTT-PET and standard of care imaging) to understand the dynamics of tumor response.

Tutkimuksen yleiskatsaus

Opintotyyppi

Interventio

Ilmoittautuminen (Arvioitu)

75

Vaihe

  • Vaihe 2

Yhteystiedot ja paikat

Tässä osiossa on tutkimuksen suorittajien yhteystiedot ja tiedot siitä, missä tämä tutkimus suoritetaan.

Opiskeluyhteys

Opiskelupaikat

    • Missouri
      • St Louis, Missouri, Yhdysvallat, 63110
        • Washington University School of Medicine
        • Ottaa yhteyttä:
        • Alatutkija:
          • Richard Laforest, PhD
        • Alatutkija:
          • Kooresh I Shoghi, PhD
        • Alatutkija:
          • Christopher A Maher, PhD
        • Alatutkija:
          • Cody Weimholt, MD
        • Alatutkija:
          • Melissa A Reimers, MD
        • Alatutkija:
          • Yu Tao, MD
        • Alatutkija:
          • Buck Rogers, PhD
    • Pennsylvania
      • Philadelphia, Pennsylvania, Yhdysvallat, 19104
        • University of Pennsylvania Abramson Cancer Center
        • Ottaa yhteyttä:
        • Päätutkija:
          • Nei Taunk, MD
    • Texas
      • Houston, Texas, Yhdysvallat, 77030
        • University of Texas MD Anderson Cancer Center
        • Ottaa yhteyttä:
          • Lilie Lin, MD
          • Puhelinnumero: 713-792-2121
        • Päätutkija:
          • Lilie Lin, MD
        • Alatutkija:
          • Franklin Wong, MD
        • Alatutkija:
          • Patrick G Pilie, MD

Osallistumiskriteerit

Tutkijat etsivät ihmisiä, jotka sopivat tiettyyn kuvaukseen, jota kutsutaan kelpoisuuskriteereiksi. Joitakin esimerkkejä näistä kriteereistä ovat henkilön yleinen terveydentila tai aiemmat hoidot.

Kelpoisuusvaatimukset

Opintokelpoiset iät

  • Aikuinen
  • Vanhempi Aikuinen

Hyväksyy terveitä vapaaehtoisia

Ei

Kuvaus

Inclusion Criteria:

  • Adult male patients 18 years of age or older
  • mCRPC with confirmed germline or somatic HRR (such as ATM, ATR, BRCA1, BRCA2, CDK12, CHEK2, FANCA, MLH1, MRE11A, NBN, PALB2, or RAD51C for Talazoparib/enzalutamide and ATMm, BRCA1m, BRCA2m, BARD1m, BRIP1m, CDK12m, CHEK1m, CHEK2m, FANCLm, PALB2m, RAD51Bm, RAD51Cm, RAD51Dm, RAD54Lm; gBRCA1m, gBRCA2m; ATMm, BRCA1m, BRCA2m for Olaparib +/- abiraterone) mutations who are scheduled for SOC PARPi therapy.
  • Lesion size of at least 1.0 cm in longest dimension by imaging. If non-measurable, lesion needs to be clearly detected on other imaging studies such as bone scintigraphy, FDG-PET, PSMA-PET or MRI.
  • On continuous androgen deprivation therapy (ADT) with appropriately suppressed castrate testosterone levels of < 50 ng/dL, or prior bilateral orchiectomy.
  • Serum PSA of 2 ng/mL or greater.
  • Eastern Cooperative Oncology Group (ECOG) performance status of 0-2.
  • Able to give informed consent

Exclusion Criteria:

  • Receipt of prior PARP inhibitor therapy in any disease setting.
  • Patients with other invasive malignancies, with the exception of non-melanoma skin cancer, who had (or have) any evidence of the other cancer that is active at the time of enrollment.
  • Unable to tolerate approximately 30 min (total time) of PET/CT imaging.

Opintosuunnitelma

Tässä osiossa on tietoja tutkimussuunnitelmasta, mukaan lukien kuinka tutkimus on suunniteltu ja mitä tutkimuksella mitataan.

Miten tutkimus on suunniteltu?

Suunnittelun yksityiskohdat

  • Ensisijainen käyttötarkoitus: Diagnostiikka
  • Jako: Ei käytössä
  • Inventiomalli: Yksittäinen ryhmätehtävä
  • Naamiointi: Ei mitään (avoin tarra)

Aseet ja interventiot

Osallistujaryhmä / Arm
Interventio / Hoito
Kokeellinen: FTT-PET/CT

Participants will undergo two FluorThanatrace (FTT) Positron Emission Tomography/Computed tomography (PET/CT) scans; one at baseline prior to starting standard of care (SOC) PARP inhibitor (PARPi) therapy and one two weeks after initiation of PARPi therapy. Each cycle of PARPi therapy is 28 days.

Blood samples for EnhanceAR-Seq ctDNA analysis will be collected from participants at baseline prior to therapy, post cycle 1,12 weeks after PARPi initiation, and at time of disease progression.

Eight participants will undergo an additional FTT-PET/CT prior to initiation of PARPi therapy.

[18F]fluorthanatrace (FTT) is a positron emitting radiopharmaceutical that is administered as an intravenous (IV) solution via injection at a prescribed dose of 10mCi. A lesser dose may be injected if complete imaging data could be generated.
Muut nimet:
  • [18F]FluoriThanatrace
  • [18F]FTT
  • FTT
A small intravenous (IV) catheter will be placed in the arm vein according to site's standard practice to allow injection of FTT. Approximately sixty minutes following administration of approximately 10 mCi of the radiotracer FTT, patients will undergo standard body PET/CT imaging.
Patients will undergo approximately 30 mL of peripheral blood sample collection to be used for analysis. For each sample, EnhanceAR-Seq will be performed on each of these samples, with somatic genomic alteration calling performed in plasma cell-free DNA with removal of background non-tumor variants using matched plasma-depleted whole blood germline samples.

Mitä tutkimuksessa mitataan?

Ensisijaiset tulostoimenpiteet

Tulosmittaus
Toimenpiteen kuvaus
Aikaikkuna
Prediction performance of FTT-PET as measured by concordance index (C-index)
Aikaikkuna: At baseline prior to PARPi therapy and post cycle 1 (estimated total time 28 days)
Prediction performance of FTT-PET in predicting participant response to PARPi therapy will be assessed by concordance index (C-index). The C-index is mathematically calculated as the number of concordant pairs divided by the number of comparable pairs. A C-index of 1 indicates perfect ranking, values close to 0.5 indicate random prediction, and values between 0.5 and 1 suggest some predictive ability (a value below 0.5 can be reversed by switching the response's 0 and 1 labels).
At baseline prior to PARPi therapy and post cycle 1 (estimated total time 28 days)
Prediction performance of FTT-PET as measured by area under the receiver operating characteristic (ROC) curve
Aikaikkuna: At baseline prior to PARPi therapy and post cycle 1 (estimated total time 28 days)
Prediction performance of FTT-PET in predicting participant response to PARPi therapy will be assessed by the area under the ROC curve. The ROC curve is a graphical plot that illustrates the performance of a model at various threshold settings and the area under the curve (AUC) is a single scalar value between 0 and 1 that summarizes the model performance. A higher AUC value indicates better performance.
At baseline prior to PARPi therapy and post cycle 1 (estimated total time 28 days)
Prediction performance of EnhanceAR-Seq ctDNAas measured by concordance index (C-index)
Aikaikkuna: At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
Prediction performance of EnhanceAR-Seq ctDNA analysis in predicting participant response to PARPi therapy will be assessed by concordance index (C-index). The C-index is calculated as the number of concordant pairs divided by the number of comparable pairs. A C-index of 1 indicates perfect ranking, values close to 0.5 indicate random prediction, and values between 0.5 and 1 suggest some predictive ability (a value below 0.5 can be reversed by switching the response's 0 and 1 labels).
At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
Prediction performance of EnhanceAR-Seq ctDNA as measured by area under the receiver operating characteristic (ROC) curve
Aikaikkuna: At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
Prediction performance of EnhanceAR-Seq ctDNA analysis in predicting participant response to PARPi therapy will be assessed by the area under the ROC curve. The ROC curve is a graphical plot that illustrates the performance of a model at various threshold settings and the area under the curve (AUC) is a single scalar value between 0 and 1 that summarizes the model performance. A higher AUC value indicates better performance.
At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
Prediction performance of FTT-PET and EnhanceAR-Seq ctDNA collectively as measured by concordance index (C-index)
Aikaikkuna: At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), and at progression if applicable (estimated total time 6 months)
Prediction performance of FTT-PET and EnhanceAR-Seq ctDNA analysis collectively in predicting participant response to PARPi therapy will be assessed by concordance index (C-index). The C-index is calculated as the number of concordant pairs divided by the number of comparable pairs. A C-index of 1 indicates perfect ranking, values close to 0.5 indicate random prediction, and values between 0.5 and 1 suggest some predictive ability (a value below 0.5 can be reversed by switching the response's 0 and 1 labels).
At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), and at progression if applicable (estimated total time 6 months)
Prediction performance of FTT-PET and EnhanceAR-Seq ctDNA collectively as measured by area under the receiver operating characteristic (ROC) curve
Aikaikkuna: At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), and at progression if applicable (estimated total time 6 months)
Prediction performance of FTT-PET and EnhanceAR-Seq ctDNA analysis collectively in predicting participant response to PARPi therapy will be assessed by the area under the ROC curve. The ROC curve is a graphical plot that illustrates the performance of a model at various threshold settings and the area under the curve (AUC) is a single scalar value between 0 and 1 that summarizes model performance. A higher AUC value indicates better performance.
At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), and at progression if applicable (estimated total time 6 months)
Sensitivity of EnhanceAR-Seq ctDNA in identifying mPC patients who respond to PARPi therapy
Aikaikkuna: At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
Sensitivity is calculated as the proportion of true positives divided by the sum of true positives and false negatives. The area under the Receiver Operating Characteristic (ROC) curve will be calculated to identify the optimal cutpoint on the ROC corresponding to the maximized Youden index to evaluate sensitivity. The ROC curve is a graphical plot that illustrates the performance of a model at various threshold settings and the area under the curve (AUC) is a single scalar value between 0 and 1 that summarizes model performance. A higher AUC value indicates better performance.
At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
Specificity of EnhanceAR-Seq ctDNA in identifying mPC patients who respond to PARPi therapy
Aikaikkuna: At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
Specificity is calculated as the proportion of true negatives divided by the sum of true negatives and false positives. The area under the Receiver Operating Characteristic (ROC) curve will be calculated to identify the optimal cutpoint on the ROC corresponding to the maximized Youden index to evaluate specificity. The ROC curve is a graphical plot that illustrates the performance of a model at various threshold settings and the area under the curve (AUC) is a single scalar value between 0 and 1 that summarizes the performance of model. A higher AUC value indicates better performance.
At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
Positive predictive value (PPV) of EnhanceAR-Seq ctDNA in identifying mPC patients who respond to PARPi therapy
Aikaikkuna: At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
PPV is calculated as the number of true positives divided by the sum of the number of true positives and number of false positives. The area under the Receiver Operating Characteristic (ROC) curve will be calculated to identify the optimal cutpoint on the ROC corresponding to the maximized Youden index to evaluate PPV. The ROC curve is a graphical plot that illustrates the performance of a model at various threshold settings and the area under the curve (AUC) is a single scalar value between 0 and 1 that summarizes model performance. A higher AUC value indicates better performance.
At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
Negative predictive value (NPV) of EnhanceAR-Seq ctDNA in identifying mPC patients who respond to PARPi therapy
Aikaikkuna: At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
NPV is calculated as the number of true negatives divided by the sum of the number of true negatives and number of false negatives. The area under the Receiver Operating Characteristic (ROC) curve will be calculated to identify the optimal cutpoint on the ROC corresponding to the maximized Youden index to evaluate NPV. The ROC curve is a graphical plot that illustrates the performance of a model at various threshold settings and the area under the curve (AUC) is a single scalar value between 0 and 1 that summarizes model performance. A higher AUC value indicates better performance.
At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
Predictive performance improvement as measured by change in concordance index of FTT-PET and EnhanceAR-seq ctDNA compared to only FTT-PET or only EnhanceAR-seq ctDNA
Aikaikkuna: At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
Prediction performance of FTT-PET and EnhanceAR-seq ctDNA in predicting participant response to PARPi therapy will be assessed by the concordance index (C-index). The C-index is calculated as the number of concordant pairs divided by the number of comparable pairs. A C-index of 1 indicates perfect ranking, values close to 0.5 indicate random prediction, and values between 0.5 and 1 suggest some predictive ability prediction (a value below 0.5 can be reversed by switching the response's 0 and 1 labels).
At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
Predictive performance improvement as measured by area under the receiver operating characteristic (ROC) curve of FTT-PET and EnhanceAR-seq ctDNA compared to only FTT-PET or only EnhanceAR-seq ctDNA
Aikaikkuna: At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)
Prediction performance of FTT-PET and EnhanceAR-seq ctDNA in predicting participant response to PARPi therapy will be assessed by the area under the ROC curve. The ROC curve is a graphical plot that illustrates the performance of a model at various threshold settings and the area under the curve (AUC) is a single scalar value between 0 and 1 that summarizes model performance. A higher AUC value indicates better performance.
At baseline prior to PARPi therapy, post cycle 1 (cycle is an estimated 28 days), 12 weeks after start of PARPi therapy, and at progression if applicable (estimated total time 6 months)

Toissijaiset tulostoimenpiteet

Tulosmittaus
Toimenpiteen kuvaus
Aikaikkuna
Test-Retest Only: Lin's intra-class correlation coefficient of FTT-PET imaging
Aikaikkuna: At baseline prior to PARPi therapy, at retest scan 1-14 days after baseline scan, and post-cycle 1 (estimated total time 28 days)
Defined as concordance between a new test or measurement (Y) and a gold standard test or measurement (X). This statistic quantifies the agreement between these two measures of the same variable. Ranges from -1 to 1, with perfect agreement at 1.
At baseline prior to PARPi therapy, at retest scan 1-14 days after baseline scan, and post-cycle 1 (estimated total time 28 days)
Correlation between FTT-PET imaging and tumor mutation burden (TMBddr) as assessed by Spearman or Pearson correlation coefficient
Aikaikkuna: At baseline and post cycle 1 (estimated total time 28 days)

TMBddr is the number of genetic mutation in tumor cells that can affect patient response and will be assessed through EnhanceAR-Seq ctDNA.

Spearman's correlation coefficient evaluates the association and the association's direction between two ranked continuous variables. Spearman's correlation coefficient ranges from -1 to 1, with a negative number indicating a negative relationship between variables and a positive number indicating a positive relationship between variables. Values closer to zero indicate a weak relationship.

Pearson's correlation coefficient is a measure that evaluates the association between two continuous variables with the assumption that the variables have a linear relationship. Pearson's correlation coefficient ranges from -1 to 1, with a negative number indicating a negative relationship between variables and a positive number indicating a positive relationship between variables. Values closer to zero indicate a weak relationship.

At baseline and post cycle 1 (estimated total time 28 days)
Correlation between FTT-PET imaging and variant allele frequency (VAF) as assessed by Spearman or Pearson correlation coefficient
Aikaikkuna: At baseline and post cycle 1 (estimated total time 28 days)

VAF represents the fraction of variant sequencing reads within a genetic locus and will be assessed through EnhanceAR-Seq ctDNA.

Spearman's correlation coefficient evaluates the association and the association's direction between two ranked continuous variables. Spearman's correlation coefficient ranges from -1 to 1, with a negative number indicating a negative relationship between variables and a positive number indicating a positive relationship between variables. Values closer to zero indicate a weak relationship.

Pearson's correlation coefficient is a measure that evaluates the association between two continuous variables with the assumption that the variables have a linear relationship. Pearson's correlation coefficient ranges from -1 to 1, with a negative number indicating a negative relationship between variables and a positive number indicating a positive relationship between variables. Values closer to zero indicate a weak relationship.

At baseline and post cycle 1 (estimated total time 28 days)
Correlation between FTT-PET imaging and dynamic changes in ctDNA levels as assessed by Spearman or Pearson correlation coefficient
Aikaikkuna: At baseline and post cycle 1 (estimated total time 28 days)

Dynamic changes in ctDNA refer to measurable changes in circulating tumor DNA in patient's blood over time and will be assessed through EnhanceAR-Seq ctDNA.

Spearman's correlation coefficient evaluates the association and the association's direction between two ranked continuous variables. Spearman's correlation coefficient ranges from -1 to 1, with a negative number indicating a negative relationship between variables and a positive number indicating a positive relationship between variables. Values closer to zero indicate a weak relationship.

Pearson's correlation coefficient is a measure that evaluates the association between two continuous variables with the assumption that the variables have a linear relationship. Pearson's correlation coefficient ranges from -1 to 1, with a negative number indicating a negative relationship between variables and a positive number indicating a positive relationship between variables. Values closer to zero indicate a weak relationship.

At baseline and post cycle 1 (estimated total time 28 days)
Correlation between FTT-PET imaging and prostate-specific antigen (PSA) levels as assessed by Spearman or Pearson correlation coefficient
Aikaikkuna: At baseline and post cycle 1 (estimated total time 28 days)

Changes PSA levels in the blood over time will be assessed through EnhanceAR-Seq ctDNA.

Spearman's correlation coefficient evaluates the association and the association's direction between two ranked continuous variables. Spearman's correlation coefficient ranges from -1 to 1, with a negative number indicating a negative relationship between variables and a positive number indicating a positive relationship between variables. Values closer to zero indicate a weak relationship.

Pearson's correlation coefficient is a measure that evaluates the association between two continuous variables with the assumption that the variables have a linear relationship. Pearson's correlation coefficient ranges from -1 to 1, with a negative number indicating a negative relationship between variables and a positive number indicating a positive relationship between variables. Values closer to zero indicate a weak relationship.

At baseline and post cycle 1 (estimated total time 28 days)
Correlation between FTT-PET imaging and tumor mutation burden (TMBddr) as assessed by Kappa agreement coefficient
Aikaikkuna: At baseline and post cycle 1 (estimated total time 28 days)

TMBddr is the number of genetic mutation in tumor cells that can affect patient response and will be assessed through EnhanceAR-Seq ctDNA.

The Kappa agreement measure is calculated to evaluated inter-rater reliability. Kappa coefficient scores range from -1 to 1 with scores closer to 0 indicate poor or little agreement and scores of 1 or -1 indicating perfect agreement.

At baseline and post cycle 1 (estimated total time 28 days)
Correlation between FTT-PET imaging and variant allele frequency (VAF) as assessed by Kappa agreement coefficient
Aikaikkuna: At baseline and post cycle 1 (estimated total time 28 days)

VAF represents the fraction of variant sequencing reads within a genetic locus and will be assessed through EnhanceAR-Seq ctDNA.

The Kappa agreement measure is calculated to evaluate inter-rater reliability. Kappa coefficient scores range from -1 to 1, with scores closer to 0 indicating poor or little agreement and scores of 1 or -1 indicating perfect agreement.

At baseline and post cycle 1 (estimated total time 28 days)
Correlation between FTT-PET imaging and dynamic changes in ctDNA level as assessed by Kappa agreement coefficient
Aikaikkuna: At baseline and post cycle 1 (estimated total time 28 days)

Dynamic changes in ctDNA refer to measurable changes in circulating tumor DNA in patient's blood over time and will be assessed through EnhanceAR-Seq ctDNA.

The Kappa agreement measure is calculated to evaluated inter-rater reliability. Kappa coefficient scores range from -1 to 1, with scores closer to 0 indicating poor or little agreement and scores of 1 or -1 indicating perfect agreement.

At baseline and post cycle 1 (estimated total time 28 days)
Correlation between FTT-PET imaging and prostate-specific antigen (PSA) as assessed by Kappa agreement coefficient
Aikaikkuna: At baseline and post cycle 1 (estimated total time 28 days)

Changes PSA levels in the blood over time will be assessed through EnhanceAR-Seq ctDNA.

The Kappa agreement measure is calculated to evaluate inter-rater reliability. Kappa coefficient scores range from -1 to 1, with scores closer to 0 indicating poor or little agreement and scores of 1 or -1 indicating perfect agreement.

At baseline and post cycle 1 (estimated total time 28 days)
Association of FTT-PET and EnhanceAR-Seq metrics with patient response based on relative risk
Aikaikkuna: From enrollment to time of progression (estimated total time 6 months)
Relative risk is a measure of the ratio of the risk of a certain event in an exposed group compared to the risk of the same event in a control group. A relative risk of 1.0 indicates no difference in risk between the groups, greater than 1.0 indicates increased risk in the exposed group, and less than 1.0 indicates decreased risk in the exposed group.
From enrollment to time of progression (estimated total time 6 months)

Yhteistyökumppanit ja tutkijat

Täältä löydät tähän tutkimukseen osallistuvat ihmiset ja organisaatiot.

Yhteistyökumppanit

Tutkijat

  • Päätutkija: Farrokh Dehdashti, MD, Washington University School of Medicine

Julkaisuja ja hyödyllisiä linkkejä

Tutkimusta koskevien tietojen syöttämisestä vastaava henkilö toimittaa nämä julkaisut vapaaehtoisesti. Nämä voivat koskea mitä tahansa tutkimukseen liittyvää.

Opintojen ennätyspäivät

Nämä päivämäärät seuraavat ClinicalTrials.gov-sivustolle lähetettyjen tutkimustietueiden ja yhteenvetojen edistymistä. National Library of Medicine (NLM) tarkistaa tutkimustiedot ja raportoidut tulokset varmistaakseen, että ne täyttävät tietyt laadunvalvontastandardit, ennen kuin ne julkaistaan ​​julkisella verkkosivustolla.

Opi tärkeimmät päivämäärät

Opiskelun aloitus (Arvioitu)

Tiistai 1. syyskuuta 2026

Ensisijainen valmistuminen (Arvioitu)

Keskiviikko 31. maaliskuuta 2032

Opintojen valmistuminen (Arvioitu)

Keskiviikko 31. maaliskuuta 2032

Opintoihin ilmoittautumispäivät

Ensimmäinen lähetetty

Sunnuntai 19. heinäkuuta 2026

Ensimmäinen toimitettu, joka täytti QC-kriteerit

Sunnuntai 19. heinäkuuta 2026

Ensimmäinen Lähetetty (Todellinen)

Torstai 23. heinäkuuta 2026

Tutkimustietojen päivitykset

Viimeisin päivitys julkaistu (Todellinen)

Torstai 23. heinäkuuta 2026

Viimeisin lähetetty päivitys, joka täytti QC-kriteerit

Sunnuntai 19. heinäkuuta 2026

Viimeksi vahvistettu

Keskiviikko 1. heinäkuuta 2026

Lisää tietoa

Tähän tutkimukseen liittyvät termit

Yksittäisten osallistujien tietojen suunnitelma (IPD)

Aiotko jakaa yksittäisten osallistujien tietoja (IPD)?

JOO

IPD-suunnitelman kuvaus

De-identified individual participant data collected during the trial, metadata collection, and supporting files will be shared via National Cancer Institute (NCI) repositories. Deidentified clinical images will be shared through The Cancer Imaging Archive (TCIA) and the Imaging Data Commons (IDC) of NCI. Genomic data will be shared via the NCI Genomic Data Commons (GDC).

IPD-jaon aikakehys

Data will be available as soon as possible, but no later than the time of publication or the end of the funding period, whichever comes first. The duration of preservation and sharing of the data will be determined based on timelines established by respective NCI repositories.

IPD-jakamista tukeva tietotyyppi

  • STUDY_PROTOCOL
  • MAHLA
  • ICF

Lääke- ja laitetiedot, tutkimusasiakirjat

Tutkii yhdysvaltalaista FDA sääntelemää lääkevalmistetta

Joo

Tutkii yhdysvaltalaista FDA sääntelemää laitetuotetta

Joo

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