University of California, San Francisco
San Francisco, California, 94143, United States
Location status: Recruiting
Location contact
Anthony Wong, MD, PhD
SUB_INVESTIGATOR
Louise Magat
CONTACT
Robert Bok, MD, PhD
PRINCIPAL_INVESTIGATOR
CONTACT
NCT Number: NCT06391034
This is a Phase 2 clinical study of hyperpolarized (HP) 13C-pyruvate (13C), 15N-urea (13C,15N) metabolic MR imaging in prostate cancer patients who are undergoing or have received radiation therapy for prostate cancer.
Interested in participating?
Request Info18 year and older
Male
Interventional
Phase 2
San Francisco, California, 94143, United States
Location status: Recruiting
Anthony Wong, MD, PhD
SUB_INVESTIGATOR
Louise Magat
CONTACT
Robert Bok, MD, PhD
PRINCIPAL_INVESTIGATOR
CONTACT
PRIMARY OBJECTIVES:
I. Part 1: To Optimize the imaging sequences that maximize signal-to-noise ratio (SNR) and intra-tumoral kPL and kPG in regions of tumor vs. adjacent benign tissue as assessed by mpMRI imaging characteristics.
II. Part 2A To perform HP 13C-MRI and measure the changes in tumoral kPL and kPG.
III. Part 2B: To perform HP 13C-MRI and study the metabolic effects (changes in tumor kPL and kPG).
IV. Part 3: To perform HP 13C-MRI at time of Biochemical Failure and measure tumoral kPL and kPG, in previously external beam radiation therapy (EBRT) treated patients.
SECONDARY OBJECTIVES:
I. To evaluate the intra-patient variability in intra-tumoral kPL and kPG with repeated dose studies (Part 1, 2 & 3).
II. To determine the association between peak intra-tumoral kPL observed on baseline imaging with serum PSA. (Part 2 & 3).
III. To determine the association between changes in intra-tumor kPL after 4-12 weeks of systemic hormone therapy and PSA response (Part 2B).
IV. To compare and contrast intra-tumoral kPL and kPG with Prostate Imaging Reporting and Data System (PI-RADS) version 2 and individual mpMRI parameters including apparent diffusion coefficient (ADC) on diffusion-weighted imaging (Part 1, 2 & 3).
V. To describe the frequency of up-grading of tumor with MR/US-guided fusion biopsy obtained following baseline HP-MRI exam. (Part 3).
VI. To further characterize the safety profile of HP C-13 pyruvate injections (Part 1, 2 & 3).
VII. For patients imaged with HP 13C-MRI at time of biochemical failure post-EBRT, correlate peak intra-tumoral kPL and kPG with radiotherapy dose distributions from EBRT course (Part 3).
VIII. For studies incorporating HP 13C-urea, the baseline and the on-treatment changes in urea AUC parameter will be measured and compared to kPL endpoints of the same lesions (Part 1, 2 & 3).
OUTLINE:
The study is divided into 3 parts. Part 1: Participants undergo imaging as part of a multi-parametric magnetic resonance imaging (mpMRI) exam to determine exact parameters for imaging.
Part 2A: Participants planned for external beam radiotherapy (EBRT) Part 2B: Participants with high-risk localized prostate cancer planned to receive primary radiation therapy with concurrent systemic hormone therapy Part 3: Evaluable EBRT participants scanned at time of biochemical failure and MR/US fusion-guided prostate biopsy within 12 weeks. Participants have the option of undergoing a follow up HP Pyruvate +/- Urea MR exam 6-15 months following the baseline scan.
All participants will receive a scan at baseline and other procedures may be performed as part of routine, non-interventional standard of care at the time of biochemical failure, including serial prostate-specific antigen (PSA) monitoring and gene expression profiling of tumor tissue. Participants will be followed for 24 months after last procedure or removal from study, or until death, whichever occurs first.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Given IV
Other names: 13C-Pyruvate,15N-urea
External beam radiotherapy given outside of this study
Other names: EBRT
Radiation therapy given outside of this study
Other names: RT
Imaging scan
Other names: mpMRI
Therapy given outside of this study as part of standard of care
Other names: Non-interventional, systemic hormone therapy
Biopsies may be taken from Trans-rectal ultrasound (TRUS) -visible lesion at the urologist's discretion
Other names: Biopsy
Time frame: Day of MR imaging (1 day)
A signal-to-noise ratio is defined as a MR/spectroscopy parameter, consisting of the HP C13-Pyruvate or Lactate signal (peak) relative to background noise level (baseline) in MRI spectra of the tissue.
Time frame: Up to 24 months
The mean percent change in tumoral kPL between baseline and 1-year post-EBRT will be reported.
Time frame: Up to 24 months
The mean percent change in tumoral kPG between baseline and 1-year post-EBRT will be reported.
Time frame: Up to 24 months
Mean percent change in tumoral kPL for participants receiving systemic hormone therapy between baseline and 1 -year post-EBRT will be reported.
Time frame: Up to 24 months
Mean percent change in tumoral kPG for participants receiving systemic hormone therapy between baseline and 1 -year post-EBRT will be reported.
Time frame: Up to 24 months
The mean kPL for participants with biochemical failure will be reported.
Time frame: Up to 24 months
The mean kPG for participants with biochemical failure will be reported.
Time frame: Up to 12 months
Intra-patient variability in the kPL will be summarized by the intraclass correlation and presented with a 90% confidence interval when multiple HP-MRI scans are obtained for a participant.
Time frame: Up to 12 months
Intra-patient variability in the kPG will be summarized by the intraclass correlation and presented with a 90% confidence interval when multiple HP-MRI scans are obtained for a participant.
Time frame: Up to 24 months
The study cohort will be dichotomized by mean intra-tumoral kPL obtained at baseline with median serum PSA and will be compared between the two dichotomized subgroups using Mann-Whitney test.
Time frame: Up to 24 months
Spearman's rank order correlation coefficient will be used to determine the relationship between kPL with PI-RADS version 2 classification score (1 through 5; PI-RADS 1 - Very low (clinically significant cancer is highly unlikely to be present) PI-RADS 2 - Low (clinically significant cancer is unlikely to be present)). The Spearman's correlation coefficient (rs) measures the strength and direction of association between two variables. The Spearman correlation coefficient, rs, can take values from +1 to -1 where a value of +1 indicates a perfect association, an rs of 0 indicates no association and an rs of -1 indicates a perfect negative association. The closer rs is to 0, the weaker the association.
Time frame: Up to 24 months
Spearman's rank order correlation coefficient will be used to determine the relationship between kPL with PI-RADS version 2 classification score (1 through 5; PI-RADS 1 - Very low (clinically significant cancer is highly unlikely to be present) PI-RADS 2 - Low (clinically significant cancer is unlikely to be present)). The Spearman's correlation coefficient (rs) measures the strength and direction of association between two variables. The Spearman correlation coefficient, rs, can take values from +1 to -1 where a value of +1 indicates a perfect association, an rs of 0 indicates no association and an rs of -1 indicates a perfect negative association. The closer rs is to 0, the weaker the association.
Time frame: Up to 24 months
A secondary endpoint will be to identify concordant mismatch of low HP 13C-urea perfusion (ureaAUC) in lesions assessed for kPL.
Time frame: Up to 24 months
For the subset of participants who undergo optional follow up MR scan following baseline MRI, the mean percent change from baseline in kPL will be descriptively reported using summary statistics.
Time frame: From start of HP 13C-pyruvate MR imaging to 20 minutes after the procedure for all scans
The incidence of adverse events as graded by Common Toxicity Criteria version 5.0 will be determined
Contact information is provided by the study sponsor or research team.
Robert Bok, MD, PhD
Other
A Phase 2 Study of Magnetic Resonance (MR) Imaging With Hyperpolarized 13C-Pyruvate +/- 13C,15N-Urea in Patients With Prostate Cancer Undergoing Radiation Therapy
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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