This phase II trial studies the side how well hyperpolarized carbon C 13 pyruvate (HP C-13 pyruvate) magnetic resonance imaging (MRI) works in monitoring patients with prostate cancer on active surveillance who have not received treatment. Diagnostic procedures, such as MRI, may help visualize HP C-13 pyruvate uptake and breakdown in tumor cells.
PRIMARY OBJECTIVES: I. Optimize the imaging sequences that maximize signal-to-noise ratio (SNR) and intra-tumoral conversion of HP 13C pyruvate to lactate (kPL) and HP 13C pyruvate to glutamate (kPG) in regions of tumor versus (vs.) adjacent benign tissue as assessed by multi-parametric MRI (mpMRI) imaging characteristics. (Part 1) II. Determine the association between intra-tumoral kPL and kPG with Gleason grade determined during magnetic resonance (MR)/ultrasound (US)-guided fusion prostate biopsies obtained within 6 months following baseline HP C-13 pyruvate MR exam. (Part 2) SECONDARY OBJECTIVES: I. Evaluate the intra-patient variability in intra-tumoral kPL and kPG with repeated dose studies. II. Determine the association between peak intra-tumoral kPL observed on baseline imaging with serum prostate specific antigen (PSA). III. 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. IV. Describe the frequency of up-grading of tumor with MR/US-guided fusion biopsy obtained following baseline HP C-13 MR exam. V. Further characterize the safety profile of HP C-13 pyruvate injections. EXPLORATORY OBJECTIVES: I. Correlate peak intra-tumoral kPL with results of gene expression profiling using DECIPHER assay. II. Correlate peak intra-tumoral kPL and kPG with DECIPHER GRID tumor ribonucleic acid (RNA) expression of relevant components of the glycolytic pathway including lactate dehydrogenase (LDH), pyruvate dehydrogenase (PDH), aconitate hydratase (aconitase), myelocytomatosis oncogene (MYC), monocarboxylate transporter 4 (MCT4) (lactate transporter). III. For patients who undergo optional follow-up HP C-13 pyruvate/MRI 6-15 months following baseline scan, determine the mean percent change from baseline in intra-tumoral kPL and kPG and whether the change from baseline is associated change in clinical risk assessment as determined by University of California, San Francisco (UCSF)-Cancer of the Prostate Risk Assessment (CAPRA) risk score. OUTLINE: Patients receive hyperpolarized carbon C 13 pyruvate intravenously (IV) over less than one minute, then undergo magnetic resonance spectroscopic imaging (MRSI) after 1-2 minutes. Within 15-60 minutes, patients may receive optional hyperpolarized carbon C 13 pyruvate and undergo MRSI. Patients also undergo MR/US fusion-guided prostate biopsy within 12 weeks following HP C-13 MRSI. After completion of study, patients will be followed up periodically.
Given IV
Undergo MRSI
Undergo MR/US fusion-guided prostate biopsy
University of California, San Francisco
San Francisco, California, United States
RECRUITINGSignal-to-noise ratio (SNR) of hyperpolarized lactate
Assessed by multi-parametric magnetic resonance imaging (mpMRI) characteristics.
Time frame: At Baseline
Intra-tumoral C-pyruvate to lactate (kPL)
Assessed by multi-parametric magnetic resonance imaging (mpMRI) characteristics
Time frame: At Baseline
Intra-tumoral C-pyruvate to glutamate (kPG)
Assessed by multi-parametric magnetic resonance imaging (mpMRI) characteristics
Time frame: At Baseline
Association between intra-tumoral C-pyruvate to lactate (kPL) with Gleason grade
kPL will be compared with the pathologic Gleason grade determined using tissue from an MR/US-guided fusion prostate biopsy. Measured kPL will be compared by pathologic Gleason grade using an ANOVA model. If there is an overall difference, the Newman-Keuls post hoc test will be used to determine which tissue pairs differ.
Time frame: Within 12 weeks following baseline HP C-13 pyruvate MR exam
Association between intra-tumoral C-pyruvate to glutamate (kPG) with Gleason grade
kPG will be compared with the pathologic Gleason grade determined using tissue from an MR/US-guided fusion prostate biopsy. Measured kPG will be compared by pathologic Gleason grade using an ANOVA model. If there is an overall difference, the Newman-Keuls post hoc test will be used to determine which tissue pairs differ.
Time frame: Within 12 weeks following baseline HP C-13 pyruvate MR exam
Intra-patient variability in kPL
Intra-patient variability in the kPL will be summarized by the intraclass correlation and presented with a 90% confidence interval.
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Study Type
INTERVENTIONAL
Allocation
NA
Purpose
DIAGNOSTIC
Masking
NONE
Enrollment
60
Time frame: Up to 15 months
Intra-patient variability in kPG
Intra-patient variability in the kPG will be summarized by the intraclass correlation and presented with a 90% confidence interval.
Time frame: Up to 15 months
Contrast between kPL and kPG in regions of tumor
The kPL and kPG will be contrasted in regions of tumor. Determined with prostate imaging reporting and data system (PI-RADS) version 2 classification score (1 through 5)
Time frame: Up to 15 months
Comparison of kPL and kPG with apparent diffusion coefficient in region of tumor
The kPL and kPG will be compared with apparent diffusion coefficient in region of tumor. Determined by comparison to peak intra-tumoral apparent diffusion coefficient (ADC) value
Time frame: Up to 15 months
Incidence of adverse events graded
According to the National Cancer Institute Common Terminology Criteria for Adverse Events version 4.0.
Time frame: Up to 15 months
Association between peak intra-tumoral kPL observed on baseline imaging with serum PSA
Determine the association between peak intra-tumoral kPL observed on baseline imaging with serum PSA. The study cohort will be dichotomized by mean intra-tumoral kPL above and below the median and the mean serum PSA will be compared between the two dichotomized subgroups using Mann-Whitney test.
Time frame: At Baseline
Describe frequency of up-grading of tumor
Describe the frequency of up-grading of tumor with MR/US-guided fusion biopsy obtained following baseline HP C-13 MR exam
Time frame: Within 12 weeks following baseline HP C-13 pyruvate MR exam