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Positron Emission Tomography and Magnetic Resonance Imaging for Prostate Cancer

A Pilot Study of 11C-Acetate Positron Emission Tomography (PET) and 3 Telsa Magnetic Resonance Imaging (MRI) in Men With Prostate Cancer Undergoing Prostatectomy

Status
Completed
Phases
Phase 1Phase 2
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT00924313
Enrollment
40
Registered
2009-06-18
Start date
2008-09-10
Completion date
2011-04-19
Last updated
2017-07-11

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Prostate Cancer

Keywords

Prostate Cancer, MRI, C-11 Acetate, PET

Brief summary

Background: * Prostate cancers are difficult to see on most imaging studies such as X-rays, computed tomography (CT) scans, conventional magnetic resonance imaging (MRI) scans and conventional positron emission tomography (PET) scans. * An experimental radioactive tracer called 11C-acetate accumulates in prostate tumor cells and may help find prostate cancers more accurately than other imaging methods. Objectives: * To determine the accuracy of prostate tumor imaging using the tracer 11C-acetate. Eligibility: * Patients 18 years of age and older who are undergoing surgery for localized prostate cancer at the National Institutes of Health (NIH) Clinical Center. Design: * Patients have a positron emission tomography (PET scan). For this test, an intravenous (IV) line is placed in the patient's arm and the patient lies on a table inside the donut shaped scanner. (11)C-acetate is injected into the vein through the catheter and images of the lower pelvis and abdomen are obtained over 30 minutes. * Patients have an endorectal coil MRI scan. For this test, a tube is placed in the rectum, just behind the prostate, to increase the amount of signal received by the magnetic resonance (MR) unit. Other coils may be wrapped around the pelvis to further improve the quality of the scan. The patient lies on the scanning table for about 75 to 90 minutes while images are obtained. During the scan, a contrast agent called gadolinium is injected through an intravenous (IV) line to brighten the images.

Detailed description

Background: * Accurate localization of prostate cancer (PC) is important in developing targeted minimally invasive therapies. While T2 weighted imaging, dynamic contrast enhanced (DCE) imaging, diffusion weighted imaging (DWI), and magnetic resonance (MR) spectroscopy imaging performed at 3T is a useful technique for localizing prostate cancer, it has limitations both in sensitivity and specificity. * Positron emission tomography (PET) radiopharmaceuticals are more sensitive than magnetic resonance imaging (MRI) for the detection of cancers; however, the resolution of PET is inferior to MRI. Therefore, a combined PET/MR approach might be desirable. * We propose to evaluate the utility of a PET radiopharmaceutical, (11C) acetate ((11C)AC) for the detection of PC within the prostate and compare its distribution with T2 weighted imaging, dynamic contrast enhanced (DCE) imaging, diffusion weighted imaging (DWI), and MR spectroscopy imaging preformed at 3T. * Unlike fludeoxyglucose F18(18F)FDG, a routinely used PET radiopharmaceutical which is excreted by the urinary system and accumulates in the bladder, limiting its utility in pelvic imaging, (11C)AC has low physiologic distribution in the pelvis. Several studies involving small numbers of patients have demonstrated that (11C)AC PET imaging can localize in pelvic nodes involved with prostate cancer (PC). * Dynamic (11C)AC PET/CT examination will be performed in patients with biopsy proven prostate cancer (estimated enrollment 40) who will also undergo prostate/pelvic 3T endorectal coil MR/magnetic resonance spectroscopic imaging (MRSI) followed by surgical resection (+/- pelvic lymphadenectomy). * Histological comparison with the PET/CT and MRI results will be conducted. This study of (11C)AC in PC will permit the direct comparison of MR/MRSI and (11C)AC PET/CT in the detection of prostate cancer within the prostate. Objectives: Primary Objective: \- To compare the biodistribution of (11C) acetate ((11C)AC) PET/CT imaging in tumor and non-tumorous regions of the prostate in patients with known prostate cancer. Secondary Objective: * To examine the diagnostic accuracy of the standardized uptake value (SUV) of (11C)AC obtained using PET/CT imaging for detecting region (sextant)-specific malignancy using receiver operating curves (ROC). * To examine whether pelvic biodistribution of (11C)AC PET/CT imaging predicts sextant-specific malignancy better than T2 weighted imaging, dynamic contrast enhanced (DCE) imaging, diffusion weighted imaging (DWI), and MR spectroscopy (MRS) imaging performed at 3T. * To evaluate for potential physiological effects of (11C)AC * To correlate the intensity of (11C)AC uptake with histopathologic Gleason Grade * Tabulate the incidence of extraprostatic lesions accumulating(11C)AC PET/CT detection which are suspicious for extraprostatic disease by comparing suspicious lesions on (11C)AC PET/CT with standard of care diagnostic imaging modalities, additional biopsy results, or clinical follow-up performed at the discretion of the referring physician. Eligibility: * Participants must be scheduled to undergo standard of care prostatectomy for presumed localized prostate cancer at the National Institutes of Health (NIH) Clinical Center. * Recent (within 12 months of study entry) biopsy indicating the presence of adenocarcinoma of the prostate gland * Participant must be 18 years or older * Serum creatinine within 1 week prior to MR imaging less than or equal to 1.8mg/dl AND epidermal growth factor receptor (eGFR) must be greater than 30 ml/min/1.73m\^2 * Eastern Cooperative Oncology Group (ECOG) Performance score of 0 or 1 * Participants may not have received androgen deprivation therapy or pelvic radiation therapy Design: * Participants with prostate cancer scheduled for prostatectomy at the NIH Clinical Center will undergo 30-minute dynamic (11C)AC PET/CT imaging, and endorectal coil/pelvic T2 weighted, DCE, DWI, and MRS imaging performed at 3T. * We will accrue 40 participants to this study.

Interventions

DRUG(C-11 Acetate)

11C-acetate positron emission tomography (PET)/computed tomography (CT)for 30 minutes, intravenous bolus injection

Sponsors

National Cancer Institute (NCI)
Lead SponsorNIH

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
DIAGNOSTIC
Masking
NONE

Eligibility

Sex/Gender
MALE
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* INCLUSION CRITERIA: * Participant must be scheduled to undergo standard of care prostatectomy for presumed localized prostate cancer at the National Institutes of Health (NIH) Clinical Center. * Recent (within 12 months of study entry) trans-rectal biopsy indicating the presence of adenocarcinoma of the prostate gland in which at least sextant biopsies were obtained. Knowledge of the location of each specimen is required for inclusion. * Participant must be 18 years or older. * Serum creatinine within 1 week prior to magnetic resonance (MR) imaging less than or equal to 1.8mg/dl AND epidermal growth factor receptor (eGFR) must be greater than 30 ml/min/1.73 m\^2 * Eastern Cooperative Oncology Group (ECOG) Performance score of 0 or 1. * Ability to provide informed consent. All patients must sign a document of informed consent indicating their understanding of the investigational nature and risks of the study before any protocol related studies are performed.

Exclusion criteria

* Known allergy to gadolinium or acetate. * Participants for whom participating would significantly delay the scheduled standard of care therapy. * Participants with any coexisting medical or psychiatric condition that is likely to interfere with study procedures and/or results are excluded. * Participants with severe claustrophobia. * Patients with contraindications to magnetic resonance imaging (MRI) * Patients weighing greater than 136 kg (weight limit for scanner table). * Patients with pacemakers, cerebral aneurysm clips, shrapnel injury, or other implanted electronic devices or metal not compatible with MRI. * Patients with contraindication to endorectal coil placement * Severe hemorrhoids. * Surgically absent rectum. * Other medical conditions deemed by the principal investigator (PI) or associates to make the patient ineligible for protocol procedures. * Patients who have previously received radiation therapy to the pelvis. * Patients who have received androgen deprivation therapy.

Design outcomes

Primary

MeasureTime frameDescription
Compare the Biodistribution of 11C-acetate Positron Emission Tomography (PET)/Computed Tomography (CT) Imaging in Tumor and Non Tumorous Regions of the Prostate2 yearsStandard uptake values (SUV) measurements of 11C-acetate will be obtained in each sextant (e.g. region) on each patient. Sextant-specific malignancy will be determined pathologically based on a subsequent prostatectomy. Initially, on each patient, we will, average SUV measurements in tumor and non-tumor regions (i.e., sextants with malignancy and no malignancy, respectively). The patient average SUV measurements across tumors and non-tumor regions will then be compared using a paired t-test.

Secondary

MeasureTime frameDescription
Diagnostic Accuracy of the Standardized Uptake Value of [11C]AC Obtained Using Positron Emission Tomography (PET)/Computed Tomography (CT) for Detecting Region (Sextant)-Specific Malignancy Using Receiver Operating Curves (ROC) for a Lesion >0.9cm2 yearsThe diagnostic accuracy of 11C-Acetate PET/CT imaging in prostate cancer was compared with multi-parametric magnetic resonance imaging (MP-MRI) using sector based analysis, generating receiver-operating-characteristic (ROC) curves (plots of 1-specificity versus sensitivity) for both modalities.
Pelvic Biodistribution of [11C]AC Positron Emission Tomography (PET)/Computed Tomography (CT) Imaging2 yearsPelvic biodistribution was obtained for the prostate tumor, normal prostate and benign prostatic hyperplasia (BPH). Uptake is expressed in standardized uptake value (SUV).
Count of Participants With Physiological Effects of [11C]AC2 yearsBuildup of positron emission tomography (PET) radiopharmaceuticals excreted by the urinary system can accumulate in the bladder and limit pelvic imaging. This effect contributes to low physiologic distribution in the pelvis.
Count of Participants With Adverse Events2 yearsHere is the number of participants with adverse events. For the detailed list of adverse events see the adverse event module.
Standardized Uptake Value (SUV) of Grouping Tumors Based on Gleason Score2 yearsIntensity \[11C\]AC uptake with histopathologic Gleason grade were done with a Spearman rank correlation following prostatectomy. Two biopsies were performed and graded according to tumor pattern. The two grades were added together for a final Gleason score. Gleason score equal to or less than 3+4 is considered low risk. Gleason score equal to or greater than 4+3 is considered high-risk.
Lesion Based Sensitivity Analysis Using Positron Emission Tomography (PET)/Computed Tomography (CT), Multi-parametric Magnetic Resonance Imaging (MP-MRI), Diffusion Weighted-Magnetic Resonance Imaging (DW-MRI), and DCE-MRI.2 yearsPET/CT, MP-MRI, DW-MRI, and dynamic contrast enhanced magnetic resonance imaging (DCE-MRI) were used to detect lesion sensitivity.
11C-Acetate Standardized Uptake Value (SUV)Max and Serum Prostate Specific Antigen (PSA) Levels Using Spearman Correlation2 yearsTumor foci was histopathologically identified and tested to determine SUVmax relative to PSA levels. PSA normal range is 0-4ng/mL.
Incidence of Extraprostatic Lesions Accumulating [11C]AC Positron Emission Tomography (PET)/Computed Tomography (CT) Detection2 yearsSuspicious lesions noted on biopsy were compared with standard care imaging diagnostic modalities, additional biopsies, and/or clinical follow up performed at the discretion of the referring physician.

Countries

United States

Participant flow

Participants by arm

ArmCount
11C-acetate for Prostate Cancer Patients
11C-acetate positron emission tomography (PET)/computed tomography (CT)for 30 minutes, intravenous bolus injection
40
Total40

Withdrawals & dropouts

PeriodReasonFG000
Overall Studynot imaged due to failed tracer imaging1

Baseline characteristics

Characteristic11C-acetate for Prostate Cancer Patients
Age, Categorical
<=18 years
0 Participants
Age, Categorical
>=65 years
7 Participants
Age, Categorical
Between 18 and 65 years
33 Participants
Age, Continuous58.97 years
STANDARD_DEVIATION 6.11
Days to Radical Prostatectomy10.5 Days
Ethnicity (NIH/OMB)
Hispanic or Latino
4 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
36 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants
Interval Between Magnetic Resonance Imaging and Prostatectomy54 Days
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants
Race (NIH/OMB)
Asian
2 Participants
Race (NIH/OMB)
Black or African American
7 Participants
Race (NIH/OMB)
More than one race
0 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants
Race (NIH/OMB)
Unknown or Not Reported
3 Participants
Race (NIH/OMB)
White
28 Participants
Region of Enrollment
United States
40 participants
Sex: Female, Male
Female
0 Participants
Sex: Female, Male
Male
40 Participants

Adverse events

Event typeEG000
affected / at risk
deaths
Total, all-cause mortality
0 / 40
other
Total, other adverse events
14 / 40
serious
Total, serious adverse events
0 / 40

Outcome results

Primary

Compare the Biodistribution of 11C-acetate Positron Emission Tomography (PET)/Computed Tomography (CT) Imaging in Tumor and Non Tumorous Regions of the Prostate

Standard uptake values (SUV) measurements of 11C-acetate will be obtained in each sextant (e.g. region) on each patient. Sextant-specific malignancy will be determined pathologically based on a subsequent prostatectomy. Initially, on each patient, we will, average SUV measurements in tumor and non-tumor regions (i.e., sextants with malignancy and no malignancy, respectively). The patient average SUV measurements across tumors and non-tumor regions will then be compared using a paired t-test.

Time frame: 2 years

Population: One patient was not imaged because of failed tracer synthesis.

ArmMeasureGroupValue (MEAN)Dispersion
11C-acetate for Prostate Cancer PatientsCompare the Biodistribution of 11C-acetate Positron Emission Tomography (PET)/Computed Tomography (CT) Imaging in Tumor and Non Tumorous Regions of the ProstateTumor region4.4 ng/mLStandard Deviation 2.05
11C-acetate for Prostate Cancer PatientsCompare the Biodistribution of 11C-acetate Positron Emission Tomography (PET)/Computed Tomography (CT) Imaging in Tumor and Non Tumorous Regions of the ProstateNon-tumorous region2.1 ng/mLStandard Deviation 0.94
Secondary

11C-Acetate Standardized Uptake Value (SUV)Max and Serum Prostate Specific Antigen (PSA) Levels Using Spearman Correlation

Tumor foci was histopathologically identified and tested to determine SUVmax relative to PSA levels. PSA normal range is 0-4ng/mL.

Time frame: 2 years

Population: One patient was not imaged because of failed tracer synthesis.

ArmMeasureGroupValue (MEAN)Dispersion
11C-acetate for Prostate Cancer Patients11C-Acetate Standardized Uptake Value (SUV)Max and Serum Prostate Specific Antigen (PSA) Levels Using Spearman CorrelationPSA level <4 ng/ml3.7 SUVmaxStandard Deviation 2
11C-acetate for Prostate Cancer Patients11C-Acetate Standardized Uptake Value (SUV)Max and Serum Prostate Specific Antigen (PSA) Levels Using Spearman CorrelationPSA level 4-10 ng/ml4.9 SUVmaxStandard Deviation 2.3
11C-acetate for Prostate Cancer Patients11C-Acetate Standardized Uptake Value (SUV)Max and Serum Prostate Specific Antigen (PSA) Levels Using Spearman CorrelationPSA level >10ng/ml5.1 SUVmaxStandard Deviation 0.8
p-value: 0.407Spearman rank correlation
Secondary

Count of Participants With Adverse Events

Here is the number of participants with adverse events. For the detailed list of adverse events see the adverse event module.

Time frame: 2 years

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
11C-acetate for Prostate Cancer PatientsCount of Participants With Adverse Events14 Participants
Secondary

Count of Participants With Physiological Effects of [11C]AC

Buildup of positron emission tomography (PET) radiopharmaceuticals excreted by the urinary system can accumulate in the bladder and limit pelvic imaging. This effect contributes to low physiologic distribution in the pelvis.

Time frame: 2 years

Population: One patient was not imaged because of failed tracer synthesis.

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
11C-acetate for Prostate Cancer PatientsCount of Participants With Physiological Effects of [11C]AC1 Participants
Secondary

Diagnostic Accuracy of the Standardized Uptake Value of [11C]AC Obtained Using Positron Emission Tomography (PET)/Computed Tomography (CT) for Detecting Region (Sextant)-Specific Malignancy Using Receiver Operating Curves (ROC) for a Lesion >0.9cm

The diagnostic accuracy of 11C-Acetate PET/CT imaging in prostate cancer was compared with multi-parametric magnetic resonance imaging (MP-MRI) using sector based analysis, generating receiver-operating-characteristic (ROC) curves (plots of 1-specificity versus sensitivity) for both modalities.

Time frame: 2 years

Population: One patient was not imaged because of failed tracer synthesis.

ArmMeasureGroupValue (NUMBER)
11C-acetate for Prostate Cancer PatientsDiagnostic Accuracy of the Standardized Uptake Value of [11C]AC Obtained Using Positron Emission Tomography (PET)/Computed Tomography (CT) for Detecting Region (Sextant)-Specific Malignancy Using Receiver Operating Curves (ROC) for a Lesion >0.9cmPET sensitivity62 Percentage ROC curve
11C-acetate for Prostate Cancer PatientsDiagnostic Accuracy of the Standardized Uptake Value of [11C]AC Obtained Using Positron Emission Tomography (PET)/Computed Tomography (CT) for Detecting Region (Sextant)-Specific Malignancy Using Receiver Operating Curves (ROC) for a Lesion >0.9cmMRI sensitivity82.3 Percentage ROC curve
11C-acetate for Prostate Cancer PatientsDiagnostic Accuracy of the Standardized Uptake Value of [11C]AC Obtained Using Positron Emission Tomography (PET)/Computed Tomography (CT) for Detecting Region (Sextant)-Specific Malignancy Using Receiver Operating Curves (ROC) for a Lesion >0.9cmPET specificity80 Percentage ROC curve
11C-acetate for Prostate Cancer PatientsDiagnostic Accuracy of the Standardized Uptake Value of [11C]AC Obtained Using Positron Emission Tomography (PET)/Computed Tomography (CT) for Detecting Region (Sextant)-Specific Malignancy Using Receiver Operating Curves (ROC) for a Lesion >0.9cmMRI specificity95 Percentage ROC curve
Secondary

Incidence of Extraprostatic Lesions Accumulating [11C]AC Positron Emission Tomography (PET)/Computed Tomography (CT) Detection

Suspicious lesions noted on biopsy were compared with standard care imaging diagnostic modalities, additional biopsies, and/or clinical follow up performed at the discretion of the referring physician.

Time frame: 2 years

Population: One patient was not imaged because of failed tracer synthesis.

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
11C-acetate for Prostate Cancer PatientsIncidence of Extraprostatic Lesions Accumulating [11C]AC Positron Emission Tomography (PET)/Computed Tomography (CT) Detection1 Participants
Secondary

Lesion Based Sensitivity Analysis Using Positron Emission Tomography (PET)/Computed Tomography (CT), Multi-parametric Magnetic Resonance Imaging (MP-MRI), Diffusion Weighted-Magnetic Resonance Imaging (DW-MRI), and DCE-MRI.

PET/CT, MP-MRI, DW-MRI, and dynamic contrast enhanced magnetic resonance imaging (DCE-MRI) were used to detect lesion sensitivity.

Time frame: 2 years

Population: One patient was not imaged because of failed tracer synthesis.

ArmMeasureGroupValue (NUMBER)
11C-acetate for Prostate Cancer PatientsLesion Based Sensitivity Analysis Using Positron Emission Tomography (PET)/Computed Tomography (CT), Multi-parametric Magnetic Resonance Imaging (MP-MRI), Diffusion Weighted-Magnetic Resonance Imaging (DW-MRI), and DCE-MRI.PET/CT73.4 percentage of sensitivity
11C-acetate for Prostate Cancer PatientsLesion Based Sensitivity Analysis Using Positron Emission Tomography (PET)/Computed Tomography (CT), Multi-parametric Magnetic Resonance Imaging (MP-MRI), Diffusion Weighted-Magnetic Resonance Imaging (DW-MRI), and DCE-MRI.MP-MRI88.5 percentage of sensitivity
11C-acetate for Prostate Cancer PatientsLesion Based Sensitivity Analysis Using Positron Emission Tomography (PET)/Computed Tomography (CT), Multi-parametric Magnetic Resonance Imaging (MP-MRI), Diffusion Weighted-Magnetic Resonance Imaging (DW-MRI), and DCE-MRI.DW-MRI80 percentage of sensitivity
11C-acetate for Prostate Cancer PatientsLesion Based Sensitivity Analysis Using Positron Emission Tomography (PET)/Computed Tomography (CT), Multi-parametric Magnetic Resonance Imaging (MP-MRI), Diffusion Weighted-Magnetic Resonance Imaging (DW-MRI), and DCE-MRI.DCE-MRI55 percentage of sensitivity
Secondary

Pelvic Biodistribution of [11C]AC Positron Emission Tomography (PET)/Computed Tomography (CT) Imaging

Pelvic biodistribution was obtained for the prostate tumor, normal prostate and benign prostatic hyperplasia (BPH). Uptake is expressed in standardized uptake value (SUV).

Time frame: 2 years

Population: One patient was not imaged because of failed tracer synthesis.

ArmMeasureGroupValue (MEAN)Dispersion
11C-acetate for Prostate Cancer PatientsPelvic Biodistribution of [11C]AC Positron Emission Tomography (PET)/Computed Tomography (CT) ImagingProstate tumor4.4 SUVStandard Deviation 2.05
11C-acetate for Prostate Cancer PatientsPelvic Biodistribution of [11C]AC Positron Emission Tomography (PET)/Computed Tomography (CT) ImagingNormal tumor2.1 SUVStandard Deviation 0.943
11C-acetate for Prostate Cancer PatientsPelvic Biodistribution of [11C]AC Positron Emission Tomography (PET)/Computed Tomography (CT) ImagingBenign prostatic hyperplasia (BPH)4.8 SUVStandard Deviation 2.01
p-value: <0.0001Spearman rank correlation
p-value: 0.65Spearman rank correlation
Secondary

Standardized Uptake Value (SUV) of Grouping Tumors Based on Gleason Score

Intensity \[11C\]AC uptake with histopathologic Gleason grade were done with a Spearman rank correlation following prostatectomy. Two biopsies were performed and graded according to tumor pattern. The two grades were added together for a final Gleason score. Gleason score equal to or less than 3+4 is considered low risk. Gleason score equal to or greater than 4+3 is considered high-risk.

Time frame: 2 years

Population: One patient was not imaged because of failed tracer synthesis.

ArmMeasureGroupValue (MEAN)Dispersion
11C-acetate for Prostate Cancer PatientsStandardized Uptake Value (SUV) of Grouping Tumors Based on Gleason ScoreGleason scores 3+4 and below4.2 SUVStandard Deviation 1.8
11C-acetate for Prostate Cancer PatientsStandardized Uptake Value (SUV) of Grouping Tumors Based on Gleason ScoreGleason scores 4+3 and above4.9 SUVStandard Deviation 3.1
p-value: 0.55Spearman rank correlation

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026