Abstract
To evaluate the diagnostic potential of whole-body PET/CT using a 68Ga-labelled PSMA ligand in renal cell carcinoma (RCC). Six patients with histopathologically proven RCC underwent 68Ga-PSMA PET/CT. Each PET/CT scan was evaluated in relation to lesion count, location and dignity. SUVmax was measured in primary tumours and PET-positive metastases. Tumour-to-background SUVmax ratios (TBRSUVmax) were calculated for primary RCCs in relation to the surrounding normal renal parenchyma. Metastasis-to-background SUVmax ratios (MBRSUVmax) were calculated for PET-positive metastases in relation to gluteal muscle. Five primary RCCs and 16 metastases were evaluated. The mean SUVmax of the primary RCCs was 9.9 ± 9.2 (range 1.7 - 27.2). Due to high uptake in the surrounding renal parenchyma, the mean TBRSUVmax of the primary RCCs was only 0.2 ± 0.3 (range 0.02 - 0.7). Eight metastases showed focal 68Ga-PSMA uptake (SUVmax 9.9 ± 8.3, range 3.4 - 25.6). The mean MBRSUVmax of these PET-positive metastases was 11.7 ± 0.2 (range 4.4 - 28.1). All PET-negative metastases were subcentimetre lung metastases. 68Ga-PSMA PET/CT appears to be a promising method for detecting RCC metastases. However, no additional diagnostic value in assessing the primary tumour was found.
Keywords
Gallium-68
PET/CT
PSMA
Renal cell carcinoma
MeSH Terms
Aged
Aged, 80 and over
Carcinoma, Renal Cell/diagnostic imaging,metabolism
Edetic Acid/analogs & derivatives
Female
Gallium Isotopes
Gallium Radioisotopes
Humans
Kidney Neoplasms/diagnostic imaging
Male
Middle Aged
Neoplasm Staging
Oligopeptides
Organometallic Compounds
Pilot Projects
Positron Emission Tomography Computed Tomography/methods
Radiopharmaceuticals
Reproducibility of Results
Sensitivity and Specificity
Whole Body Imaging/methods
Chemicals
Gallium Isotopes
Gallium Radioisotopes
Oligopeptides
Organometallic Compounds
Radiopharmaceuticals
gallium 68 PSMA-11
Edetic Acid
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Sawicki Lino M
Medical Faculty, Department of Diagnostic and Interventional Radiology, University Dusseldorf, Moorenstrasse 5, 40225, Dusseldorf, Germany. linomorris.sawicki@med.uni-duesseldorf.de.
Buchbender Christian
Medical Faculty, Department of Diagnostic and Interventional Radiology, University Dusseldorf, Moorenstrasse 5, 40225, Dusseldorf, Germany.
Boos Johannes
Medical Faculty, Department of Diagnostic and Interventional Radiology, University Dusseldorf, Moorenstrasse 5, 40225, Dusseldorf, Germany.
Giessing Markus
Medical Faculty, Department of Urology, University Dusseldorf, 40225, Dusseldorf, Germany.
Ermert Johannes
Institute of Neuroscience and Medicine, INM-5: Nuclear Chemistry, Juelich Research Center, 52425, Juelich, Germany.
Antke Christina
Medical Faculty, Department of Nuclear Medicine, University Dusseldorf, 40225, Dusseldorf, Germany.
Antoch Gerald
Medical Faculty, Department of Diagnostic and Interventional Radiology, University Dusseldorf, Moorenstrasse 5, 40225, Dusseldorf, Germany.
Hautzel Hubertus
Medical Faculty, Department of Nuclear Medicine, University Dusseldorf, 40225, Dusseldorf, Germany.
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