Annals of Neurology · 1989 · 164 citations · 26 references
Human gliomas were imaged in vivo using ligands for the peripheral-type benzodiazepine binding site (or omega 3 binding site) and positron emission tomography (PET). Although gliomas have a high density of the peripheral-type benzodiazepine binding site, PET scans with a selective ligand for this site, [11C] Ro5-4864, failed to demonstrate higher radioactivity levels in human gliomas than in brain. In vitro studies of surgically removed specimens of human glioma demonstrated little binding of Ro5-4864 but high levels of binding of another selective ligand, PK 11195. Scans with [11C]PK 11195 demonstrated increased radioactivity in glioma compared to brain in 8 of 10 patients. Radioactivity in tumor and the ratios of radioactivity in tumor to that in remote gray and in white matter correlated significantly with the specific activity of [11C]PK 11195, suggesting that accumulation represents saturable high-affinity binding. We conclude that the PK 11195 manifests greater binding than Ro5-4864 to the peripheral-type benzodiazepine binding site on human gliomas and that human gliomas can be successfully imaged using [11C]PK 11195 and PET.
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Topographic anatomy and CT correlations in the untreated glioblastoma multiforme
Peter C. Burger, E. Ralph Heinz, T Shibata et al. · Journal of neurosurgery · 1988 · 452 citations
Patrick J. Kelly, C. Daumas‐Duport, Bernd W. Scheithauer et al. · Mayo Clinic Proceedings · 1987 · 403 citations
Brain radiation lesions: MR imaging.
Grégoire Dooms, S T Hecht, Michael Brant‐Zawadzki et al. · Radiology · 1986 · 270 citations