In vivo labeling of sigma receptors in mouse brain with [3H]4‐phenyl‐1‐(4‐phenylbutyl)piperidine
- 1 May 1995
- Vol. 20 (1) , 85-90
- https://doi.org/10.1002/syn.890200112
Abstract
4‐Phenyl‐1‐(4‐phenylbutyl)piperidine(4‐PPBP) is a very potent ligand for σ (Sigma) receptors. The present study was undertaken to evaluate [3H]4‐PPBPas a radioligand for in vivo labeling of cerebral σ receptors. After intravenous administration of [3H]4‐PPBP to mice, there is high uptake of radioactivity in the brain. The regional distribution of radioactivity in the brain 2 h after intravenous injection of [3H]4‐PPBP parallels the in vitro binding of the radioligand in rat brain (pons/medulla > cerebellum ≥ prefrontal cortex ≥ parietal cortex > hypothalamus > olfactory tubercle ≥ thalamus > hippocampus > striatum). Pretreatment with haloperidol (2 mg/kg) significantly decreases the radioactivity measured in the brain 30–120 min after injection of [3H]4‐PPBP. Pretreatment with unlabeled 4‐PPBP or ifenprodil also significantly decreases radioactivity in the brain 2 h after injection of [3H]4‐PPBP, in a dosedependent manner. The in vivo binding of [3H]4‐PPBP in the brain also is significantly inhibited by SL 82.0715, BMY 14802, 1,3‐di‐o‐tolylguanidine (DTG), and (+)‐enantiomers of pentazocine, SKF 10,047, and 3‐PPP, but not by the corresponding (−)‐enantiomers, consistent with stereoselectivity of inhibition obtained in in vitro binding studies. In contrast, pretreatment with dizocilpine and spiperone does not inhibit in vivo binding of [3H]4‐PPBP. The results indicate that [3H]4‐PPBP would be a suitable radioligand for in vivo labeling of σ receptors in brain. © 1995 Wiley‐Liss, Inc. 1 This article is a US Government work and, as such, is in the public domain in the United States of America .Keywords
This publication has 15 references indexed in Scilit:
- Synthesis of a radiotracer for studying σ receptors in vivo using PET: (+)‐N‐[11C]‐benzyl‐N‐normetazocine (1S, 5S,9S‐(+)‐cis‐2‐[11C]‐2′‐hydroxy‐5,9‐dimethyl‐6,7‐benzomorphan)Journal of Labelled Compounds and Radiopharmaceuticals, 1994
- Synthesis of N1‐3‐[18F]fluoropropyl‐N4‐2‐([3,4‐dichlorophenyl]ethyl)piperazine, a high affinity ligand for sigma receptorJournal of Labelled Compounds and Radiopharmaceuticals, 1993
- Radiosynthesis, cerebral distribution, and binding of [125I]-1-(p-iodophenyl)-3-(1-adamantyl)guanidine, a ligand for .sigma. binding sitesJournal of Medicinal Chemistry, 1992
- Regional distribution and kinetics of haloperidol binding in human brain: A pet study with [18F]haloperidolSynapse, 1992
- Novel 1-phenylpiperazine and 4-phenylpiperidine derivatives as high-affinity .sigma. ligandsJournal of Medicinal Chemistry, 1991
- σ Receptors: From Molecule to ManJournal of Neurochemistry, 1991
- σ receptorsEuropean Journal of Biochemistry, 1991
- Drugs Acting on σ and Phencyclidine ReceptorsClinical Neuropharmacology, 1989
- The Sigma ReceptorClinical Neuropharmacology, 1988
- Antipsychotic Drugs: Prediction of Side-Effect Profiles Based on Neuroreceptor Data Derived From Human Brain TissueMayo Clinic Proceedings, 1987