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L Farde

Publications and source records attributed to L Farde.

At least 163 records · Page 9Linked to original sources

Pharmacokinetics of raclopride formulations. Influence of prolactin and tolerability in healthy male volunteers.

The pharmacokinetic and pharmacodynamic properties of raclopride, a new antipsychotic, were investigated in 16 healthy men. Single 4 mg doses were administered as intravenous infusion, oral solution and 2 extended release (ER) formulations. Total plasma clearance was about 100 ml/min (6.0 L/h), of which renal clearance accounted for 0.2 ml/min, indicating extensive metabolism. The volume of distribution was 1.5 L/kg; mean absolute bioavailability was 65 to 67% following the oral solution and the ER formulations. A transient increase in plasma prolactin levels followed both the intravenous infusion and the oral solution. The ER formulations resulted in a lower increase, which appeared later. However, the area under the prolactin level curve was similar after administration of all dosage forms. The frequency and severity of the most commonly reported side effects (tiredness and restlessness) were higher after the intravenous infusion than after the ER capsules. These findings indicate that such capsules may be advantageous for clinical antipsychotic treatment with raclopride.

Administration, Oral↗

Positron emission tomography--examination of chemical transmission in the living human brain. Development of radioligands.

The imaging technique Positron Emission Tomography (PET) allows examination of chemical neurotransmission in brain. Of key importance for PET-research on neuroreceptors is the development of suitable radiolabelled tracers (ligands). This paper illustrates the multidisciplinary research activities necessary for ligand development. The selective D1- and D2-dopamine receptor antagonists SCH 23390 and raclopride (CAS 84225-95-6), respectively, were labelled with [3H] and characterized in biochemical studies in vitro on human brain homogenates and in autoradiographic studies on cryosections from human hemispheres. The experimental information was used to interpret and support the PET-findings with [11C]-labelled SCH 23390 and raclopride in vivo in humans. In conclusion, these ligands can be used to quantitatively examine dopamine receptors in the human basal ganglia in vivo. An applied study for PET-determination of D1- and D2-dopamine receptor occupancy during antipsychotic drug treatment indicates that the D2-dopamine receptor and possibly also the D1-dopamine receptor are targets for neuroleptic drug action.

Autoradiography↗

PET analysis indicates atypical central dopamine receptor occupancy in clozapine-treated patients.

D1 and D2 dopamine (DA) receptor occupancy was determined by PET in the basal ganglia of drug-treated schizophrenic patients. In 22 patients treated with classical neuroleptics at conventional doses, the average D2 occupancy was 78% (s.d. 6%). In five patients treated with the prototype atypical antipsychotic drug clozapine, a lower D2 occupancy of 48% (s.d. 11%, P less than 0.01) was found. Accordingly, clozapine is 'atypical' with respect to the striatal D2 DA receptor occupancy induced in patients. No obvious D1 DA receptor occupancy was induced by the classical neuroleptics haloperidol or sulpiride. The thioxanthene flupenthixol induced a 36-44% D1 occupancy in individual patients. In four patients treated with clozapine the D1 occupancy was 38-52%.

Antipsychotic Agents↗

NCQ 298, a new selective iodinated salicylamide ligand for the labelling of dopamine D2 receptors.

NCQ 298 ((S)-3-iodo-N-[(l-ethyl-2-pyrrolidinyl)methyl]-5,6- dimethoxysalicylamide) has an iodine substituent. We have labelled NCQ 298 with 123I and 125I, and used the radioligands as tracers in receptor studies in vitro, in vivo in autoradiography and in SPECT studies on Cynomolgus monkeys. [125I]NCQ 298 bound in vitro to a single binding site with a KD = 19 pM. NCQ 298 has thus a 10-fold higher affinity for the dopamine D2 receptors than the corresponding des-5-methoxy compound FLA 961 (IBZM), previously used in SPECT studies. The binding of [125I]NCQ 298 was entirely reversible (T1/2 = 17.5 min at 37 degrees C). Autoradiographical studies in vitro on rat and monkey brain tissue sections showed a distinct binding in caudate-putamen, nucleus accumbens, substantia nigra, and in layer 5 of the cerebral cortex. In vivo binding studies in mice showed a ratio of 10 between [125I]NCQ 298 binding in striatum and cerebellum. Binding was displaced by the selective dopamine D2 receptor antagonist raclopride. In SPECT studies with [123I]NCQ 298 in two Cynomolgus monkeys, radioactivity accumulated in the basal ganglia. The measured striatum to cerebellum ratio was about 15 after 3 h. A monkey brain phantom was constructed for the determination of conversion factors from pixel events to actual radioactivity. The resulting, corrected striatum to cerebellum ratio obtained was 30. After administration of 12 mg raclo-pride to one of the monkeys there was a substantial decrease in striatal radioactivity. [125I]NCQ 298 is a suitable ligand for the labelling of dopamine D2 receptors in vitro and in vivo. The specific properties of [123I]NCQ 298 suggest that this compound is a useful ligand for quantitative SPECT studies of dopamine D2 receptors in man.

Animals↗

11C-SCH 39166, a selective ligand for visualization of dopamine-D1 receptor binding in the monkey brain using PET.

The new selective D1-dopamine receptor antagonist SCH 39166 was labelled with the positron emitting isotope 11C and used as ligand for visualization of dopamine-D1 receptor binding in Cynomolgus monkeys by PET. After intravenous administration of the ligand a marked uptake of radioactivity was recorded in the D1-dopamine receptor-rich striatum and neocortex but not in the dopamine receptor-poor cerebellum. The uptake of radioactivity in striatum and neocortex was markedly displaced after the intravenous injection of a high dose of the D1-dopamine receptor antagonist SCH 23390 but not after the 5-HT2 receptor antagonist ketanserine. 11C-SCH 39166 should be a useful tool to explore D1-dopamine receptor characteristics in the living human brain by PET.

Animals↗

Synthesis of carbon-11 labelled SCH 39166, a new selective dopamine D-1 receptor ligand, and preliminary PET investigations.

SCH 39166 [(-)-trans-6,7,7a,8,9, 13b-hexahydro-3-chloro-2-hydroxy-N-methyl-5H-benzo(d)naphtho-(2,1- b)azepine] is a new more selective dopamine D-1 receptor antagonist than the widely used SCH 23390. [11C]SCH 39166 was prepared by N-methylation of the desmethyl compound SCH 40853 [(-)-trans-6,7,7a,8,9,13b-hexahydro-3-chloro-2-hydroxy-5H- benzo(d)naphtho-(2,1-b)azepine] with [11C]methyl iodide. Reaction in acetone with subsequent straight-phase semi-preparative HPLC resulted in 20-30% radiochemical yield (from EOB and decay-corrected) with a total synthesis time of 35-40 min and a radiochemical purity greater than 99%. The specific activity obtained at EOS was about 1500 Ci/mmol (55 GBq/mumols). [11C]SCH 39166 was injected into a Cynomolgus monkey. PET-analysis demonstrated accumulation in the striatum, a region known to have a high density of dopamine D-1 receptors. In a displacement experiment, radioactivity in the striatum was markedly reduced after injection of 6 mg unlabelled SCH 23390, thus demonstrating the specificity and reversibility of [11C]SCH 39166 binding to dopamine D-1 receptors.

Animals↗

A comparative PET-study of five carbon-11 or fluorine-18 labelled salicylamides. Preparation and in vitro dopamine D-2 receptor binding.

Five 11C- or 18F-labelled salicylamides ([11C]raclopride (I), [11C]eticlopride (II), [18F]NCQ 258 (III), [18F]NCQ 134 (IV) and [18F]NCQ 135 (V] were prepared. The total radiochemical yields of I-V from EOB were 3-30% (decay-corrected) with an overall synthesis time of 40-110 min. All compounds were isolated by semi-preparative HPLC and the radiochemical purity was greater than 99%. I-V were in separate experiments injected into Cynomolgus monkeys for PET-examination of ligand distribution in brain in vivo. I-V passed rapidly across the blood-brain barrier. With both analogs I and II there was a high uptake in the striatum, a region with a high density of dopamine D-2 receptors. With the 18F-labelled analogs III and IV, the uptake in the striatum was almost identical to that in the dopamine receptor poor cerebellum whereas the striatal uptake of V was clearly higher than in the cerebellum. Unlabelled I-V (raclopride, eticlopride, NCQ 258 (VII), NCQ 134 (VIII) and NCQ 135 (IX)) were also prepared and examined in vitro using [3H]raclopride and [3H]spiperone binding to rat striatal dopamine D-2 receptors. A significantly lower affinity was shown for NCQ 258 and NCQ 134 (5 times) compared to that of raclopride and eticlopride, respectively, whereas the affinity of NCQ 135 was similar to that of eticlopride.

Animals↗

D2 dopamine receptors in neuroleptic-naive schizophrenic patients. A positron emission tomography study with [11C]raclopride.

Several groups have reported increased densities of D2 dopamine receptors in the basal ganglia of schizophrenic brains postmortem. The significance of this finding has been questioned, since an upregulation of receptor number may be a neuronal response to neuroleptic drug treatment. We have used positron emission tomography and [11C]raclopride to examine central D2 dopamine receptor binding in 20 healthy subjects and 18 newly admitted, young, neuroleptic-naive patients with schizophrenia. An in vivo saturation procedure was applied for quantitative determination of D2 dopamine receptor density (Bmax) and affinity (Kd). When the two groups were compared, no significant difference in Bmax or Kd values was found in the putamen or the caudate nucleus. The hypothesis of generally elevated central D2 dopamine receptor densities in schizophrenia was thus not supported by the present findings. In the patients but not in the healthy controls, significantly higher densities were found in the left than in the right putamen but not in the caudate nucleus.

Adult↗

Maps of receptor binding parameters in the human brain--a kinetic analysis of PET measurements.

A kinetic method is described for the estimation of neuroreceptor density as well as the rate constants for association and dissociation of rapidly equilibrating radioligands. The method is exemplified by positron emission tomographic measurements of the human brain using 11C-raclopride, a D 2 dopamine receptor antagonist, and 11C-Ro 15-1788, a benzodiazepine receptor antagonist. Using a linear non iterative algorithm, regional binding characteristics were calculated and displayed pixel by pixel in brain maps. Data from repeated experiments on the same subject with different amounts of the unlabeled ligand were utilized. The binding characteristics were determined according to a two step procedure in which the time course of the free radioligand concentration was estimated from a reference region considered to be free of specific receptor binding sites. Alternative methods to determine the concentration of free radioligand are discussed.

Algorithms↗

Central D1- and D2-receptor occupancy during antipsychotic drug treatment.

1. It has been unequivocally shown that antipsychotic compounds reduce dopaminergic transmission. A relationship in vitro between the potency for the antipsychotic effect and the blockade of D2-dopamine receptors has been shown. No such relationships have been demonstrated for any other central receptor population. 2. Positron emission tomography (PET) has made it possible to investigate interactions of psychotropic drugs with central receptors in the living human brain. Using the selective D2 receptor antagonist raclopride labelled with positron emitting isotope 11C, it has been shown that chemically distinct classical neuroleptics in conventional doses occupy a high degree (65-89%) of the D2-receptors in the human brain. The results substantiate the opinion that the antipsychotic effects is mediated by a blockade of D2-dopamine receptors. 3. The degree of binding to D1-receptors using the 11C-labelled D1-antagonist from Schering (SCH 23390) as the ligand was also determined. The D1-receptor occupancy seemed to be dependent on the type of the antipsychotic compound studied. 4. The atypical neuroleptic compound clozapine demonstrated a different binding profile than the classical neuroleptics. Thus, clozapine in conventional doses occupied D2-receptors to a smaller extent (40%, 40%, 65%) than classical neuroleptics. The occupation of D1-receptors was higher (40%, 42%) than that of classical compounds (0-36%). 5. The unique clinical profile of clozapine may be related to its potency on both D1- and D2-receptors. The distribution of D1-receptors varies from that of D2-receptors in the human brain which may be one reason for the importance of blocking both D1- and D2-receptors for a full antipsychotic response.

Adult↗

Carbon-11 labelling of eticlopride in two different positions--a selective high-affinity ligand for the study of dopamine D-2 receptors using PET.

A new highly selective high-affinity dopamine D-2 receptor antagonist, eticlopride ((-)-(S)-5-chloro-3-ethyl-N-((1-ethyl-2-pyrrolidinyl) methyl)-6-methoxysalicylamide), was labelled with 11C in two different positions ([N-ethyl-11C]eticlopride (I)) and ([methyl-11C]eticlopride (II)). Product I was prepared by N-alkylation of the N-desethyl compound with [11C]ethyl iodide. II was prepared by O-alkylation of the diphenolic precursor with [11C]methyl iodide followed by separation of the two methylated products. The radiochemical yields were 15-20% (EOB) with an overall synthesis time of 45-60 min. Both compounds were isolated by semi-preparative HPLC and the radiochemical purity was in both cases greater than 99%. I was injected i.v. in a Cynomolgus monkey and brain radioactivity was measured by positron emission tomography (PET). The specific activity was 70 Ci/mmol at time of injection. There was a marked accumulation of radioactivity in the basal ganglia, regions known to have a high density of dopamine D-2 receptors.

Animals↗

Comparison of the in vitro receptor binding properties of N-[3H]methylspiperone and [3H]raclopride to rat and human brain membranes.

The aim of the present investigation was to study and compare the in vitro binding properties of the two radioligands N-[3H]methylspiperone ([3H]NMSP) and [3H]raclopride. These compounds, labeled with 11C, have been extensively used in positron emission tomography studies on central dopamine D2 receptors in schizophrenic patients, although with diverging results. One study (using [11C]NMSP) showed an increased dopamine receptor density in drug-naive schizophrenic patients, whereas in another study (using [11C]raclopride) the density in schizophrenic patients was no different from that in healthy controls. In the present study, using in vitro binding techniques, the density of the binding sites was found to be similar irrespective of which of the two radioligands was used (20 fmol/mg wet weight in rat striatum and 10 fmol/mg in human putamen; the 5-hydroxytryptamine 2 receptors were blocked with 40 nM ketanserin). [3H]NMSP had a 10-fold higher affinity (KD, 0.3 nM in rat striatum and 0.2 nM in human putamen) than [3H]raclopride (KD, 2.1 nM in rat striatum and 3.9 nM in human putamen), which was consistent with the longer dissociation half-life of [3H]NMSP compared with [3H]raclopride (14.8 and 1.19 min, respectively). There was an approximate overall similarity between the inhibition constants for five dopamine antagonists, chlorpromazine, haloperidol, raclopride, remoxipride, and NMSP, when using either radioligand. The Ki values were, however, two- to four-fold higher when using [3H]NMSP as the radioligand, irrespective of inhibiting compound, except for chlorpromazine (and haloperidol in human putamen). NMSP was found to inhibit the binding of [3H]raclopride competitively, whereas raclopride inhibited the binding of [3H]NMSP both competitively and noncompetitively. This difference suggests that part of the binding site is exclusively used by NMSP and can only be allosterically interfered with by raclopride. It is proposed that [3H]NMSP binds to an additional set of accessory binding sites, presumably located more distantly from the agonist binding active site than the sites to which [3H]raclopride binds.

Animals↗

Drug interaction studies with remoxipride.

The interaction potential of remoxipride was investigated with biperiden, warfarin, diazepam, and ethanol. The studies were conducted in 12 healthy volunteers each of whom received single doses of remoxipride, the interacting drug, and the combination in a randomized crossover design. Remoxipride and biperidene had no influence on each other's pharmacokinetics. The pharmacokinetics of warfarin enantiomers were uninfluenced by remoxipride. Ethanol and diazepam had no effect on the pharmacokinetics of remoxipride. The effect of remoxipride on the elevation of plasma prolactin levels was not modified by biperiden and the effect of warfarin on the prolongation of prothrombin time was uninfluened by remoxipride. Remoxipride showed no pharmacokinetic interaction with any of the drugs studied, nor was any pharmacodynamic interaction observed in the remoxipride versus biperiden and remoxipride versus warfarin studies.

Adolescent↗

Distribution of remoxipride to the human brain and central D2-dopamine receptor binding examined in vivo by PET.

Remoxipride is a new antipsychotic drug that binds selectively to the D2-dopamine receptor subtype as demonstrated in animal studies in vitro and in vivo. It is generally assumed that the antipsychotic effect of neuroleptic drugs is mediated by blockade of dopamine receptors. The aim of the present study was to use positron emission tomography (PET) and the ligand [11C] raclopride to examine the central D2-dopamine receptor occupancy in man during oral administration of remoxipride. After oral administration of remoxipride 100 mg three times daily to a healthy male subject there was a 73% central D2-dopamine receptor occupancy. In a schizophrenic patient treated with remoxipride 200 mg twice daily there was a 71% occupancy. These occupancy values are similar to the values of 65-85% previously found in a series of patients treated with neuroleptics representative of all currently used chemical classes. In a separate experiment, remoxipride was labelled with 11C and injected intravenously and the distribution of radioactivity to the brain examined. Radioactivity appeared in the brain during the first minutes after injection and 4.5 min after injection it accounted for 0.8% of the total radioactivity injected, thus indicating that [11C]remoxipride had rapidly passed through the blood-brain barrier.

Administration, Oral↗