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H Hall

Publications and source records attributed to H Hall.

At least 19 recordsLinked to original sources

Gpp(NH)p stimulates [3H]raclopride binding to homogenates from human putamen and accumbens.

The effects of the stable GTP analogue Gpp(NH)p (5'-guanylyl imido diphosphate) were examined on in vitro [3H]raclopride binding to dopamine D2 receptors in preparations from post mortem human brains. The estimated number of receptors in the brain was 29% and 38% higher in putamen and accumbens, respectively, when determined in the presence of Gpp(NH)p as compared to its absence. The interaction of agonists was biphasic confirming the two affinity state model of the receptor--G-protein complex. The addition of Gpp(NH)p to the assay abolished the two site competition of apomorphine with [3H]raclopride binding in both regions studied. The non-specific binding at high concentrations of apomorphine was not significantly affected by the addition of Gpp(NH)p, indicating that only the specific binding of [3H]raclopride to the dopamine D2 receptor is increased.

Apomorphine

[11C]Ro 15-4513, a ligand for visualization of benzodiazepine receptor binding. Preparation, autoradiography and positron emission tomography.

Ro 15-4513, a partial inverse agonist at the benzodiazepine (BZ) receptor site was labelled with 11C and used for in vitro autoradiography on human post mortem brain sections and for positron emission tomography (PET) on Cynomolgus monkeys. The total radiochemical yield of [11C]Ro 15-4513 was 30-40% with an overall synthesis time of 40 min. The specific radioactivity was about 1000 Ci/mmol at end of synthesis. In vitro autoradiography showed that [11C]Ro 15-4513 bound specifically predominantly in the neocortex of the human brain. Specific binding was also demonstrated in the basal ganglia and the cerebellar cortex. Flumazenil (Ro 15-1788) and clonazepam inhibited the binding in cerebral regions, but a significant proportion in the cerebellum was not inhibited by these agents. This proportion may represent alpha 6-containing BZ receptors. PET examination of [11C]Ro 15-4513 binding in Cynomolgus monkeys demonstrated high uptake of radioactivity in neocortex. The uptake of radioactivity was markedly displaced by high doses of Ro 15-4513 or clonazepam. [11C]Ro 15-4513 should be a useful ligand to examine BZ receptor characteristics in the living human brain by PET.

Animals

Effect of raclopride on dopamine D2 receptor mRNA expression in rat brain.

Prolonged treatment with dopamine D2 receptor antagonists is known to elevate the density of dopamine D2 receptor binding sites in caudate-putamen and nucleus accumbens in rat and human brain. In this study we used the dopamine D2 receptor antagonist raclopride (3 mumol/kg, s.c.) to determine if a single injection or daily administration of this drug for up to 18 days changed the expression of dopamine D2 receptor mRNA in rat caudate-putamen and accumbens as measured by in situ hybridization. A single injection of raclopride did not significantly change the numerical density of dopamine D2 receptor mRNA-expressing neurons in any of the regions examined. A daily administration of raclopride for 18 days resulted in a 31% increase in the number of cells expressing detectable amounts of dopamine D2 receptor mRNA in dorsolateral caudate-putamen and in a 20% increase in the area of silver grains over individual hybridization-positive neurons in this brain region measured on emulsion-dipped slides. The region-specific increase in the D2 receptor mRNA level in dorsolateral caudate-putamen was confirmed by measurement of the hybridization signal on X-ray film autoradiograms. The levels of D2 receptor mRNA remained unchanged in medial caudate-putamen and accumbens after 18 days' treatment. The region-selective increase in dopamine D2 receptor mRNA expression in dorsolateral caudate-putamen indicates a differential regulation of dopamine D2 receptor mRNA expression in a subpopulation of caudate-putamen neurons by this neuroleptic. We suggest that the increase in dopamine D2 receptor density in caudate-putamen known to follow prolonged dopamine D2 receptor blockade to some extent is regulated at the level of gene expression.

Analysis of Variance

Saturation analysis in receptor binding assays: an evaluation of six different calculation techniques.

Randomized errors to varying extents have been introduced in a constructed data set stimulating receptor binding saturation analyses. The parameters Bmax and Kd were then determined using six different evaluation techniques, four linear and two non-linear. It is concluded that a non-linear evaluation gives more reliable results, especially when errors are large. Furthermore, an inevitable correlation between Bmax and Kd regardless of evaluation technique results in possible misinterpretations of simultaneous changes in both parameters.

Computer Simulation

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

Self-regulation and assessment approaches for vaso-occlusive pain management for pediatric sickle cell anemia patients.

An interdisciplinary program with the goal of teaching self-regulation and minimizing excessive narcotic use in the management of vaso-occlusive pain (V-O) in pediatric sickle cell anemia patients is described. A small group of patients do not respond well to any of our outpatients or inpatients medical regimens, leading us to suspect that psychological factors are influencing pain reports. We outline our multi-faceted assessment approach to evaluating such psychological factors, which includes a pain flow sheet, symptom check list, and a psychophysiologic profile. Published reports of self-regulation training including biofeedback, relaxation/imagery, and hypnosis have been associated with decreased pain symptoms, reduced number of emergency room and hospital visits for pain, decreased narcotic use, and increased school attendance. A case study of a nine-year-old patient with sickle cell disease is described before and after self-regulation training. Finally, other alternative approaches that avoid excessive narcotic use are discussed with some case reports.

Adaptation, Psychological

Synthesis and binding properties of the fluorinated substituted benzamide [3H]NCQ 115, a new selective dopamine D2 receptor ligand.

[3H]NCQ 115 [R)-5-bromo-2,3-dimethoxy-N-[1-([2,5-3H]-4- fluorobenzyl)-2-pyrrolidinyl)methyl)benzamide) was prepared by acylation of (R)-(2-aminomethyl)-1- ([2,5-3H]-4-fluorobenzyl)pyrrolidine, which was obtained in a stereo-conservative synthesis from (R)-prolinamide. Purification by reversed phase high performance liquid chromatography (HPLC) gave [3H]NCQ 115 with a radiochemical purity of greater than 99% and a specific activity of 0.97 GBq/mumol (36 Ci/mmol). Saturation analyses, association and dissociation kinetics as well as binding competition with several compounds of various classes were performed with [3H]NCQ 115 in rat striatal homogenates. Saturation analyses in vitro showed that [3H]NCQ 115 bound to a single binding site with a Kd = 214 pM and Bmax = 35.4 fmol/mg. The binding of [3H]NCQ 115 was dependent upon sodium ions, since the number of binding sites was altered when sodium ions were excluded from the incubation medium. NCQ 115 inhibited the binding of [3H]raclopride to dopamine D2 receptors with high affinity (Ki = 147 pM), having much lower affinity for other receptors. The affinity of this substituted 1-benzyl-2-pyrrolidinylmethyl benzamide was confined to the (R)-enantiomer, which contrasts with that of the corresponding N-ethyl derivatives such as FLB 457, raclopride, eticlopride, sulpiride and NCQ 298, where the pharmacological activity is found in the (S)-enantiomer. It can be concluded that [3H]NCQ 115 binds to dopamine D2 receptors in the rat striatum with high affinity and high selectivity. [3H]NCQ 115 can also be used for in vivo binding studies of the brain. [18F]NCQ 115 may be a suitable ligand for positron emission tomography (PET) studies of the human brain in vivo.

Animals

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

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

Potential antipsychotic agents. 9. Synthesis and stereoselective dopamine D-2 receptor blockade of a potent class of substituted (R)-N-[(1-benzyl-2-pyrrolidinyl)methyl]benzamides. Relations to other side chain congeners.

A number of substituted N-[(1-benzyl-2-pyrrolidinyl)methyl]benzamides and -salicylamides have been prepared and investigated as dopamine D-2 receptor antagonists in vitro and in vivo. The affinity was found to be confined to the R enantiomer, in contrast to the corresponding N-ethyl or N-allyl derivatives. The X-ray structure of one of the compounds (15) confirmed the R stereochemistry. This compound (15) was found to adopt a solid-state conformation in which the 4-fluorobenzyl group is folded over the salicylamide moiety. Benzamides having a 2,3-dimethoxy substitution pattern (24 and 26) or salicylamides with a 5,6-dimethoxy grouping (21 and 22) were especially potent, in that they inhibited [3H]spiperone binding to rat striatal dopamine D-2 receptors in vitro with IC50 values of about 1 nM. The new compounds' ability to block apomorphine-induced stereotypies correlated with the affinity for the [3H]spiperone binding site. Higher dose levels were necessary to induce catalepsy than to block the apomorphine-induced responses. The influence of the aromatic substituents on the potency of substituted benzamides with three types of side chains, i.e. (R)-(1-benzyl-2-pyrrolidinyl)methyl, (S)-(1-ethyl-2-pyrrolidinyl)methyl and 1-benzyl-4-piperidinyl, was compared. The 3-bromo-5,6-dimethoxysalicylamide substitution pattern was found to be the most general since it gave very potent compounds in all series. The substituted (R)-N-[(1-(4-fluoro-benzyl)-2-pyrrolidinyl)methyl]benzamides (26) and -salicylamides (22) are suitable for development into 18F radioligands without altering the parent structure.

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

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

Potential antipsychotic agents 5. Synthesis and antidopaminergic properties of substituted 5,6-dimethoxysalicylamides and related compounds.

A series of 3-substituted 5,6-dimethoxysalicylamides III (9-13 and 15) has been synthesized from the corresponding 2,5,6-trimethoxybenzoic acids. Relaxation times T1 and carbon chemical shifts of the methoxy groups in III showed that the 6-methoxy group adopts a nearly perpendicular orientation and the 5-methoxy group takes on a more coplanar orientation with respect to the ring plane in solution. The salicylamides III display a very high and stereoselective affinity for the [3H]spiperone and [3H]raclopride binding sites in vitro. Regioisomeric salicylamides IV also exhibit pronounced, but lower than III, affinity for the [3H]spiperone binding site. The structural requirements were further assessed by studies of the related amino analogues 23 and 24 and hydroxy analogue 27. The 3-bromo compound 11 (FLB 463) was studied in various in vivo models and compared with the dopamine-D2 antagonists sulpiride, raclopride, eticlopride, and haloperidol. The high potency of 11 to selectively block dopamine-D2 receptors in vitro and in vivo combined with indications on a low potential for motor side effects makes it a very interesting new member of the class of substituted salicylamides.

Animals