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Biomedical subjects

C B Smith

Publications and source records attributed to C B Smith.

At least 91 records · Page 5Linked to original sources

Discriminative-stimulus effects of quipazine and l-5-hydroxytryptophan in relation to serotonin binding sites in the pigeon.

The 5-hydroxytryptamine (serotonin; 5-HT) agonists, RU-24969 [5-methoxy 3-(1,2,3,6-tetrahydro-4-pyridinyl)1H-indole, succinate], ipsapirone [2-(4-[4-(2-pyrimidinyl)-1-piperazinyl]butyl)-1,2- benzisothiazol-3-(2H)one-1,1-dioxidehydrochloride], 8-hydroxy-N,N-dipropyl-2-aminotetralin, lysergic acid diethylamide, fenfluramine and N,N-dimethyltryptamine were studied in pigeons trained to discriminate quipazine (1.0 mg/kg) from saline and in pigeons trained to discriminate I-5-HTP (18.0 mg/kg) from saline. Lysergic acid diethylamide, quipazine and fenfluramine generalized to the training stimulus in both groups of pigeons. N,N-dimethyltryptamine generalized to quipazine in all pigeons tested whereas N,N-dimethyltryptamine generalized to I-5-HTP in most pigeons tested. The natural substrate 5-HT and agonists with affinities for the 5-HT1 receptor and its subtypes (8-hydroxy-N,N-dipropyl-2-aminotetralin, ipsapirone, and RU-24969) only generalized in the I-5-HTP-trained pigeons. Equilibrium binding experiments using the ligands [3H]-5-HT and [3H]ketanserin were performed with six areas of pigeon brain and six homologous areas of rat brain. Two populations of 5-HT binding sites were found in brains of both species; one defined by high-affinity binding of [3H]-5-HT and the other defined by high-affinity binding of [3H]ketanserin. Kd values were similar for the two ligands in brains of both species. 5-HT, RU-24969 and ipsapirone displaced [3H]-5-HT but not [3H]ketanserin from pigeon brain membranes. The present study suggests that, in the pigeon, the 5-HT2 receptor might mediate the discriminative-stimulus effects of quipazine, whereas the 5-HT1 receptor might mediate the effects of I-5-HTP.

5-Hydroxytryptophan↗

Early visual deprivation results in persistent strabismus and nystagmus in monkeys.

To understand to what extent visual-pattern deprivation during infancy results in strabismus and nystagmus, the authors examined the long-term consequences of this type of deprivation in monkeys during the first 50 days of life. Three cynomolgus and three rhesus monkeys had the eyelids sutured closed within 24 hr of birth. At 25 days of age, the eyelids were opened, and the eyelids of the fellow eye were sutured closed for an additional 25 days (reverse-eyelid suture). When the eyelids were opened at 50 days of age, each monkey was found to have 20-30 delta of exotropia and nystagmus, which persisted for the duration of the study (1 yr). The cynomolgus monkeys developed a monocular 8-10 Hz pendular nystagmus in the eye sutured first. The rhesus monkeys developed a conjugate nystagmus with both jerk and pendular components. The slow phases often had velocity-increasing profiles. The rhesus monkeys also had a superimposed latent component to the nystagmus found during monocular viewing. One additional rhesus monkey was examined after 55 days of binocular-eyelid suturing. This monkey also developed exotropia and nystagmus resembling that of the other rhesus monkeys. These findings suggest that early pattern vision in monkeys is necessary for the development of normal ocular alignment and gaze-holding ability.

Animals↗

Dosimetric estimates for clinical positron emission tomographic scanning after injection of [18F]-6-fluorodopamine.

Positron emission tomographic (PET) scanning after systemic i.v. injection of fluorine-18-6-fluorodopamine ([18F]-6F-DA) is a method for visualizing and measuring regional sympathetic nervous system innervation and function. Based on results of preclinical studies of rats and dogs and on previous literature about the fate of injected tracer-labeled catecholamines, dosimetric estimates for clinical studies are presented here. After injection of 1 mCi of [18F]-F-DA, the radiation dose would be highest to the wall of the urinary bladder (1.40 rem/mCi), due to accumulation of radioactive metabolites of [18F]-F-DA in urine. Radioactivity also would accumulate in bile. Organs receiving the next highest dose would be the kidneys (0.9 rem/mCi) and small intestine (0.2 rem/mCi). The parenchymal radiation dose would be lowest in the brain, since there is an effective blood-brain barrier for circulating catecholamines. Radiation doses to all organs after administration of 1 mCi of [18F]-F-DA to humans would be less than 3 rem and, therefore, within current FDA guidelines.

Animals↗

Adrenergic status in anxiety disorders: platelet alpha 2-adrenergic receptor binding, blood pressure, pulse, and plasma catecholamines in panic and generalized anxiety disorder patients and in normal subjects.

In order to evaluate adrenergic function in anxiety disorders, platelet alpha 2-adrenergic binding parameters and supine and standing blood pressure, pulse, and venous plasma epinephrine and norepinephrine were determined in patients with panic attacks or generalized anxiety disorder and in normal subjects. The maximum number of binding sites (Bmax) for the partial agonist tritiated clonidine was significantly lower for both patient groups than for normal subjects, and the Bmax for the antagonist tritiated yohimbine was significantly lower for panic patients. There were no other substantive differences across groups. Prior exposure to psychotropic drugs might account for the results for clonidine binding, but not for yohimbine. The Bmax for clonidine was correlated with norepinephrine increases upon standing and, for panic patients, with the severity of full unexpected panic attacks. These data provide further evidence of adrenergic receptor abnormalities in people with anxiety disorders.

Adult↗

Alpha 2-adrenoreceptor status in obsessive-compulsive disorder.

Ten patients with obsessive-compulsive disorder (OCD) and 13 normal control subjects received intravenous infusions of 2 X 10(-6) g/kg of clonidine and normal saline on separate days. Responses to the drug relating to plasma growth hormone (GH), 3-methoxy-4-hydroxyphenylglycol (MHPG), heart rate, blood pressure, and several symptoms were determined. Additionally, platelet alpha 2-adrenoreceptor binding was measured in most of the subjects. GH, MHPG, blood pressure, and heart rate responses to clonidine did not differ between groups. As expected, patients reported more symptoms than normal subjects, and clonidine was sedating for both groups. Patients did not differ from normal subjects in the symptom response to clonidine. The maximum number of binding sites (Bmax) for tritiated clonidine was significantly greater in OCD patients than in normals. This pattern of alpha 2-adrenoreceptor status is different than the patterns in major depression and panic anxiety.

Adult↗

Vaginitis. Systematically solving a bothersome problem.

Vaginitis is a common cause of patient visits to primary care physicians. Causes include allergic and irritative factors and infectious agents. Diagnosis is readily made with use of simple office procedures such as wet smears, stains, and cultures. Treatment with appropriate antibiotics or vaginal preparations is usually effective.

Adolescent↗

Single residue modifications of the delta opioid receptor selective peptide, [D-Pen2,D-Pen5]-enkephalin (DPDPE). Correlation of pharmacological effects with structural and conformational features.

Six analogs of the highly delta opioid receptor selective, conformationally restricted, cyclic peptide [D-Pen2,D-Pen5]enkephalin, Tyr-D-Pen-Gly-Phe-D-PenOH (DPDPE), were synthesized and evaluated for opioid activity in rat brain receptor binding and mouse vas deferens (MVD) smooth muscle assays. All analogs were single amino acid modifications of DPDPE and employed amino acid substitutions of known effects in linear enkephalin analogs. The effect on binding affinity and MVD potency of each modification within the DPDPE structural framework was consistent with the previous reports on similarly substituted linear analogs. Conformational features of four of the modified DPDPE analogs were examined by 1H NMR spectroscopy and compared with DPDPE. From these studies it was concluded that the observed pharmacological differences with DPDPE displayed by diallyltyrosine1-DPDPE ([DAT1]DPDPE) and phenylglycine4-DPDPE ([Pgl4]DPDPE) are due to structural and/or conformational differences localized near the substituted amino acid. The observed enhanced mu receptor binding affinity of the carboxamide terminal DPDPE-NH2 appears to be founded solely upon electronic differences, the NMR data suggesting indistinguishable conformations. The observation that the alpha-aminoisobutyric acid substituted analog [Aib3]DPDPE displays similar in vitro opioid behavior as DPDPE while apparently assuming a significantly different solution conformation suggests that further detailed conformational analysis of this analog will aid the elucidation of the key structural and conformational features required for action at the delta opioid receptor.

Amino Acid Sequence↗

Comorbidity of panic disorder and major depressive disorder: effects on platelet alpha 2 adrenergic receptors.

Adrenergic receptor dysregulation has been described as occurring in both major depressive disorder (MDD) and panic disorder. Measurements of platelet alpha 2 adrenergic receptors in these patients may be confounded by the coexistence or comorbidity of both diagnoses in the same patient. To explore this possibility, we measured platelet alpha 2 adrenergic receptors (3H-clonidine and 3H-yohimbine binding) in 3 groups of patients (MDD only, panic disorder only, and those showing comorbidity of MDD and panic) and normal controls. Patients with comorbidity of MDD and panic disorder had significantly lower agonist binding (3H-clonidine).

Adult↗

Cyclic dermorphin-like tetrapeptides with delta-opioid receptor selectivity. 3. Effect of residue 3 modification on in vitro opioid activity.

A series of residue 3-modified analogs of the cyclic, delta-opioid receptor-selective, dermorphin-like tetrapeptide Tyr-D-Cys-Phe-D-Pen and the corresponding residue 4-modified analog of the related delta receptor-selective cyclic pentapeptide [D-Pen2,D-Pen5] enkephalin were synthesized and evaluated in opioid receptor binding assays and in the in vitro mouse vas deferens (MVD) bioassay. In both series, substitutions that would be expected to alter the orientation of the phenylalanine-substituted aromatic side chain relative to the rest of the peptide, due to changes in the conformation of the peptide backbone, had deleterious effects on binding affinity and MVD potency. In general, these adverse effects were more pronounced in the pentapeptide series, owing, most likely, to the greater rigidity and, therefore, reduced susceptibility to conformational perturbation of the tetrapeptides. Substitution of phenylalanine by p-fluorophenylalanine enhances binding affinity in the pentapeptide series, consistent with previous observations in the enkephalins, but is without effect on binding in the tetrapeptide series. Substitution of phenylalanine by homophenylalanine, which alters the relationship of the aromatic phenyl ring to the remainder of the peptide by inserting an additional methylene group between the aromatic moiety and the backbone, greatly reduces binding affinity and MVD potency in the pentapeptide. The corresponding modification in the tetrapeptide series has little effect on delta receptor binding affinity and MVD potency and enhances binding to mu opioid receptors. Several possible interpretations of these results are discussed.

Animals↗

Effects of muscarinic receptor agonists and antagonists on alpha 2-adrenoceptors in rat brain.

The specific binding of [3H]clonidine to alpha 2-adrenoceptors on neural membranes isolated from six brain areas was determined with rats treated for various periods of time with the muscarinic agonists, oxotremorine or pilocarpine, or with the muscarinic antagonists atropine, atropine methyl nitrate, scopolamine and scopolamine methyl bromide. Administration of pilocarpine, 10 mg/kg, twice daily i.p. for 1 and 14 days increased markedly the number of alpha 2-adrenoceptors on neural membranes from all six brain areas. In contrast, oxotremorine, 0.3 mg/kg, twice daily i.p., for 7 days decreased the number of alpha 2-adrenoceptors on membranes from all brain areas except the brainstem and caudate nucleus. Both atropine and scopolamine increased the density of alpha 2-adrenoceptors in specific brain areas. Neither atropine methyl nitrate nor scopolamine methyl bromide had an appreciable effect upon the specific binding of [3H]clonidine to neural membranes from most brain areas.

Animals↗

No evidence for a circadian rhythm of protein synthesis in the rat suprachiasmatic nuclei.

The mammalian suprachiasmatic nuclei contain an endogenous circadian pacemaker. A quantitative autoradiographic tracer method that measures L-[1-14C]leucine incorporation into protein was used to determine whether the overall rate of protein synthesis in the nuclei varies in a circadian fashion. Unlike the robust circadian rhythms of electrical activity and energy metabolism previously recorded from the nuclei at the two time points sampled, protein synthesis remained constant.

Amino Acids↗

Electrophysiological responsiveness to isoproterenol in rat hippocampal slices correlates with changes in beta-adrenergic receptor density induced by chronic morphine treatment.

The effects of chronic morphine treatment and morphine withdrawal on beta-adrenergic receptor density and electrophysiological responsiveness in rat hippocampus were examined. Chronic treatment of rats with morphine for 14 days resulted in a 19% increase in the number of beta-adrenergic receptors in hippocampus, as measured by the binding of the specific antagonist [3H]dihydroalprenolol (DHA). In comparison, the number of specific binding sites for [3H]DHA was decreased 27% in hippocampus in morphine-withdrawn animals, compared to saline-treated controls. These alterations in beta-adrenergic receptor density were not accompanied by a significant change in the dissociation constant (Kd) for [3H]DHA or in the inhibitory constants (Ki) for the displacement of the [3H]-antagonist by either norepinephrine or isoproterenol. Electrophysiological experiments in the in vitro hippocampal slice preparation revealed that responses to threshold as well as maximal concentrations of isoproterenol were significantly enhanced in morphine-dependent animals, compared to controls, whereas electrophysiological responsiveness to maximal concentrations of isoproterenol was decreased in slices from morphine-withdrawn rats. The results of this study indicate that beta-adrenergic receptors in hippocampus are up-regulated during the development of morphine dependence and down-regulated during opiate withdrawal. These changes in hippocampal beta-adrenergic receptor density are likely to be of functional relevance since they are manifested in a corresponding increase and decrease, respectively, in electrophysiological responsiveness to an exogenously administered beta-adrenergic receptor agonist.

Action Potentials↗

Changes in alpha 2-adrenoceptor number and function in brains of morphine-dependent rats.

The effects of long-term treatment of rats with morphine sulfate were assessed upon the specific binding of [3H]clonidine to alpha 2-adrenoceptors on neural membranes isolated from various brain areas and upon the function of presynaptic alpha 2-adrenoceptors during field stimulation of hippocampal slices. Rats were injected with morphine every 8 h for 14 days with doses which started at 10 mg/kg per injection i.p., and which increased every 3 days to a final dose of 100 mg/kg per injection on the last 2 days. At 8 and 32 h after the last injection the Bmax for [3H]clonidine binding to neural membranes from various brain areas was significantly decreased. At the same times, the fractional release of [3H]noradrenaline during field stimulation of hippocampal slices was increased and the sensitivity of the hippocampal slice to clonidine was reduced which indicated the development of a functional subsensitivity of the presynaptic alpha 2-adrenoceptor. These changes in receptor function persisted at 72 h after the last morphine injection although at this time there were marked increases over control values in [3H]clonidine binding to membranes from all rat brain areas except the caudate nucleus. These findings suggest that changes in alpha 2-adrenoceptor number and function which develop during long-term morphine administration might play an important role in opiate dependence.

Animals↗