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Biomedical subjects

S C Cheetham

Publications and source records attributed to S C Cheetham.

34 records · Page 2Linked to original sources

Brain 5-HT uptake sites, labelled with [3H]paroxetine, in antidepressant-free depressed suicides.

Brain serotonin (5-HT) uptake sites were quantitated, by saturation binding of [3H]paroxetine, in 10 brain regions from 22 suicide victims and 20 control subjects. Suicide victims were restricted to those subjects in whom a firm retrospective diagnosis of depression was established and who had not recently been prescribed antidepressant drugs. The Kd and Bmax of [3H]paroxetine did not differ significantly between controls and depressed suicides in any of the brain regions. In putamen, Bmax values of suicides who died non-violently were lower than controls, whereas those who died by violent methods did not differ from controls. No significant differences between violent or non-violent suicides and their matched controls were found in other brain areas. These results offer little support for the view that suicide/depression is associated with an abnormality in 5-HT uptake.

Brain Chemistry↗

Brain beta-adrenoceptor binding sites in antidepressant-free depressed suicide victims.

beta-Adrenoceptor binding sites were quantitated by saturation binding of [3H]CGP 12177 in 9 brain regions from 21 suicide victims, with a firm retrospective diagnosis of depression, who had not recently received antidepressant drugs, and 20 age- and sex-matched controls. In depressed suicides the number of total beta-adrenoceptors was significantly lower in temporal cortex (Brodmann area 38, by 19%) and beta 1-adrenoceptors (Brodmann area 21/22, by 17%) compared to controls. Suicides who died by violent means had significantly lower numbers of total beta- and beta 1-adrenoceptors in frontal cortex than matched controls (by 23 and 25%, respectively) and than non-violent suicides (by 20 and 22%, respectively) and lower numbers of beta 1-adrenoceptors in temporal cortex (Brodmann area 21/22) than matched controls (by 16%). Depressed suicides who died by non-violent means had lower numbers of total beta-adrenoceptors in occipital cortex than matched controls (by 24%) and than violent suicides (by 18%), and lower numbers of total beta- and beta 1-adrenoceptors in temporal cortex (Brodmann area 38) than matched controls (by 27 and 24%, respectively). Depression in suicide victims is associated with deficits in beta-adrenoceptor binding sites, largely restricted to cortical areas.

Adult↗

Brain 5-HT1 binding sites in depressed suicides.

5-HT1 and 5-HT1A binding sites were measured in brain tissue obtained at postmortem from 19 suicides, with definite evidence of depression, and 19 sex and age-matched controls. Thirteen of the depressed suicides had not been prescribed psychoactive drugs recently (drug-free suicides); six had been receiving antidepressant drugs, alone or in combination with other drugs (antidepressant-treated suicides). No significant differences were found in the number or affinity of 5-HT1 and 5-HT1A binding sites in frontal or temporal cortex between drug-free suicides and controls. The number of 5-HT1 sites was significantly lower (by 20%), affinity unaltered, in hippocampus and the affinity significantly lower (by 33%), number unaltered, in amygdala of drug-free suicides than controls. The number of 5-HT1 binding sites tended to be higher and the affinity lower in the antidepressant-treated compared to drug-free suicides, and significantly so in hippocampus. The present results, together with our previous studies, provide no evidence of altered cortical 5-HT markers in depressed suicides, but further emphasise abnormalities in the hippocampus.

Adult↗

Serotonin concentrations and turnover in brains of depressed suicides.

5-Hydroxytryptamine (5-HT) and 5-hydroxyindoleacetic acid (5-HIAA) concentrations and 5-HT turnover (5-HIAA/5-HT) were determined in 6 brain regions from 19 suicide victims in whom a retrospective diagnosis of depression was established, and 19 age- and sex-matched control subjects. Thirteen of the suicides were free of psychoactive drugs at the time of death; 5 were receiving antidepressant drugs. 5-HT, 5-HIAA and 5-HT turnover did not differ significantly between the total, drug-free and antidepressant-treated suicides and controls in frontal and temporal cortex, caudate and hippocampus. 5-HIAA concentration was significantly higher in amygdala of drug-free suicides than controls, whereas 5-HT and 5-HT turnover did not differ. 5-HT concentration was significantly lower in putamen of the total and antidepressant-treated suicides and a similar reduction was also apparent in the drug-free suicides. 5-HT turnover in putamen was significantly higher in the total and drug-free suicides compared to controls. 5-HT and 5-HIAA concentrations in putamen were significantly lower in drug-free suicides who died by non-violent means than in those who died by violent means. Differences between controls and suicides could not be attributed to age, sex or postmortem delay. These results offer no support for the view that 5-HT turnover is reduced in depressed subjects who commit suicide.

Adolescent↗

Beta-adrenoceptors in human brain labelled with [3H]dihydroalprenolol and [3H]CGP 12177.

beta-Adrenoceptor binding sites were characterised and quantitated in post-mortem human brain with [3H]dihydroalprenolol ([3H]DHA) and [3H]CGP 12177. In cerebral cortex, isoprenaline and propranolol displaced both radioligands with uniform affinity. Practolol and CGP 20712A (selective beta 1-adrenoceptor antagonists) displaced with high affinity from a greater proportion of sites than ICI 118,551 and IPS 339 (selective beta 2-adrenoceptor antagonists). In cerebellum, propranolol displaced both radioligands with uniform affinity. ICI 118,551 displaced with high affinity from a greater proportion of sites than CGP 20712A. The density of total beta-adrenoceptors (defined with isoprenaline) and of beta 1- and beta 2-adrenoceptors (defined with CGP 20712A and ICI 118,551 respectively) was studied by saturation binding of both radioligands in 13 brain areas. beta-Adrenoceptor density was higher in caudate, putamen and nucleus accumbens (100-120 fmol/mg protein) than cortex (50-70 fmol/mg protein) and densities were lowest in hypothalamus and cerebellum (27-38 fmol/mg protein). The proportion of beta 1-adrenoceptors (as a % of total beta-adrenoceptors) was high in caudate (80%), putamen (80%) and cortex (60-70%) and lower in hippocampus (40%) and cerebellum (30%). Both radioligands labelled a very similar number of beta-adrenoceptors in all brain regions studied.

Adrenergic beta-Antagonists↗

[3H]5-HT binding in post-mortem human cerebral cortex: methodological considerations.

The effects of different membrane preparations and assay conditions on [3H]5-HT binding to post-mortem human cortical tissue was studied. Optimal binding necessitated thorough removal of endogenous 5-HT and this was achieved either by hypotonic lysis or by preincubation of the membranes at 37 degrees C. Calcium chloride (4 mM) increased specific [3H]5-HT binding. The further addition of ascorbic acid (5.7 mM) or ascorbic acid and clorgyline (10 microM) reduced specific [3H]5-HT binding.

Adult↗

[3H]5-hydroxytryptamine binding sites in postmortem human brain.

Binding sites for [3H]5-hydroxytryptamine (5-HT) in postmortem human frontal cortex, hippocampus and amygdala were studied by displacement with 5-HT selective drugs. The results demonstrated the selective labelling of 5-HT1-like sites by [3H]5-HT in the cortex, with little or no labelling of 5-HT2 or 5-HT3 sites. Self-displacement of the binding of [3H]5-HT is consistent with the presence of a single population of sites, indicating that 5-HT is non-selective for the 5-HT1 subtypes. Around 40% of the 5-HT1 sites in the frontal cortex and amygdala were of the 5-HT1A subtype, in contrast to 60% in the hippocampus. The drug RU 24969 consistently displaced with, a high affinity, a greater proportion of [3H]5-HT sites than did 8-OH-DPAT in all three regions of the brain. The nature of these additional sites was not established. A small proportion (less than 10%) of [3H]5-HT sites in the frontal cortex appeared to be of the 5-HT1C subtype, as these sites were displaced with high affinity by mianserin.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Brain GABAA/benzodiazepine binding sites and glutamic acid decarboxylase activity in depressed suicide victims.

We have investigated the involvement of gamma-aminobutyric acid (GABA) in depression by quantitating benzodiazepine (BZ) binding sites, the ability of GABA to stimulate BZ binding and glutamic acid decarboxylase activity in frontal and temporal cortex obtained at postmortem examination from 21 suicide victims and 21 age- and sex-matched controls. We limited our study to suicide victims with clear evidence of depression, in the absence of symptoms of other psychiatric disorders. Thirteen of the depressed suicide victims had not been prescribed psychoactive drugs recently and none were found in their blood at postmortem; of the remaining 8 suicides, 6 were receiving antidepressant drugs, alone or in combination with other drugs. The number of BZ binding sites was significantly greater (by 18%) in the frontal cortex of the total group of depressed suicides compared to controls, but did not differ in the temporal cortex. The increase in the number of BZ binding sites in the frontal cortex was of similar magnitude when drug-free (16%), drug-treated (21%) and antidepressant-treated suicides (16%) were compared to matched controls, although the increase was only statistically significant for the drug-treated suicides. The Kd of BZ binding and the ability of GABA to stimulate BZ binding did not differ significantly between controls and the total, drug-free, drug-treated or antidepressant-treated suicides in either cortical area. Glutamic acid decarboxylase activity did not differ significantly between control and suicide groups, but was markedly reduced in subjects dying by carbon monoxide poisoning. The present study provides evidence for a greater number of BZ binding sites in the frontal cortex of depressed suicide victims, which could not clearly be attributed to drug treatment.

Adult↗

Brain 5-HT2 receptor binding sites in depressed suicide victims.

5-HT2 receptor binding sites were measured (by saturation binding of [3H]ketanserin) in brain tissue obtained at postmortem from 19 suicide victims with definite evidence of depression and 19 sex and age-matched control subjects. Five of the suicide victims were receiving antidepressant drugs prior to death; 13 suicide victims had not been prescribed antidepressant or other psychoactive drugs recently and none were found in their blood at postmortem. The number of serotonin-2 (5-HT2) binding sites in frontal, temporal and occipital cortex and amygdala did not differ significantly between the depressed suicide victims and controls, either in the total suicide group or in the antidepressant drug-free suicides. The number of 5-HT2 binding sites in the hippocampus did not differ from controls in the total suicide group but was significantly lower (by 23%) in the antidepressant-free suicide group. The affinity of [3H]ketanserin binding did not differ from controls in the antidepressant-free suicides but was lower (increased Kd) in those subjects receiving antidepressant drugs. No correlation was found between the time of death and storage of tissue or the duration of tissue storage prior to assay and the number or affinity of 5-HT2 binding sites. A significant negative correlation was found between age of the subject and the number of 5-HT2 binding sites in the frontal and occipital cortex. The present study of suicide victims with definite evidence of depression do not confirm previous studies of increased numbers of 5-HT2 binding sites in suicide victims and suggest that these previous findings may be related to factors other than depression.

Adolescent↗

Brain GABAB binding sites in depressed suicide victims.

Binding sites for gamma-aminobutyric acid, type B (GABAB), were measured in post-mortem brain samples (frontal cortex, temporal cortex, and hippocampus) from a group of suicide victims and a group of sex- and age-matched controls. Retrospective psychiatric diagnosis was performed, and only suicide victims with clear evidence of depression in the absence of symptoms of other psychiatric or neurological disorders were studied. There were no significant differences between depressed suicides and controls in the number or affinity of GABAB binding sites in the frontal or temporal cortex and no difference in GABAB binding (measured at two concentrations) in the hippocampus. Thirteen of the depressed suicides had not been prescribed antidepressant drugs recently, and none were found in their blood at postmortem. The number of GABAB binding sites in the frontal and temporal cortex and GABAB binding in the hippocampus did not differ significantly between these drug-free suicides and matched controls. The Kd was higher, however, in the temporal cortex of the drug-free suicides than in the controls. A significant negative correlation was found between age and the number of GABAB binding sites in the temporal cortex (on the basis of pooled data from suicides and controls). These results indicate that GABAB binding sites are unaltered in the brains of depressed suicide victims.

Adolescent↗

Uptake of gamma-aminobutyric acid and glycine by synaptosomes from postmortem human brain.

Synaptosomes prepared from frozen postmortem human brain accumulated the neurotransmitter gamma-aminobutyric acid (GABA) and the conformationally restricted GABA analogue cis-3-aminocyclohexanecarboxylic acid (ACHC) by a sodium-dependent, temperature-sensitive, high-affinity transport process into an osmotically sensitive compartment. This transport process could be inhibited by GABA analogues (ACHC, 2,4-diaminobutyric acid, nipecotic acid, arecaidine, guvacine) that have been shown in studies on other species to be relatively selective for neuronal rather than glial uptake systems, whereas the glial uptake inhibitor beta-alanine was ineffective. Synaptosomes prepared from frozen post-mortem human medulla and spinal cord, but not cerebral cortex, took up the neurotransmitter glycine by a sodium-dependent high-affinity transport process. The kinetic parameters for the high-affinity uptake of GABA, ACHC, and glycine were Km = 10 +/- 3, 49 +/- 19, and 35 +/- 19 microM; and Vmax = 98 +/- 15, 84 +/- 25, and 5.5 +/- 2.5 nmol/min/100 mg protein, respectively. These results demonstrate the feasibility of using human CNS preparations for studying GABA and glycine uptake, and suggest that such studies may be useful neurochemical markers for transmitter-specific presynaptic terminals in health and disease.

Aged↗

Effects of two convulsant beta-carboline derivatives, DMCM and beta-CCM, on regional neurotransmitter amino acid levels and on in vitro D-[3H]aspartate release in rodents.

Clonic seizures were induced in Swiss or DBA/2 mice by methyl-6-7-dimethoxy-4-ethyl-beta-carboline-3-carboxylate (DMCM), 0.048 mmol/kg i.p., or by methyl-beta-carboline-3-carboxylate (beta-CCM), 0.044 mmol/kg i.p. Measurement of regional brain (cortex, hippocampus, striatum, and cerebellum) amino acid levels after 15 min of seizure activity showed increases in gamma-aminobutyric acid (GABA) (in all regions after beta-CCM, and in cortex and hippocampus after DMCM), and an increase in glycine in the striatum after beta-CCM. Aspartate levels fell (in cortex and hippocampus) after DMCM, but were unchanged in all regions after beta-CCM. Glutamate levels fell in cortex after beta-CCM and in striatum after DMCM. Pretreatment with the excitatory amino acid receptor antagonist, 2-amino-7-phosphonoheptanoic acid, 0.5 mmol/kg i.p., 45 min prior to the beta-carboline, significantly increased the ED50 for DMCM-induced clonic seizures (4.68 mumol/kg vs. 9.39 mumol/kg). Similar pretreatment did not significantly alter the ED50 for beta-CCM (4.22 mumol/kg vs. 6.6 mumol/kg). Pretreatment with 2-amino-7-phosphonoheptanoic acid, 1.0 mmol/kg, blocked the increase in GABA content produced by DMCM but not the fall in cortical aspartate content. Potassium-induced release of preloaded D-[3H]aspartate from rat cortical or hippocampal minislices was enhanced in the presence of DMCM (100 microM). In contrast, stimulated release of D-[3H]aspartate (from cortex or hippocampus) was not altered in the presence of beta-CCM (100 microM). Although DMCM and beta-CCM are both considered to induce convulsion by acting at the GABA--benzodiazepine receptor complex, the convulsions differ in several pharmacological and biochemical respects. It is suggested that enhanced release of excitatory amino acid neurotransmitters plays a more important role in seizures induced by DMCM.

2-Amino-5-phosphonovalerate↗