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Biomedical subjects

B Arranz

Publications and source records attributed to B Arranz.

At least 19 recordsLinked to original sources

Lower weight gain with the orally disintegrating olanzapine than with standard tablets in first-episode never treated psychotic patients.

OBJECTIVE: A post-hoc analysis of the data from a randomised clinical trial involving prescription of antipsychotic treatment to never treated first-onset psychotic patients was used to compare the weight change after 6-week olanzapine treatment (standard tablets vs. orally disintegrating formulation). METHOD: In the subgroup of 38 patients randomised to olanzapine, standard olanzapine tablets were non-randomly and consecutively prescribed to the first 19 patients, with the orally disintegrating formulation being prescribed to the following 19 patients. RESULTS: After 6-week treatment with olanzapine, a significant higher increase in weight was noted in those patients on standard tablets (mean weight increase 6.3 +/- 1.9 Kg) as compared to those on orally disintegrating olanzapine (mean weight increase 3.3 +/- 3.2 Kg) (F = 7.7; p = 0.009). BMI increase was also significantly higher in the olanzapine tablet group (mean increase of 2.1 Kg/m(2) as compared with 1.1 Kg/m(2) in the orally disintegrating group) (F = 4.7; p = 0.036). Substantial weight gain (SWG) (> or =7% increase from baseline weight) was noted in 84.2% (n = 16) of the olanzapine tablet patients and in 31.6% (n = 6) of the orally disintegrating olanzapine patients, with the olanzapine tablet group showing a significant increase in the mean percentage of weight gain (F = 4.0; p = 0.014). CONCLUSIONS: Partial sublingual absorption occurring with orally disintegrating olanzapine may bypass gastrointestinal metabolisation and hence lead to differences in metabolite versus parent compound ratios. However, the need arises to replicate the present study with a longer follow-up.

Administration, Oral↗

A naturalistic multicenter study of intramuscular olanzapine in the treatment of acutely agitated manic or schizophrenic patients.

BACKGROUND: We conducted a naturalistic, multicenter, 24-hour, nonrandomized, observational study describing for the first time the effectiveness and safety of intramuscular (IM) olanzapine to control agitation and aggression in "real world" patients with psychosis. The data thus obtained was compared with that reported from randomized double-blind clinical trials. METHOD: 92 patients attending psychiatric emergency settings were enrolled. The study subjects were 44 male and 48 female patients with a mean age of 36.5+/-12 years and DSM-IV-TR diagnoses of schizophrenia (48.9%), psychotic disorder not specified (23.9%) or bipolar disorder (27.2%). 10 mg IM olanzapine was administered to all patients. An optional second injection was permitted> or =2 hours later in line with hospital policy. Evaluations (PANSS-EC and CGI-S) were performed at baseline and 2 and 24 hours following the IM injection. RESULTS: Two hours after IM olanzapine was administered, a mean decrease of -9.6 in the PANSS-EC from a baseline score of 26.5 was recorded. At the 24-hour endpoint a statistically and clinically significant reduction in the PANSS-EC scores (11.6+/-5.3) was observed as compared with values at study entry (26.5+/-5.9) and at 2 hours endpoint (16.9+/-9.3), which represent a mean decrease of -14.9 and -5.3, respectively. CONCLUSION: The present naturalistic study provides naturalistic data on the effectiveness of IM olanzapine in the treatment of acute agitation in patients with schizophrenia or bipolar mania that is in line the data obtained in randomized double-blind clinical trials.

Acute Disease↗

Pharmacological management of acutely agitated schizophrenic patients.

Agitation is commonly seen in acute schizophrenic patients and core symptoms include a wide range of symptom. It requires rapid and effective treatment approaches in order to protect patient and caregiver from potential injury. Clinician's decision of pharmacological treatment should be individualized to the needs and circumstances of the patient. Benzodiazepines, typical antipsychotics, and combinations of typical antipsychotics and benzodiazepines have been widely used as treatment options. Atypical antipsychotics have clear advantages over the typical drugs as they generally show a much better safety and tolerability profile, particularly to EPS and related side effects, however clinical perception regarding efficacy in treating acutely agitated psychotic patient is controversial. New intramuscular atypical antipsychotic formulations offer evidence of being at least as effective as typical antipsychotics in controlling agitation. Therefore, they should be considered as first line therapy in agitated schizophrenic patients.

Acute Disease↗

Loss of the circadian variation of platelet [3H]imipramine binding in delusional compared with non-delusional endogenously depressed patients.

BACKGROUND: The circadian variations of the serotonin reuptake sites were studied in 16 patients meeting DSM-IV criteria for major depression with melancholia, either with (n=8) or without (n=8) psychotic symptomatology. METHOD: The [3H]imipramine binding sites were measured in platelet samples. RESULTS: While no statistically significant difference was found between the morning (09:00 h) and evening (21:00 h) [3H]imipramine B(max) values in the control group, both the non-delusional and delusional melancholic patients showed higher evening than morning B(max) values, which were only statistically significant in the former. When both diagnostic groups were compared, the delusional patients showed significantly lower [3H]imipramine binding values than the non-delusional patients both in the morning and evening samples. Within the non-delusional depressed patients, those individuals with mood circadian variation, assessed by the 18th item of the HDRS, showed significantly lower B(max) values than those without mood variation. Lowest morning and evening B(max) values were noted in the delusional depressed group without mood variations. CONCLUSIONS: These results suggest that delusional depressions might have a different neurobiological substrate with loss of chronobiological rhythms.

Antidepressive Agents, Tricyclic↗

Altered 5-HT(2A) binding sites and second messenger inositol trisphosphate (IP(3)) levels in hippocampus but not in frontal cortex from depressed suicide victims.

The binding parameters of 5-HT(2A) and levels of its second messenger, 1,4,5-trisphosphate (IP(3)), were simultaneously studied in frontal cortex and hippocampus from the brains of 18 control subjects and 18 depressed suicide victims. All suicides met DSM-III-R criteria for depressive symptoms, suffered a violent death and had not taken any antidepressant drugs for at least 6 months prior to death. A significant decrease in the number of 5-HT(2A) binding sites (154+/-22 vs. 254+/-36 fmol/mg), together with a significantly lower apparent affinity constant (1.02+/- 0.08 vs. 1. 36+/-0.09 nM), was detected in hippocampus but not in frontal cortex from the depressed suicides compared to the control subjects. Furthermore, IP(3) concentrations were significantly increased in hippocampus (3.2+/-0.3 vs. 2.1+/-0.3 pmol/g) but not in frontal cortex (1.3+/-0.3 vs. 2.7+/-0.5 pmol/g) from the suicide victims. The reported results may indicate a significant hypersensitivity of the 5-HT(2A) postsynaptic receptor located in the hippocampus from depressed suicide victims, giving rise to an enhancement of its intracellular signaling system with higher IP(3) production.

Adolescent↗

Variations in [3H]imipramine and 5-HT2A but not [3H]paroxetine binding sites in suicide brains.

Both the [3H]imipramine and [3H]paroxetine binding sites and the 5-HT2A receptor were simultaneously determined in frontal cortex, cingulate cortex, hippocampus and amygdala from 17 control subjects and 17 depressed suicide victims. A significant decrease in the maximum binding (Bmax) of [3H]imipramine was observed in the hippocampus of suicide victims as compared to control subjects (160 +/- 25 vs. 328 +/- 52 fmol/mg protein; P = 0.007) without changes in the apparent affinity constant (Kd). Furthermore, a significant decrease in the number of 5-HT2A binding sites, together with a significantly lower Kd, was also observed in the hippocampus of suicides as compared to control subjects (129 +/- 18 vs. 225 +/- 32 fmol/mg protein; P = 0.02 and 0.91 +/- 0.07 vs. 1.38 +/- 0.08 nM, respectively; P = 0.006). [3H]Paroxetine binding did not display modifications between the two groups in either Bmax or Kd from any of the brain regions studied. When all four brain regions were taken together, a down-regulation was noted between presynaptic [3H]imipramine binding and the postsynaptic 5-HT2A receptor (r = -0.40; P = 0.0013) in the control group. This correlation did not appear in the suicide group. No correlation was observed between [3H]paroxetine binding and the 5-HT2A receptor in either control subjects or suicides. Taken together, these results suggest that the 5-HT uptake site measured with [3H]imipramine and the 5-HT2A receptors are reliable markers of serotonergic dysfunction.

Adult↗

Characterization of the 5-HT4 binding site in human brain.

In this study, drug inhibition and saturation experiments on the binding of the highly selective 5-HT4 antagonist [3H]GR 113808 were performed in human brain membranes so as to better characterize this binding site. Drug competition studies were carried out by incubating 0.2 nM [3H]GR 113808 in the presence of increasing concentrations of six different drugs, i.e. 5-HT, 5-CT, ondansetron, tropisetron, BIMU 1 and BIMU 8 (mixed 5-HT3 and 5-HT4 agonists). The binding displaced by 5-HT showed a drug inhibition constant (Ki) value of 197nM. The use of 5-CT or ondansetron also showed the existence of single-site models albeit with Ki values in the micromolar range (11,5 microM). Tropisetron, BIMU 1 and BIMU 8 displaced bound [3H]GR 113808 according to a two-site binding model, with the high affinity component in the nanomolar range and the low affinity site in the micro or milimolar range. Saturation experiments revealed high binding densities in basal ganglia (187 fmol/mg in putamen, and 149 fmol/mg in caudate nucleus), while lower densities were observed in cortical regions (49 fmol/mg in temporal cortex, 45 fmol/mg in parietal cortex and 71 fmol/mg in cingulate cortex). The apparent affinity (Kd) was similar in the brain regions studied, ranging from 0.13 to 0.34 nmol/l. Despite the enrichment of 5-HT receptors in human brain, their functional correlate in brain diseases remains to be clarified.

Adult↗

Serotonergic, noradrenergic, and dopaminergic measures in suicide brains.

Concentrations of the three main monoamines (5-HT, NA, and DA), their metabolites (5-HIAA, DOPAC, and HVA), and the serotonin precursor 5-hydroxy-L-tryptophan were simultaneously measured in frontal cortex, gyrus cinguli, and hypothalamus from 23 controls and 18 suicide victims. Overall suicides did not show significant differences with respect to the control group in any of the measured compounds. Significant increases in noradrenaline and dopamine concentrations were noted in the carbon monoxide poisoning suicides, together with a significant increased hypothalamic dopamine in the drug overdose suicides. It is suggested that the suicidal behavior is not related to substantial changes in cortical and hypothalamic monoaminergic function; however, the reported results could be secondary to the rapid effect of hypoxia and of the acute self-administration of certain drugs in specific metabolic pathways.

3,4-Dihydroxyphenylacetic Acid↗

Regional distribution of specific high affinity binding sites for 3H-imipramine and 3H-paroxetine in human brain.

The binding of 3H-paroxetine and 3H-imipramine has been compared in 17 different regions of 12 human control brains. Our findings reveal that the regional distribution is similar for both radioligands and their bindings tend to be parallel in the brain. The highest binding site density was found in basal ganglia (hypothalamus Bmax 780 +/- 102 fmol/mg protein for 3H-imipramine binding and Bmax 515 approximately 83 for 3H-paroxetine binding). The lowest values were found in cortical areas (cingulate cortex 191 +/- 18.5 fmol/mg for 3H-imipramine binding and 88 +/- 7.5 fmol/mg for 3H-paroxetine binding). The Kd values for 3H-paroxetine binding to neuronal membranes were similar in all brain regions (mean +/- s.d. Kd 0.07 +/- 0.007 nM) and also for 3H-imipramine binding (mean +/- s.d. Kd 1.05 +/- 0.12 nM). As these values are the same as in platelet membrane, the results obtained indicate that both binding sites are identical in neuronal and in platelet membranes. These findings suggest that both ligands are good markers of the 5HT transporter. However, the higher affinity of 3H-paroxetine confirms that this compound is a better radioligand for the 5HT uptake site.

Adult↗

High affinity [3H]imipramine and [3H]paroxetine binding sites in suicide brains.

Specific binding of [3H]imipramine and [3H]paroxetine was simultaneously examined in human brains (frontal cortex, temporal cortex, cingulate cortex, hypothalamus, hippocampus and amygdala) from 11 controls and 11 depressed suicide victims. A single saturable high affinity site was obtained for both radioligands. Age was not related to significant changes in [3H]imipramine and [3H]paroxetine binding parameters, which indicates the stability of the brain serotonergic system with increasing age. A major finding of the present study concerns the existence of a significant decrease in the maximum number (Bmax) of [3H]imipramine binding sites in hippocampus from depressed suicides as compared with the control group, without changes in the binding affinity (Kd). In contrast, when [3H]paroxetine was used as radioligand, no changes in either Bmax or Kd were detected in any of the brain regions studied. These findings suggest that [3H]imipramine may be a better marker than [3H]paroxetine when alterations in the presynaptic serotonergic uptake site are to be detected.

Adolescent↗

Platelet [3H]imipramine and [3H]paroxetine binding in depressed patients.

[3H]Paroxetine and [3H]imipramine binding to blood platelet membranes was simultaneously measured in 63 control subjects and 18 patients with DSM-III-R criteria for major depression with melancholia. Both binding sites showed significantly different (p < 0.001) maximum binding (Bmax) and equilibrium dissociation constant (Kd) values. Age was not correlated with either [3H]imipramine Bmax or Kd values, but a negative correlation was found between [3H]paroxetine Bmax and age in healthy controls. Furthermore, depressed patients showed significantly lower [3H]imipramine Bmax values (p < 0.001) and higher Kd values (p < 0.001) in comparison to the control group. No differences were observed in [3H]paroxetine Bmax and Kd values between the two groups.

Adult↗

Brain monoaminergic and neuropeptidergic variations in human aging.

The effect of age on the monoamines 5-hydroxytryptamine (5-HT), noradrenaline (NA) and dopamine (DA), their metabolites 5-hydroxyindoleacetic acid (5-HIAA), homovanillic acid (HVA), 3,4-dihydroxphenylacetic acid (DOPAC), and the 5-HT precursor 5-hydroxy-L-tryptophan (5-HTP), together with the peptides neuropeptide Y (NPY), somatostatin (SOM), and corticotropin-releasing factor (CRF), was studied in frontal cortex, gyrus cinguli and hypothalamus from 23 healthy control subjects, aged 16-75 years. After correcting for postmortem interval, significant decreases in gyrus cinguli NA, NPY and CRF, and hypothalamic DA, HVA, and 5-HIAA concentrations were obtained with advancing age. The involvement of the monoaminergic system in several functional abnormalities appearing in senescence is suggested. Furthermore, evidence is given of the participation of the peptidergic systems in the aging process.

Adolescent↗

Brain 5-HT1A, 5-HT1D, and 5-HT2 receptors in suicide victims.

We report on 5-HT1A, 5-HT1D, and 5-HT2 binding sites in 23 control subjects and 18 suicide victims subdivided according to the method of death and the previous existence of depressive symptoms. No difference in maximum binding (Bmax) or binding affinity (Kd) was found between the control and overall suicide groups for the binding sites studied. The drug overdose subgroup showed, however, a significant decrease in the 5-HT1A binding affinity, probably explained by the higher sensitivity of this binding site to the acute administration of tricyclic antidepressants. A significant decrease in 5-HT1D binding affinity was also found in the depressed suicides, together with a significant decrease in the number of 5-HT1D binding sites in the nondepressed suicides. Further studies should be carried out on the 5-HT1D binding site as it might represent a new tool in the understanding of the depressive illness.

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

[3H]paroxetine and [3H]citalopram as markers of the human brain 5-HT uptake site: a comparison study.

The binding of [3H]paroxetine and [3H]citalopram to the human brain serotonin (5-HT) uptake site has been characterized and compared. Our results reveal that the binding exclusively involved with the 5-HT uptake site is identical for both [3H]ligands. The selective 5-HT uptake inhibitor citalopram displays the highest affinity for this uptake site, as compared with the affinities obtained for desipramine and norzimeldine, which is in accordance with their respective blockage of 5-HT uptake. Similar Bmax values were obtained for both radioligands in the brain regions studied, indicating their binding to the same presynaptic membrane protein. Together these findings suggest that both [3H]paroxetine and [3H]citalopram are good markers of the 5-HT transporter as both bind selectively and with high affinity to the serotonin uptake sites. However, the higher affinity of [3H]paroxetine confirms that this compound is the best radioligand for the 5-HT uptake site available today.

Adult↗