Bipolar disorder (or manic depression) is a lifelong, severe and complex psychiatric illness characterized by recurrent episodes of depression and mania. The aim of this study is to explore the cost-effectiveness of quetiapine compared with other alternatives for the treatment of acute manic episodes in bipolar I disorder, with a specific focus on serious side effects. Four trials investigating quetiapine monotherapy and adjunctive therapy were performed to investigate the efficacy of quetiapine in patients with bipolar I disorder. Data were derived from The Netherlands Mental Health Survey and Incidence Study and used to construct a study population for the model. To assess the cost-effectiveness of quetiapine in the management of acute mania in bipolar I disorders, a discrete event simulation model of seven monotherapy and combination treatment options was developed. A comparison of the total costs demonstrates that all of the monotherapy options and placebo are more costly than the combination therapy options. The combinations of lithium with risperidone (euro2365) and with olanzapine (euro2429) are estimated to be less costly per patient than the combination of lithium with quetiapine (euro2555). A group of 10,000 patients switching from olanzepine/lithium to quetiapine/lithium would involve extra costs of euro1,260,000, but would prevent an estimated number of 362 serious side effects. Switching from risperidone/lithium to quetiapine/lithium would cost an additional euro1,900,000 and would prevent 1580 serious side effects. In terms of serious side effects, the combination of lithium/quetiapine was superior to the combination of lithium with olanzapine or risperidone. It must be considered whether the decreased likelihood of developing a severe side effect is worth the extra costs incurred with the combination of quetiapine/lithium.
We studied the association between polymorphisms of genes coding for dopamine D(2) (DRD2), dopamine D(3) (DRD3), serotonin 2(a) (HTR2A), and serotonin 2(c) (HTR2C) receptors and Antipsychotic-Induced Parkinsonism (AIP), rigidity, bradykinesia, and rest-tremor in African-Caribbeans treated with antipsychotics. Polymorphisms of DRD2 (-141CIns/Del, TaqIA, 957C > T), DRD3 (Ser9Gly), HTR2A (-1438A > G, 102T > C, His452Tyr), and HTR2C (-759C > T, Cys23Ser) genes were determined according to standard protocols. The Unified Parkinson Disease Rating Scale was used for the measurement of AIP, rigidity, bradykinesia, and rest-tremor. Chi-squared or Fisher's exact tests were applied for the association analyses. The t-test was applied for continuous data. Ninety nine males and 27 females met the inclusion criteria (Schizophr Res 1996, 19:195). In males, but not in females, there were significant associations between -141CDel-allele carriership (DRD2) and rigidity (Fisher's Exact Test: P = 0.021) and between 23Ser-allele carriership (HTR2C) and bradykinesia (P = 0.026, chi(2) = 5.0) or AIP (P = 0.008, chi(2) = 7.1). Rest-tremor was not associated with any of the polymorphisms studied. Analyses of the age, chlorpromazine equivalents, benztropine equivalents, the number of patients using anticholinergic medication, and the utilization patterns of the antipsychotic medication did not show statistically significant differences between patients with and without AIP, rigidity, bradykinesia, rest-tremor. Conducting the analysis without gender stratification did not affect our findings considerably, except for the association between bradykinesia and 23Ser-allele which failed to reach statistical significance in the total sample (P = 0.0646, chi(2) = 3.41). Since AIPs subsymptoms (rigidity, bradykinesia, and rest-tremor) may differ pharmacogenetically, our data strongly support symptom-specific analysis of AIP. However, further research is warranted to confirm our findings.
The prevalence of the metabolic syndrome is increased in patients with schizophrenia compared with the general population. The strong interindividual differences in susceptibility to developing the metabolic syndrome suggests that the genetic makeup is a modulating factor. Part of the genetic puzzle can possibly be explained by variations in the gene coding for the adrenergic α-2a receptor (ADRA2A) because this receptor plays an important role in lipolysis. Three studies have found an association between the α-2a 1291-C/G polymorphism and antipsychotic induced weight gain, with conflicting results between whites and Asians. No studies have been published investigating the association between the 1291-C/G polymorphism and the metabolic syndrome. The primary objective of this cross-sectional study was to investigate the association between the ADRA2A 1291-C/G polymorphism and the metabolic syndrome in 470 patients using antipsychotic drugs. There was no significant association between carriership of the variant 1291-G allele and prevalence of the metabolic syndrome (odds ratio, 0.73; 95% confidence interval, 0.49-1.15). Exploratory analysis showed an association between carriership of the variant 1291-G allele and a reduced prevalence of the metabolic syndrome in patients not currently using antipsychotics (odds ratio, 0.05; 95% confidence interval, 0.003-0.97; P = 0.048). In conclusion, this study shows that the ADRA2A 1291-C/G polymorphism does not seem to be a strong predictor for long-term occurrence of the metabolic syndrome in antipsychotic using patients. Studies investigating this association using a prospective, or retrospective, design, as well as studies investigating this association in a nonpsychiatric population, are warranted.
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