Purinergic receptor P2X, ligand-gated ion channel, 7 (P2RX7) gene polymorphism, has been suggested to be associated with major depressive disorder (MDD). The association between P2RX7 gene polymorphism and remission after serotonin selective reuptake inhibitors (SSRI) or electroconvulsive therapy (ECT) has not previously been studied. The aims of the present study were to test for an association between P2RX7 polymorphisms Gln460Arg (rs2230912) and His155Tyr (rs208294) and MDD in two patient populations compared to controls. The first patient sample consisted of 119 subjects with treatment-resistant major depressive disorder, who were treated with ECT and the second of 99 depressive outpatients treated with SSRI. Genotype frequencies were also compared between remitters (Montgomery and Åsberg Depression Rating Scale (MADRS)<8) and non-remitters (defined as MADRS≥8) to SSRI or ECT treatment. There were no differences in allele or genotype frequencies of either rs2230912 or rs208294 between patient groups and controls. Neither rs2230912 nor rs208294 was associated with MDD or remission after SSRI or ECT. The results suggest that P2RX7 gene polymorphisms Gln460Arg (rs2230912) and His155Tyr (rs208294) are not associated with MDD or remission after SSRI or ECT.
Antidepressive medication and electroconvulsive therapy (ECT) increase hippocampal neurogenesis by promoting expression of trophic factors, including brain-derived neurotrophic factor (BDNF) and vascular endothelial growth factor (VEGF). The aims were to test for an association between the VEGF 2578 C/A polymorphism and major depressive disorder (MDD) in two patient populations compared to controls, and the association between this polymorphism and response to serotonin selective reuptake inhibitors (SSRI) and to ECT. The first patient sample consisted of 119 subjects with treatment resistant major depressive disorder who were treated with ECT and the second of 98 depressive patients treated with SSRI. Treatment response was assessed by the Montgomery and Asberg Depression Rating Scale (MADRS). Patients scoring <8 in post-treatment MADRS were considered remitters. There was a trend that CC genotype of VEGF 2578C/A polymorphism was more common in ECT-treated and SSRI-treated patients than in controls (31.1%, 25.5% and 18.7% respectively; p=0.056). The VEGF 2578 C/A polymorphism was associated with treatment resistant MDD. CC genotype was more common in ECT patients than in controls (31.1% and 18.7% respectively; p=0.015). The VEGF 2578 C/A polymorphism was not associated with treatment response to SSRI or to ECT. The finding suggests an association between VEGF 2578 C/A polymorphism and treatment resistant depression which is reported for the first time. Further studies with larger samples will be required to confirm the results.
The angiotensin I-converting enzyme gene (ACE) has been repeatedly suggested as a major gene affecting affective disorders and their treatment, but the study results have been ambiguous so far. The primary purpose of this study was to compare the effects of the ACE genotype distributions and treatment response to electroconvulsive therapy (ECT) in patients with major depressive disorder (MDD). The association in ACE genotypes and the age at onset of depression was also analyzed and these gene distributions were also compared between patients and healthy controls. The study included 119 treatment-resistant MDD patients who were referred to ECT treatment, and 392 voluntary blood donors as controls. All participants were tested for their ACE genotype, and all study patients were evaluated both before and after treatment. The Montgomery-Asberg Depression Scale (MADRS) was used as a primary efficacy evaluating method. The ACE genotype was not associated in treatment results for MDD. However, younger onset age of primary depression was associated with the I/D genotype in the whole patient group. The finding was partly gender dependent; in male patients the I allele carried a higher risk of earlier depression onset age, while in female patients the higher risk was seen only in the heterozygous I/D allele carriers. Distributions of these genotypes or alleles did not differ between patients and controls. The studied ACE genotype was not associated with ECT results but may be associated with age of onset of the illness in patients with MDD.
The association between the tryptophan hydroxylase 1 (TPH1) 218A/C polymorphism and (1) severity of major depressive disorder (MDD) and (2) response to treatment was studied. There were three study populations, the first consisting of 119 treatment-resistant MDD inpatients treated with electro-convulsive therapy (ECT), and the second of 98 MDD open care patients treated with selective serotonin reuptake inhibitors (SSRI). In addition, there was a control population of 395 healthy blood donors. The first aim of the study was to compare the genotypes of the patient with those of the healthy controls and between patient populations. The second aim was to compare the genotypes of MDD patients achieving remission with basic SSRI treatment (MADRS<8) with the genotypes of non-responders to ECT (defined as MADRS>15). TPH1 218A/C polymorphism was associated with the risk of MDD. CC genotype was significantly more common in patients (including both ECT and SSRI treated patients) than in controls (38.2% and 26.8% respectively; p=0.008), and its frequency was significantly higher in more severe forms of depression, i.e. in ECT treated patients compared with SSRI treated patients (42.0% and 33.7%, p=0.026). CC genotype was also associated with lower probability of achieving remission. It was significantly more frequent among ECT non-responders than among SSRI remitters (53.1% and 23.3%, p=0.049). In this Finnish population TPH1 218A/C polymorphism was associated with the risk of MDD and treatment response; CC genotype was associated with the increased risk of MDD and lower probability of responding treatment. Further studies with larger samples will be required to confirm the results.
The association of two tryptophan hydroxylase 2 (TPH2) polymorphisms and treatment response in electroconvulsive therapy (ECT) and the risk of depression was studied. The patient sample consisted of 119 subjects with treatment-resistant major depressive disorder who were treated with ECT. Treatment response was assessed by the Montgomery and Åsberg Depression Rating Scale (MADRS) scores. Patients who had <8 scores in post-treatment MADRS were considered remitters; scores >15 indicated non-response. The polymorphisms studied (rs1386494 and rs1843809) were not associated with treatment response to ECT. However, TPH2 rs1386494 A/A genotype carrying patients had significantly higher MADRS scores before ECT than A/G + G/G genotype carriers (p < 0.001). A/A genotype carriers also had a greater decline in MADRS scores than A/G + G/G genotype carriers during the course of ECT treatment (p = 0.03). This polymorphism may be associated with the severity of treatment-resistant depression. ECT may able to counteract a putative genetically driven worse depressive phenotype.
We studied the association between RGS4 (rs951436) polymorphism and treatment response in electroconvulsive therapy (ECT) as well as risk of treatment-resistant depression. The study sample consisted of 119 patients with major depressive disorder (MDD) and 384 healthy control subjects. RGS4 polymorphism was not associated with treatment response in ECT or risk of MDD. According to the present data, the impact of RGS4 genotype is not decisive in major depressive disorder. The results provide preliminary data on the impact of RGS4 polymorphism in treatment response in ECT.
Alterations in dopamine levels and dopamine receptors in brain are suggested to be associated with treatment response in electroconvulsive therapy (ECT). Dopamine 2 receptor gene (DRD2) polymorphism C957T (rs6277) and cathechol-o-methyltransferase (COMT) polymorphism Val158Met (rs4680) interaction was studied in 118 patients suffering from major depressive disorder (MDD) treated with ECT and 383 healthy controls. It was found that the combination of COMT Met allele and DRD2 T allele predicted more severe depression in those already affected but did not predict the risk of depression when compared to normal population. The genotype modified the response to ECT. The patients with TT genotype of D2 receptor gene C957T polymorphism combined with COMT gene polymorphism Met/Met genotype did not achieve remission as often as those with CC genotype of DRD2 C957T combined with COMT Val/Val genotype. Thus the interaction of these polymorphisms may be associated with response to ECT.
Background Schizophrenia is a common psychiatric disease affecting about 1% of population. One major problem in the treatment is finding the right the drug for the right patients. However, pharmacogenetic results in psychiatry can seldom be replicated. Methods We selected three candidate genes associated with serotonergic neurotransmission for the study: serotonin 2A ( 5-HT2A ) receptor gene, tryptophan hydroxylase 1 ( TPH1 ) gene, and G-protein beta-3 subunit ( GNB3 ) gene. We recruited 94 schizophrenia patients representing extremes in treatment response to typical neuroleptics: 43 were good responders and 51 were poor responders. The control group consisted of 392 healthy blood donors. Results We do, in part, replicate the association between 5-HT2A T102C polymorphism and response to typical neuroleptics. In female patients, C/C genotype was significantly more common in non-responders than in responders [OR = 6.04 (95% Cl 1.67–21.93), p = 0.005] or in the control population [OR = 4.16 (95% CI 1.46–11.84), p = 0.005]. TPH1 A779C C/A genotype was inversely associated with good treatment response when compared with non-responders [OR = 0.59 (95% Cl 0.36–0.98), p = 0.030] or with the controls [OR = 0.44 (95% CI 0.23–0.86, p = 0.016], and GNB3 C825T C/T genotype showed a trend-like positive association among the male patients with a good response compared with non-responders [OR = 3.48 (95% Cl 0.92–13.25), p = 0.061], and a clearer association when compared with the controls [OR = 4.95 (95% CI 1.56–15.70), p = 0.004]. Conclusion More findings on the consequences of functional polymorphisms for the role of serotonin in the development of brain and serotonergic neurotransmission are needed before more detailed hypotheses regarding susceptibility and outcome in schizophrenia can be formulated. The present results may highlight some of the biological mechanisms in different courses of schizophrenia between men and women.
The aim of the present study was to examine an association of brain-derived neurotrophic factor (BDNF) polymorphisms G196A and C270T and the response to electroconvulsive therapy (ECT) in major depressive disorder (MDD). The study group consisted of 119 patients consecutively admitted for ECT in the Department of Psychiatry, Tampere University Hospital. All patients fulfilled the diagnostic criteria of DSM-IV for MDD. ECT was administered three times a week with a brief pulse constant current device. The Montgomery and Åsberg Depression Rating Scale (MADRS) was used as an outcome measure of depression. Genotyping was performed using fluorescent allele-specific TaqMan probes. No association between either G196A or C270T and the response to ECT was found in the whole population. There were no significant differences in responses between men and women or between psychotic and non-psychotic patients. However, within subgroups such as in psychotic and in late-onset depression CC genotype of C270T may predict good response. BDNF may not be associated with response to ECT in general, but some association in subgroups may exist.
Several lines of evidence suggest that catechol-O-methyltransferase (COMT) may be associated with treatment response in depression. We conducted a study on 119 patients with treatment-refractory depression admitted consecutively for electroconvulsive therapy (ECT). The COMT high/high genotype leads to a higher enzyme activity and thus lowers dopaminergic activity in the prefrontal cortex. In the present sample, those homozygous to high-active allele of COMT responded significantly more frequently to ECT.
Catechol‐O‐methyltransferase (COMT) gene has been investigated as a possible candidate gene in schizophrenia. The most studied polymorphism has been the functional val108/158met polymorphism of this COMT gene. There is also some evidence that this polymorphism could be related to drug response to antipsychotics in schizophrenia. COMT enzyme inactivates dopamine and noradrenaline. Based mainly on the original dopamine theory of schizophrenia, our primary hypothesis was that the maintenance dose of antipsychotics would be higher in patients with the low activity COMT genotype. In this study we evaluated the current daily dosage of antipsychotics in 180 patients with schizophrenia in connection with the COMT genotype. We could not demonstrate any clearly significant effect of this particular COMT genotype in relation to the daily maintenance dosages of antipsychotics in patients with schizophrenia. Copyright © 2007 John Wiley & Sons, Ltd.
Several studies have linked 5-HT1A C1019G and BDNF G196A (Val66Met) gene polymorphisms to major depressive disorder (MDD) and the actions of antidepressants. We attempt to show that the interaction between 5-HT1A and BDNF polymorphism predicts the risk of treatment-resistant depression. The sample consists of 119 patients with treatment-resistant MDD and 392 controls. 5-HT1A C1019G and BDNF G196A (Val66Met) polymorphisms were studied. The combination of 5-HT1A GG and BDNF GA + AA genotypes is associated with an increased risk of depression.
There is evidence to suggest that dysfunction of dopaminergic neurotransmission in the central nervous system (CNS) plays a role in the etiopathology of schizophrenia. Epidermal growth factor (EGF) gene polymorphism has an impact on EGF production in mononuclear cells, and EGF seems to affect the development of midbrain dopaminergic neurons. The few studies concerning EGF gene polymorphism and schizophrenia have yielded contradictory results. Our aim was to investigate whether EGF gene A61G polymorphism predisposes to schizophrenia, and this polymorphism was therefore studied in 149 schizophrenic patients and in 94 healthy controls using 5' nucleotidase assay (TaqMan). As far as EGF A61G polymorphism was concerned, we detected no significant differences in the allele and genotype frequencies between the patients and the controls. However, the G/G genotype was significantly associated with an earlier age of onset of schizophrenic psychosis in male subjects (P=0.005) as well as in the entire population, but not in female patients (P=0.008 and 0.46, respectively). The average age (+/-SD) of onset of schizophrenia was 20.1+/-3.9 years in male EGF A61G G/G homozygotes and 23.7+/-6.6 (P=0.02) years in other genotypes. In conclusion, EGF gene polymorphism was not associated with the risk of schizophrenia. However, the EGF G/G genotype, which has been suggested to involve abundant production of EGF, was associated with early onset of schizophrenia in male patients.
The aim of this study was to investigate the relationship between the functional C957T single-nucleotide polymorphism of the dopamine D2 receptor (DRD2) gene and the risk for schizophrenia. We therefore conducted a case-control association study of 188 Finnish schizophrenia patients meeting the DSM-IV criteria and 384 healthy controls. The 5′ nuclease assay (TaqMan) was used to determine genotypes. A greater proportion of patients with schizophrenia than healthy controls were C-allele carriers (odds ratio 1.5, 95% confidence interval (CI) 1.0–2.3, P=0.05). Our results are in agreement with an earlier association study suggesting that the C957T C-allele plays a role in the genetic vulnerability for schizophrenia and support the involvement of the DRD2 gene in schizophrenia pathogenesis.
The aims of the present study were to compare the allele frequencies of a common single nucleotide polymorphism located upstream of the regulator of G-protein signaling 4 (RGS4) gene (T > G, Rs 951436) in 219 Finnish patients with schizophrenia and in 389 control subjects, to analyze corresponding frequencies between two different subtypes of 93 schizophrenia patients according to their medication response, and to study the effect of this SNP on age at onset in schizophrenia.The RGS4 (T > G, Rs 951436) genotype was not associated with incidence or age at onset in schizophrenia. Neither was the RGS4 genotype associated with medication response with two different subpopulations with schizophrenia.
We studied the association between tryptophan hydroxylase 1 (TPH1) A218C and G-protein beta-3 subunit (GNB3) C825T polymorphisms and treatment response in electroconvulsive therapy (ECT). The sample consisted of 119 patients with major depressive disorder (MDD) and 398 controls. Neither TPH1 nor GNB3 polymorphisms are associated with treatment response. However, subjects carrying TPH1 CC genotype are more likely to belong to the patient sample than to the controls. In female subjects, T-allele of GNB3 polymorphism increases the risk of being a treatment-resistant patient with MDD. Moreover, in females the combination of TPH1 CC and GNB3 CT + TT genotype is associated with an increased risk of belonging to the patient group.
The study population comprised 94Finnish patients with DSM-IV diagnosis of schizophrenia.The patients were placed into two subgroups accordingto medication response to conventional neuroleptics.The aim of the study was to examine thefrequency of tumor necrosis factor –308 (G > A) polymorphismin these patients and their 98 control subjectswho were age– and gender–matched blood donors. Associationsbetween TNFα –308 polymorphism alone andbetween the interaction of TNFα and epidermal growthfactor gene polymorphisms, and medication responseand age at onset of schizophrenia were also studied. Thefrequencies of TNFα A–allele were 11.7 % in patients and12.8% in controls. The difference was not significant(p = 0.75). TNFα –308 polymorphism was not associatedwith medication response. However, patients with EGFAA and TNFα AG/AA genotype had a lower age at onsetof schizophrenia compared with the rest of the patientsnot having this combination (20.0 years, 3.3 vs. 30.2years, 10.1 mean + SD; p < 0.001). The results supportearlier findings according to which TNFα polymorphismis not associated with the incidence of schizophrenia.On the other hand, the role of cytokines inschizophrenia may involve genetic interactions predisposingearly onset of illness.
Several studies have connected brain-derived neurotrophic factor (BDNF) with treatment response to neuroleptics. In recent studies, the BDNF expression was reduced by typical neuroleptics. We conducted a retrospective study on 94 patients with schizophrenia and 98 controls. The BDNF G196A and C270T polymorphisms are not associated with treatment response to typical neuroleptics or with age at first hospitalization. Moreover, these polymorphisms of the BDNF gene are not associated with the risk of schizophrenia.