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Published on: November 27, 2016
Clastogenicity of selective serotonin-reuptake inhibitors
Gokay Bozkurt1, Ercan Abay, Ibrahim Ates
1Department of Medical Biology, Trakya University Medical Faculty, 22030 Edirne, Turkey. gokayb@hotmail.com
Objective:
Selective serotonin-reuptake inhibitors (SSRIs) are used in the treatment of various forms of psychiatric disorders. Preclinical studies in laboratory animals have indicated that SSRIs were not genotoxic, but clear results from in vitro testing of SSRIs in a human cell system are currently scarce. The purpose of this study was to investigate whether SSRIs might be genotoxic. Sertraline was chosen as model SSRI, since it appears to be at least as well-tolerated as other SSRIs and may even have a more favourable side-effect profile. Unlike fluoxetine, fluvoxamine and paroxetine, sertraline has low potential for pharmacokinetic drug interactions. So, sertraline would be considered first in the treatment of psychiatric disorders requiring SSRI therapy in the future. We therefore examined peripheral lymphocytes from sertraline-treated patients for both sister chromatid exchanges (SCEs), cells with a high frequency of SCEs (HFC) and chromosome aberrations (CA) to evaluate the clastogenicity of SSRIs.
Method:
Ten sertraline-treated patients meeting 'Structured Clinical Interview for DSM-IV' criteria for both generalized anxiety disorder and major depression were compared with 18 healthy volunteers and 18 non-treated patients with similar psychopathology. Sertraline hydrochloride was administered orally at 50 mg daily for 10 months to 1 year. The participants were selected on the basis of similar responses to a questionnaire assessing risk of genotoxicity related to other aspects of life. All participants had very similar lifestyles, medical histories, biological and dietary factors. All subjects were non-smokers.
Result:
A statistically significant difference between patients with both generalized anxiety disorder and major depression (sertraline-treated or non-treated) and healthy volunteer groups was found by both SCE frequencies and HFC percentages. Both patient groups showed higher frequencies of SCEs than the healthy controls. No statistically significant difference was found between SCE frequencies or HFC percentages observed in sertraline-treated and non-treated patient groups. No statistical difference was found between groups with respect to the frequency of CA.
Conclusion:
There are no adequate studies analysing the clastogenicity of SSRIs, in particular of sertraline. The SCE frequency, the percentage HFC and the frequency of CA in patients with both generalized anxiety disorder and major depression exposed to daily doses of sertraline do not indicate a possible clastogenic hazard. The increased SCE frequencies in patients with both generalized anxiety disorder and major depression in our study-irrespective of sertraline treatment-indicate a possible genotoxic effect. However, our observations were based on a limited number of patients; the results may be explained by psychogenic stress.
Insights
Selective serotonin-reuptake inhibitors (SSRIs) like sertraline showed no genotoxic hazard in patients with anxiety and depression. Increased sister chromatid exchanges (SCEs) in patients were linked to psychogenic stress, not the medication itself.
Area of Science:
- Pharmacology
- Genetics
- Psychiatry
Background:
- Selective serotonin-reuptake inhibitors (SSRIs) are widely used for psychiatric disorders.
- Preclinical data suggest SSRIs are not genotoxic, but human in vitro data are limited.
- Sertraline is a well-tolerated SSRI with low drug interaction potential, making it a suitable model for genotoxicity studies.
Purpose of the Study:
- To investigate the potential genotoxicity of SSRIs, specifically sertraline, in a human cell system.
- To evaluate the clastogenicity of sertraline by examining sister chromatid exchanges (SCEs), high-frequency cells (HFC), and chromosome aberrations (CA) in peripheral lymphocytes.
Main Methods:
- Peripheral lymphocytes from 10 sertraline-treated patients with generalized anxiety disorder and major depression were analyzed.
- These patients were compared to 18 healthy volunteers and 18 non-treated patients with similar psychopathology.
- All participants maintained similar lifestyles, medical histories, and dietary factors; all were non-smokers.
Main Results:
- Both patient groups (sertraline-treated and non-treated) exhibited significantly higher SCE frequencies and HFC percentages compared to healthy controls.
- No significant differences in SCE frequencies or HFC percentages were observed between the sertraline-treated and non-treated patient groups.
- No statistically significant differences in the frequency of chromosome aberrations (CA) were found across all groups.
Conclusions:
- The study found no evidence of clastogenic hazard from sertraline treatment in patients with generalized anxiety disorder and major depression.
- Elevated SCE frequencies in patients, irrespective of sertraline treatment, suggest a potential genotoxic effect, possibly linked to psychogenic stress.
- Further research with a larger patient cohort is recommended due to the limited sample size and the potential influence of psychogenic stress on genotoxicity markers.
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