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DNA damage in children treated with imipramine for primary nocturnal enuresis
Ruşen Dündaröz1, Tümer Türkbay, Ilhami Sürer
1Department of Pediatrics, School of Medicine, Gülhane Military Medical Academy, Ankara, Turkey. rusenmd@excite.com
Insights
Imipramine treatment for primary nocturnal enuresis (PNE) in children may cause DNA damage in lymphocytes. Further research is needed to confirm these findings and explore potential mutagenic effects.
Area of Science:
- Pediatric Nephrology
- Clinical Pharmacology
- Genotoxicology
Background:
- Primary nocturnal enuresis (PNE) causes significant distress despite being benign.
- Imipramine is a common treatment for PNE, but its potential mutagenicity is under-investigated in enuretic patients.
- This study addresses the lack of data on imipramine's genotoxicity in children treated for PNE.
Purpose of the Study:
- To evaluate the association between imipramine exposure and DNA damage in children with PNE.
- To investigate the potential genotoxic effects of imipramine in human lymphocytes.
Main Methods:
- A case-control study involving 35 children treated with imipramine for PNE.
- A control group of 20 healthy siblings not on long-term medication.
- The comet assay was employed to assess DNA damage in lymphocytes.
Main Results:
- Children treated with imipramine showed statistically significant higher levels of DNA damage compared to the control group (P < 0.05).
- The comet assay indicated a detectable DNA damaging effect of imipramine in human lymphocytes.
- Results suggest imipramine exposure is linked to increased DNA damage.
Conclusions:
- Imipramine treatment is a likely cause of the observed DNA damage in lymphocytes.
- Psychological stress from enuresis and parental anxiety are potential confounding factors.
- Further research with larger cohorts is necessary to confirm these preliminary findings and assess mutagenicity risks.
Background:
Despite the fact that primary nocturnal enuresis (PNE) is self-limited and pathologically benign, the emotional stress and inconvenience that it produces, warrants treatment. Imipramine is one of the widely used drugs in PNE treatment. Although some mutagenic effects were suggested in imipramine administration, this toxicity has never been investigated in enuretic patients. The aim of this study was to evaluate the association of exposure to imipramine with DNA damage.
Methods:
Thirty-five children treated with imipramine for at least 4.5 months who were in otherwise good health were accepted into the investigation. Twenty healthy sisters or brothers of the patients who did not use any long-term drugs were studied simultaneously as the control group. Comet assay was used to evaluate DNA damage.
Results:
Damaged (limited and extensive migrated) cells of the enuretic children who were taking imipramine were statically higher than that of the control group (P < 0.05) indicating a detectable DNA damaging effect of imipramine in human lymphocytes.
Conclusions:
Our finding suggests that the difference in comet scores between two groups was induced by the imipramine treatment. The other possibility to be considered is the psychological stress of the children who were concerned by the symptoms and their parent's anxiety. As our preliminary data were based on a limited number of children, further research is needed considering the importance of this possible toxic effects which may be associated with mutagenicity.
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