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Dosing-time dependent testicular toxicity of everolimus in mice
Narin Ozturk1, Dilek Ozturk Civelek2, Serap Sancar3
1Department of Pharmacology, Faculty of Pharmacy, Istanbul University, Beyazit-Istanbul, Turkey.
Abstract:
The circadian timing system controls many biological functions in mammals including drug metabolism and detoxification, cell cycle events, and thus may affect pharmacokinetics, target organ toxicity and efficacy of medicines. Selective mTOR (mammalian target of rapamycin) inhibitor everolimus is an immunosuppressant and anticancer drug that is effective against several cancers. The aim of this study was to investigate dosing-time dependent testicular toxicity of subacute everolimus administration in mice. C57BL/6 J male mice were synchronized with Light-Dark (12h:12 h) cycle, with Light-onset at Zeitgeber Time (ZT)-0. Everolimus (5 mg/kg/day) was administered orally to mice at ZT1rest-span or ZT13activity-span for 4 weeks. Body weight loss, clinical signs, changes in testicular weights, testis histology, spermatogenesis and proliferative activity of germinal epithelium of seminiferous tubules were examined. Steady-state everolimus concentrations in testes were determined with validated HPLC method. Everolimus toxicity was less severe following dosing at ZT13 compared to ZT1, as shown with least body weight loss (p<0.001), least reductions in testes weights (p<0.001) and least histopathological findings. Everolimus-induced histological changes on testes included vacuolisation and atrophy of germinal epithelium, and loss of germinal cell attachment. The severity of everolimus-induced histological toxicity on testes was significantly more evident in mice treated at ZT1 than ZT13 (p<0.001). Spermatogenic cell population significantly decreased when everolimus administered at ZT1 compared to ZT13 (p<0.001). Proliferative activity of germinal epithelium was significantly decreased due to treatment at ZT1 compared to ZT13 (p<0.001). Everolimus concentrations in testes indicated a pronounced circadian variation, which was greater in mice treated at ZT1 compared to ZT13 (p<0.05). Our study revealed dosing-time dependent testicular toxicity of everolimus in mice, which was greater in severity when everolimus administered at early rest-span (daytime-ZT1) than early activity-span (nighttime-ZT13). These findings support the concept of everolimus chronotherapy for minimizing reproductive toxicity and increasing the tolerability of everolimus, as a clinical advantage.
Insights
Administering the drug everolimus during the activity span (nighttime) resulted in less severe testicular toxicity in mice compared to the rest span (daytime). This suggests chronotherapy with everolimus can minimize reproductive toxicity.
Area of Science:
- Pharmacology
- Chronobiology
- Toxicology
Background:
- The circadian timing system influences drug metabolism, pharmacokinetics, and toxicity.
- Everolimus, a selective mTOR inhibitor, is used as an immunosuppressant and anticancer drug.
- Understanding the impact of dosing time on everolimus toxicity is crucial for patient safety.
Purpose of the Study:
- To investigate the dosing-time dependent testicular toxicity of subacute everolimus administration in mice.
- To evaluate the effect of administration during the rest span (ZT1) versus the activity span (ZT13) on testicular health.
- To explore the relationship between circadian rhythms and everolimus-induced testicular toxicity.
Main Methods:
- Male C57BL/6J mice were synchronized to a 12h:12h Light-Dark cycle.
- Everolimus (5 mg/kg/day) was administered orally at ZT1 (rest-span) or ZT13 (activity-span) for 4 weeks.
- Assessment included body weight, testicular weight, histology, spermatogenesis, germinal epithelium proliferation, and drug concentration in testes.
Main Results:
- Everolimus toxicity was significantly less severe when administered at ZT13 (activity-span) compared to ZT1 (rest-span).
- ZT13 dosing showed less body weight loss, reduced testicular atrophy, and milder histopathological changes.
- Spermatogenesis and germinal epithelium proliferation were significantly less affected by ZT13 dosing.
- Circadian variation in testicular everolimus concentration was observed, being higher with ZT1 administration.
Conclusions:
- Dosing time significantly influences the testicular toxicity of everolimus in mice.
- Administering everolimus during the activity span (ZT13) minimizes reproductive toxicity compared to the rest span (ZT1).
- These findings support the potential clinical application of everolimus chronotherapy to improve drug tolerability and reduce side effects.
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