Related Experiment Video
Updated: Feb 15, 2026

A Semi-Quantitative Drug Affinity Responsive Target Stability DARTS assay for studying Rapamycin/mTOR interaction
Published on: August 27, 2019
The immune system as a chronotoxicity target of the anticancer mTOR inhibitor everolimus
Narin Ozturk1, Dilek Ozturk2, Zeliha Pala-Kara1
1a Department of Pharmacology, Faculty of Pharmacy , Istanbul University , Beyazit-Istanbul , Turkey.
Abstract:
The circadian timing system controls many biological functions in mammals including xenobiotic metabolism, detoxification, cell proliferation, apoptosis and immune functions. Everolimus is a mammalian target of rapamycin inhibitor, whose immunosuppressant properties are both desired in transplant patients and unwanted in cancer patients, where it is indicated for its antiproliferative efficacy. Here we sought whether everolimus circadian timing would predictably modify its immunosuppressive effects so as to optimize this drug through timing. C57BL/6J mice were synchronized with light-dark 12h:12h, with L onset at Zeitgeber Time (ZT) 0. Everolimus was administered orally to male (5 mg/kg/day) and female mice (15 mg/kg/day) at ZT1, during early rest span or at ZT13, during early activity span for 4 weeks. Body weight loss, as well as hematological, immunological and biochemical toxicities, were determined. Spleen and thymus were examined histologically. Everolimus toxicity was less severe following dosing at ZT13, as compared to ZT1, as shown with least body weight inhibition in both genders; least reductions in thymus weight both in males (p < 0.01) and females (p < 0.001), least reduction in female spleen weight (p < 0.05), and less severe thymic medullar atrophy both in males (p < 0.001) and females (p < 0.001). The mean circulating counts in total leukocytes, total lymphocytes, T-helper and B lymphocytes displayed minor and non-significant changes following dosing at ZT13, while they were decreased by 56.9% (p < 0.01), 45.5% (p < 0.01), 43.1% (p < 0.05) and 48.7% (p < 0.01) after everolimus at ZT1, respectively, in only male mice. Chronotherapy of everolimus is an effective way to increase the general tolerability and decrease toxicity on the immune system.
Insights
Timing everolimus (a mTOR inhibitor) administration can reduce its toxicity. Dosing during the early activity span (ZT13) resulted in less severe side effects compared to the early rest span (ZT1), improving drug tolerability.
Area of Science:
- Chronobiology
- Pharmacology
- Immunology
Background:
- The circadian timing system regulates critical mammalian functions, including metabolism and immune responses.
- Everolimus, an mTOR inhibitor, has immunosuppressive and antiproliferative effects used in transplantation and cancer therapy.
- Optimizing everolimus efficacy and tolerability may be achievable through chronotherapy.
Purpose of the Study:
- To investigate if the timing of everolimus administration influences its immunosuppressive toxicity.
- To determine if chronotherapy can enhance the general tolerability of everolimus.
Main Methods:
- C57BL/6J mice were administered everolimus (5 mg/kg/day males, 15 mg/kg/day females) at ZT1 (early rest) or ZT13 (early activity) for 4 weeks.
- Evaluated outcomes included body weight changes, hematological, immunological, and biochemical toxicities.
- Histological examination of spleen and thymus was performed.
Main Results:
- Dosing everolimus at ZT13 led to less severe toxicity compared to ZT1, including reduced body weight loss and thymus weight reduction in both genders.
- Female mice showed a significantly smaller reduction in spleen weight when dosed at ZT13.
- Circulating leukocyte and lymphocyte counts decreased significantly in males dosed at ZT1, but showed minor changes when dosed at ZT13.
Conclusions:
- Chronotherapy, specifically administering everolimus during the early activity span (ZT13), effectively reduces its toxicity.
- Timing-based administration of everolimus can significantly improve its general tolerability and decrease adverse effects on the immune system.
Related Concept Videos
mTOR Signaling and Cancer Progression
The mTOR pathway or the...
Eukaryotic Transcription Inhibitors
Eukaryotic transcription inhibitors usually contain two distinct domains, a...
PI3K/mTOR/AKT Signaling Pathway
What is the Immune System?
Humoral Immune Responses
Dipeptidyl Peptidase 4 Inhibitors

