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Published on: November 11, 2016
Chrono-Pharmaceutical Approaches to Optimize Dosing Regimens Based on the Circadian Clock Machinery
1Faculty of Pharmaceutical Sciences, Kyushu University.
Abstract:
Daily rhythmic variations in biological functions affect the efficacy and/or toxicity of drugs: a large number of drugs cannot be expected to exhibit the same potency at different administration times. The "circadian clock" is an endogenous timing system that broadly regulates metabolism, physiology and behavior. In mammals, this clock governs the oscillatory expression of the majority of genes with a period length of approximately 24 h. Genetic studies have revealed that molecular components of the circadian clock regulate the expression of genes responsible for the sensitivity to drugs and their disposition. The circadian control of pharmacodynamics and pharmacokinetics enables 'chrono-pharmaceutical' applications, namely drug administration at appropriate times of day to optimize the therapeutic index (efficacy vs. toxicity). On the other hand, a variety of pathological conditions also exhibit marked day-night changes in symptom intensity. Currently, novel therapeutic approaches are facilitated by the development of chemical compound targeted to key proteins that cause circadian exacerbation of disease events. This review presents an overview of the current understanding of the role of the circadian biological clock in regulating drug efficacy and disease conditions, and also describes the importance of identifying the difference in the circadian machinery between diurnal and nocturnal animals to select the most appropriate times of day to administer drugs in humans.
Insights
The body's internal circadian clock influences drug effectiveness and toxicity. Optimizing drug timing based on this biological rhythm can improve therapeutic outcomes and manage disease symptoms.
Area of Science:
- Chronobiology
- Pharmacology
- Molecular Biology
Background:
- Biological functions exhibit daily rhythms regulated by the endogenous circadian clock.
- This internal clock influences metabolism, physiology, and behavior, with implications for drug efficacy and toxicity.
- Circadian rhythms affect gene expression, drug sensitivity, and disposition.
Purpose of the Study:
- To review the role of the circadian biological clock in drug efficacy and disease.
- To explore chronopharmaceutical applications for optimizing drug administration timing.
- To highlight the importance of interspecies differences in circadian mechanisms for human drug therapy.
Main Methods:
- Literature review of circadian biology and pharmacology.
- Analysis of genetic studies on circadian clock components and drug response.
- Examination of pathological conditions with rhythmic symptom variations.
Main Results:
- The circadian clock regulates genes involved in drug sensitivity and disposition.
- Circadian control of pharmacodynamics and pharmacokinetics enables chronopharmaceutics.
- Disease symptoms often show day-night variations, influenced by circadian mechanisms.
Conclusions:
- Timing drug administration according to the circadian clock can optimize the therapeutic index.
- Understanding circadian differences between diurnal and nocturnal animals is crucial for human drug timing.
- Targeting circadian mechanisms offers novel therapeutic strategies for diseases with rhythmic symptoms.
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