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Published on: September 6, 2024
Blazing a trail for the clinical use of rapamycin as a geroprotecTOR
Adam R Konopka1,2,3, Dudley W Lamming4,5,
1Division of Geriatrics, Department of Medicine, University of Wisconsin-Madison, Madison, WI, 53705, USA. akonopka@medicine.wisc.edu.
Abstract:
Treatment with rapamycin, an inhibitor of the mechanistic Target Of Rapamycin Complex One (mTORC1) protein kinase, has been repeatedly demonstrated to extend lifespan and prevent or delay age-related diseases in diverse model systems. Concerns over the risk of potentially serious side effects in humans, including immunosuppression and metabolic disruptions, have cautiously limited the translation of rapamycin and its analogs as a treatment for aging associated conditions. During the last decade, we and others have developed a working model that suggests that while inhibition of mTORC1 promotes healthy aging, many of the negative side effects of rapamycin are associated with "off-target" inhibition of a second mTOR complex, mTORC2. Differences in the kinetics and molecular mechanisms by which rapamycin inhibits mTORC1 and mTORC2 suggest that a therapeutic window for rapamycin could be exploited using intermittent dosing schedules or alternative rapalogs that may enable more selective inhibition of mTORC1. However, the optimal dosing schedules and the long-term efficacy of such interventions in humans are unknown. Here, we highlight ongoing or upcoming clinical trials that will address outstanding questions regarding the safety, pharmacokinetics, pharmacodynamics, and efficacy of rapamycin and rapalogs on several clinically oriented outcomes. Results from these early phase studies will help guide the design of phase 3 clinical trials to determine whether rapamycin can be used safely to inhibit mTORC1 for the treatment and prevention of age-related diseases in humans.
Insights
Rapamycin shows promise for healthy aging by inhibiting mTORC1, but side effects may stem from mTORC2 inhibition. Clinical trials are investigating intermittent dosing for safer, effective use in preventing age-related diseases.
Area of Science:
- Gerontology and Aging Research
- Molecular Biology and Pharmacology
Background:
- Rapamycin, an mTORC1 inhibitor, extends lifespan and delays age-related diseases in model systems.
- Concerns regarding rapamycin's side effects (immunosuppression, metabolic disruption) limit human translation.
- A model suggests side effects are linked to off-target mTORC2 inhibition, distinct from mTORC1 inhibition.
Purpose of the Study:
- To explore strategies for safely translating rapamycin's benefits for healthy aging in humans.
- To investigate intermittent dosing or alternative rapalogs for selective mTORC1 inhibition.
- To address safety, pharmacokinetics, pharmacodynamics, and efficacy of rapamycin for age-related conditions.
Main Methods:
- Highlighting ongoing and upcoming clinical trials.
- Focusing on early-phase studies to assess safety and efficacy.
- Evaluating clinically oriented outcomes related to aging.
Main Results:
- Ongoing trials aim to determine optimal dosing schedules and long-term human efficacy.
- Early phase studies will provide data on safety, pharmacokinetics, and pharmacodynamics.
- Results will inform the design of larger Phase 3 clinical trials.
Conclusions:
- Selective mTORC1 inhibition via rapamycin or rapalogs holds potential for treating and preventing age-related diseases.
- Intermittent dosing may offer a therapeutic window to maximize benefits while minimizing side effects.
- Clinical trials are crucial to establish the safety and efficacy of rapamycin for human aging.
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