Don't View mTOR as a Single Pharmaceutical Target, as Context Matters

Of the many varied approaches to mimic some of the beneficial metabolic response to calorie restriction, mTOR inhibition is arguably the most well studied. Countless animal studies have been conducted, and early clinical trials for novel mTOR inhibitors have taken place. The mTOR inhibitor rapamycin is a generic, low cost drug now used by a growing number of people for its potential to slow aging. That potential remains to be proven in humans, but in mice rapamycin produces a reliable 10% to 20% increase in life span. Like calorie restriction, mTOR inhibitors appear to produce their benefits as a consequence of the increased operation or efficiency of autophagy, a collection of maintenance processes that recycle damaged proteins and structures in the cell. Near all forms of stress response converge on autophagy, which acts to improve cell function and resilience.

Today’s open access review is a short deep dive into the biochemistry of mTOR, the role of mTOR in aging, and ability of mTOR inhibitors to modestly slow aging. If there is a single point that the authors would like you to take away with you, it is that mTOR is not a straightforward target. Optimal mTOR inhibition is context and tissue dependent, and there is probably room to improve on the sort of pharmacological mTOR inhibition conducted to date via rapamycin and similar small molecule drugs. Nonetheless, there is still a compelling argument to be made that rapamcyin is a cost-effective treatment for aging, blunt as it is, and modest as the effects are. A small benefit for a trivial cost is still a win. That argument still needs to be resolved with human data, however, and movement towards that goal is painfully slow. Low cost drugs have few champions willing to underwrite the huge expense of formal human trials.

From: Don’t View mTOR as a Single Pharmaceutical Target, as Context Matters – Fight Aging!

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