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Exercise and the brain | Jonathan Long

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Manage episode 366761530 series 3435707
Content provided by Wu Tsai Neurosciences Institute at Stanford University, Nicholas Weiler, Wu Tsai Neurosciences Institute at Stanford University, and Nicholas Weiler. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by Wu Tsai Neurosciences Institute at Stanford University, Nicholas Weiler, Wu Tsai Neurosciences Institute at Stanford University, and Nicholas Weiler or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://player.fm/legal.

We all know exercise has all sorts of benefits beyond just making us stronger and fitter. It lowers and inflammation. It buffers stress and anxiety. It clarifies our thinking. In fact, regular exercise is one of the few things we know with reasonable confidence can help extend our healthy lifespan.
But for all the evidence of the benefits of exercise, it's a bit surprising that we don't know more about how exercise does all these great things for our bodies and our brains.

Today's guest, Jonathan Long, recently discovered a new molecule produced when we exercise a compound called Lac-Phe. Lac-Phe appears to be linked to a number of health benefits from regulating appetite to boosting learning and memory.
Long is a chemist by training — and an institute scholar of Sarafan ChEM-H, the Institute for Chemistry Engineering and Medicine for Human Health, our sister institute here at Stanford. So I started our conversation by asking him how his background as a chemist informs how he thinks about studying exercise and human health.
NOTE: Thanks to everyone who's tuned in to our first season! We're going to take a break for the summer to get ready for next season, but we'll have more tales from the frontiers of brain science for you in the fall.

Learn More
Organism-wide, cell-type-specific secretome mapping of exercise training in mice (Cell Metabolism, 2023)

An exercise-inducible metabolite that suppresses feeding and obesity (Nature, 2022)

Mechanistic dissection and therapeutic capture of an exercise-inducible metabolite signaling pathway for brain resilience (Innovation Award from the Knight Initiative for Brain Resilience at the Wu Tsai Neurosciences Institute)
Episode Credits
This episode was produced by Michael Osborne

Send us a text!

Thanks for listening! If you're enjoying our show, please take a moment to give us a review on your podcast app of choice and share this episode with your friends. That's how we grow as a show and bring the stories of the frontiers of neuroscience to a wider audience.
Learn more about the Wu Tsai Neurosciences Institute at Stanford and follow us on Twitter, Facebook, and LinkedIn.

  continue reading

36 episodes

Artwork
iconShare
 
Manage episode 366761530 series 3435707
Content provided by Wu Tsai Neurosciences Institute at Stanford University, Nicholas Weiler, Wu Tsai Neurosciences Institute at Stanford University, and Nicholas Weiler. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by Wu Tsai Neurosciences Institute at Stanford University, Nicholas Weiler, Wu Tsai Neurosciences Institute at Stanford University, and Nicholas Weiler or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://player.fm/legal.

We all know exercise has all sorts of benefits beyond just making us stronger and fitter. It lowers and inflammation. It buffers stress and anxiety. It clarifies our thinking. In fact, regular exercise is one of the few things we know with reasonable confidence can help extend our healthy lifespan.
But for all the evidence of the benefits of exercise, it's a bit surprising that we don't know more about how exercise does all these great things for our bodies and our brains.

Today's guest, Jonathan Long, recently discovered a new molecule produced when we exercise a compound called Lac-Phe. Lac-Phe appears to be linked to a number of health benefits from regulating appetite to boosting learning and memory.
Long is a chemist by training — and an institute scholar of Sarafan ChEM-H, the Institute for Chemistry Engineering and Medicine for Human Health, our sister institute here at Stanford. So I started our conversation by asking him how his background as a chemist informs how he thinks about studying exercise and human health.
NOTE: Thanks to everyone who's tuned in to our first season! We're going to take a break for the summer to get ready for next season, but we'll have more tales from the frontiers of brain science for you in the fall.

Learn More
Organism-wide, cell-type-specific secretome mapping of exercise training in mice (Cell Metabolism, 2023)

An exercise-inducible metabolite that suppresses feeding and obesity (Nature, 2022)

Mechanistic dissection and therapeutic capture of an exercise-inducible metabolite signaling pathway for brain resilience (Innovation Award from the Knight Initiative for Brain Resilience at the Wu Tsai Neurosciences Institute)
Episode Credits
This episode was produced by Michael Osborne

Send us a text!

Thanks for listening! If you're enjoying our show, please take a moment to give us a review on your podcast app of choice and share this episode with your friends. That's how we grow as a show and bring the stories of the frontiers of neuroscience to a wider audience.
Learn more about the Wu Tsai Neurosciences Institute at Stanford and follow us on Twitter, Facebook, and LinkedIn.

  continue reading

36 episodes

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