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How Lactate Alkalinizes Your Muscles

1:34:50
 
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Arkiveret serie ("Inaktivt feed" status)

When? This feed was archived on February 29, 2024 22:05 (8M ago). Last successful fetch was on September 06, 2024 15:10 (2M ago)

Why? Inaktivt feed status. Vores servere kunne ikke hente et gyldigt podcast-feed i en længere periode.

What now? You might be able to find a more up-to-date version using the search function. This series will no longer be checked for updates. If you believe this to be in error, please check if the publisher's feed link below is valid and contact support to request the feed be restored or if you have any other concerns about this.

Manage episode 438513306 series 175667
Indhold leveret af Chris Masterjohn, PhD and Chris Masterjohn. Alt podcastindhold inklusive episoder, grafik og podcastbeskrivelser uploades og leveres direkte af Chris Masterjohn, PhD and Chris Masterjohn eller deres podcastplatformspartner. Hvis du mener, at nogen bruger dit ophavsretligt beskyttede værk uden din tilladelse, kan du følge processen beskrevet her https://da.player.fm/legal.

For a long time, most people believed that when we exercise, our muscles make lactic acid, this acidifies the muscles, and the acidity contributes to contractile failure, fatigue, and delayed-onset muscle soreness. Some people still believe this.

You may have heard the argument against it from well-known figures like Andy Galpin, or, if you’re deep into the science, you may have read the work of George Brooks.

In this lesson, we are going to cover the biochemistry of lactate production. We will see that we never make lactic acid, ever. We make lactate. Making lactate is fundamentally alkalinizing.

We will take a look at the presentation of glycolysis in the Berg and Lehninger biochemistry textbooks to see that, on the one hand, they give us everything we need to know to understand that the human body never makes lactic acid, but, on the other hand, they really do not equip us well to understand where acidity does comes from during exercise. This is because they do not consider acid-base balance important enough to completely present the proton balances of the chemical reactions.

Finally, we will cover what does cause muscular fatigue, take a look at the research on lactate supplements, and come to some conclusions about the best way to manage acidity during exercise to maximize performance.

This is part of a larger course on the biochemistry of how we derive energy from food and use it to fuel our wellness, performance, and longevity. Take the full course here:

https://chrismasterjohnphd.substack.com/p/masterclass-with-masterjohn-energy

To see the slides, watch this lesson on youtube:

https://www.youtube.com/watch?v=IrpbLllsSHQ

To obtain the written version with timestamped slides for better studying, see here:

https://chrismasterjohnphd.substack.com/p/how-lactate-alkalinizes-your-muscles

This lesson is free for one week. After that it will be reserved for Masterpass members. You can learn more about the Masterpass here:

https://chrismasterjohnphd.substack.com/about

You can subscribe to the Masterpass here:

https://chrismasterjohnphd.substack.com/subscribe

2:52 How textbooks present glycolysis

3:36 What is acidity?

4:32 The acidfying and alkalinizing phases of glycolysis

7:09 Glycolysis: A brief review

10:08 The Principles

29:33 The Reactions -- and Where the Textbooks Go Wrong

38:59 Human beings do not make lactic acid

42:13 Lactate transport is even more alkalinizing to muscle

47:44 Robert Robergs Fights an Uphill Battle in Clarifying the Sources of Acidity and the Alkalinizing Effect of Lactate

1:01:08 What causes fatigue?

1:05:15 Does CO2 contribute to acidity?

1:13:45 Where is Glycolysis Getting Backed Up?

1:23:10 Conclusiuons: What's realy going on with exercise-induced acidosis.

1:26:34 Lactate supplements

1:30:53 How to use this information in training for optimal performance.

  continue reading

722 episoder

Artwork
iconDel
 

Arkiveret serie ("Inaktivt feed" status)

When? This feed was archived on February 29, 2024 22:05 (8M ago). Last successful fetch was on September 06, 2024 15:10 (2M ago)

Why? Inaktivt feed status. Vores servere kunne ikke hente et gyldigt podcast-feed i en længere periode.

What now? You might be able to find a more up-to-date version using the search function. This series will no longer be checked for updates. If you believe this to be in error, please check if the publisher's feed link below is valid and contact support to request the feed be restored or if you have any other concerns about this.

Manage episode 438513306 series 175667
Indhold leveret af Chris Masterjohn, PhD and Chris Masterjohn. Alt podcastindhold inklusive episoder, grafik og podcastbeskrivelser uploades og leveres direkte af Chris Masterjohn, PhD and Chris Masterjohn eller deres podcastplatformspartner. Hvis du mener, at nogen bruger dit ophavsretligt beskyttede værk uden din tilladelse, kan du følge processen beskrevet her https://da.player.fm/legal.

For a long time, most people believed that when we exercise, our muscles make lactic acid, this acidifies the muscles, and the acidity contributes to contractile failure, fatigue, and delayed-onset muscle soreness. Some people still believe this.

You may have heard the argument against it from well-known figures like Andy Galpin, or, if you’re deep into the science, you may have read the work of George Brooks.

In this lesson, we are going to cover the biochemistry of lactate production. We will see that we never make lactic acid, ever. We make lactate. Making lactate is fundamentally alkalinizing.

We will take a look at the presentation of glycolysis in the Berg and Lehninger biochemistry textbooks to see that, on the one hand, they give us everything we need to know to understand that the human body never makes lactic acid, but, on the other hand, they really do not equip us well to understand where acidity does comes from during exercise. This is because they do not consider acid-base balance important enough to completely present the proton balances of the chemical reactions.

Finally, we will cover what does cause muscular fatigue, take a look at the research on lactate supplements, and come to some conclusions about the best way to manage acidity during exercise to maximize performance.

This is part of a larger course on the biochemistry of how we derive energy from food and use it to fuel our wellness, performance, and longevity. Take the full course here:

https://chrismasterjohnphd.substack.com/p/masterclass-with-masterjohn-energy

To see the slides, watch this lesson on youtube:

https://www.youtube.com/watch?v=IrpbLllsSHQ

To obtain the written version with timestamped slides for better studying, see here:

https://chrismasterjohnphd.substack.com/p/how-lactate-alkalinizes-your-muscles

This lesson is free for one week. After that it will be reserved for Masterpass members. You can learn more about the Masterpass here:

https://chrismasterjohnphd.substack.com/about

You can subscribe to the Masterpass here:

https://chrismasterjohnphd.substack.com/subscribe

2:52 How textbooks present glycolysis

3:36 What is acidity?

4:32 The acidfying and alkalinizing phases of glycolysis

7:09 Glycolysis: A brief review

10:08 The Principles

29:33 The Reactions -- and Where the Textbooks Go Wrong

38:59 Human beings do not make lactic acid

42:13 Lactate transport is even more alkalinizing to muscle

47:44 Robert Robergs Fights an Uphill Battle in Clarifying the Sources of Acidity and the Alkalinizing Effect of Lactate

1:01:08 What causes fatigue?

1:05:15 Does CO2 contribute to acidity?

1:13:45 Where is Glycolysis Getting Backed Up?

1:23:10 Conclusiuons: What's realy going on with exercise-induced acidosis.

1:26:34 Lactate supplements

1:30:53 How to use this information in training for optimal performance.

  continue reading

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