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The Dr Louise Newson Podcast

109 - Looking after your future health with Professor Gordan Lauc

The Dr Louise Newson Podcast

Dr Louise Newson

Medicine, Health & Fitness

4.7938 Ratings

🗓️ 27 July 2021

⏱️ 35 minutes

🧾️ Download transcript

Summary

Gordan Lauc is a Professor of Biochemistry and Molecular Biology, and the Chief Scientific Officer at GlycanAge. In this episode Dr Louise Newson feeds her inner geek and enjoys a fascinating conversation with Gordan as he describes his groundbreaking research into glycan molecules and their role in aging and disease processes. Even though scientist's understanding of the biological importance of glycans is still developing, ‘glycoscience’ has now become a vital field in life and medical sciences.

Aging is the accumulation of damage in your body over time, caused by a long-term over-activation of the immune system. Analysing your body’s glycan molecules is a way of discovering your biological age and helps you know whether your current lifestyle is optimal for good health as you age. It is possible to lower your biological age by changing your diet, exercise, sleep habits and stress levels.

Professor Lauc’s top 3 tips:

  1. If you’re interested in finding out more about your biological age and future health, you can get a test from www.glycanage.com that uses a pinprick of your blood and analyses your glycans. You can receive a report that will advise you on healthier changes you might need to make to your habits and lifestyle.
  2. Don’t be afraid of finding out more about your future health, it can be a very useful warning signal and potential negative changes to disease processes can be halted and reversed.
  3. Nourish your health and take care of it. We were not made to live into our 80s or 90s, so invest in your health and do something about it. Do something today for the good of your health tomorrow.

 

GlycanAge is giving away a 15% discount to our listeners and donating a further 15% to @themenocharity for every test purchased with the code 'NEWSONHEALTH15'.

 

You can find Gordan Lauc on social media at:

Twitter: @gordanlauc

LinkedIn: gordanlauc

 

You can also find GlycanAge on social media at:

Instagram: glycanage

Twitter: glycanage

Website: https://glycanage.com/

Transcript

Click on a timestamp to play from that location

0:00.0

Welcome to the Neuson Health Menopause podcast. I'm Dr. Louise Newson, a GP and menopause

0:15.8

specialist and I'm also the founder of the Menopause charity. In addition, I run the Newston Health

0:22.5

Menopause and Well-Being Clinic here in Stratford-upon-Avon.

0:31.2

So today I have with me Professor Gordon Loutf, who is a scientist and researcher who I've

0:37.3

been dealing with for a few months now,

0:39.5

and I'm absolutely fascinated with his research. Some of you might know that I have an immunology

0:45.1

degree as well as a medical degree, and I say there is a bit of geekiness in my brain.

0:50.0

So welcome, Gordon. It's a real privilege having you here today.

0:53.6

Thank you for meditation. It's

0:55.0

fun to work with you and talk to you. So just explain to our listeners who you are and what you do

1:01.2

and a bit about your background if that's okay. So I work in a field called glycobiology. So we study

1:08.0

glycans and glycans are kind of additions to proteins.

1:13.7

So proteins are the molecular robots which do all the work in our body, most of the work in our body.

1:19.8

Well, glycons are kind of add-ons to these proteins which make them work better, which regulate them, which control them.

1:28.1

And the majority of proteins which appeared in evolution

1:31.9

after we became multicellular are actually glycosylated.

1:37.8

And the glycans are a fascinating field,

1:40.2

which has been neglected for a couple of decades,

1:43.6

because they are structurally very complicated.

1:47.1

So contrary to proteins to DNA which are linear, it's just a sequence of letters.

1:53.2

Glycans are branched structures, very complicated.

1:56.2

So until maybe a decade ago, it was not easy to analyze them.

...

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