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المحتوى المقدم من Vasanth Sarathy & Laura Hagopian, Vasanth Sarathy, and Laura Hagopian. يتم تحميل جميع محتويات البودكاست بما في ذلك الحلقات والرسومات وأوصاف البودكاست وتقديمها مباشرة بواسطة Vasanth Sarathy & Laura Hagopian, Vasanth Sarathy, and Laura Hagopian أو شريك منصة البودكاست الخاص بهم. إذا كنت تعتقد أن شخصًا ما يستخدم عملك المحمي بحقوق الطبع والنشر دون إذنك، فيمكنك اتباع العملية الموضحة هنا https://ar.player.fm/legal.
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#23 - Designing Antivenom With Diffusion Models

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Manage episode 524892799 series 3678189
المحتوى المقدم من Vasanth Sarathy & Laura Hagopian, Vasanth Sarathy, and Laura Hagopian. يتم تحميل جميع محتويات البودكاست بما في ذلك الحلقات والرسومات وأوصاف البودكاست وتقديمها مباشرة بواسطة Vasanth Sarathy & Laura Hagopian, Vasanth Sarathy, and Laura Hagopian أو شريك منصة البودكاست الخاص بهم. إذا كنت تعتقد أن شخصًا ما يستخدم عملك المحمي بحقوق الطبع والنشر دون إذنك، فيمكنك اتباع العملية الموضحة هنا https://ar.player.fm/legal.

What if the future of antivenom didn’t come from horse serum, but from AI models that shape lifesaving proteins out of noise?

In this episode, we explore how diffusion models, powerful tools from the world of AI, are transforming the design of antivenoms, particularly for some of nature’s deadliest neurotoxins. Traditional antivenom is costly, unstable, and can provoke serious immune reactions. But for toxins like those from cobras, mambas, and sea snakes that are potent yet hard to target with immune responses, new strategies are needed.

We begin with the problem: clinicians face high-risk toxins and a shortage of effective, safe treatments. Then we dive into the breakthrough: using diffusion models like RosettaFold Diffusion to generate novel protein binders that precisely fit the structure of snake toxins. These models start with random shapes and iteratively refine them into stable, functional proteins, tailored to neutralize the threat at the molecular level.

You’ll hear how these designs were screened for strength, specificity, and stability, and how the top candidates performed in mouse studies—protecting respiration and holding promise for more scalable, less reactive therapies. Beyond venom, this approach hints at a broader shift in drug development: one where AI accelerates discovery by reasoning in shape, not just sequence.

We wrap by looking ahead at the challenges in manufacturing, regulation, and real-world validation, and why this shape-first design mindset could unlock new frontiers in precision medicine.

If you’re into biotech with real-world impact, subscribe, share, and leave a review to help more curious listeners discover the show.

Reference:

Novel Proteins to Neutralize Venom Toxins
José María Gutiérrez
New England Journal of Medicine (2025)

Credits:

Theme music: Nowhere Land, Kevin MacLeod (incompetech.com)
Licensed under Creative Commons: By Attribution 4.0
https://creativecommons.org/licenses/by/4.0/

  continue reading

فصول

1. Venom Meets Modern AI (00:00:00)

2. Hosts And Wilderness Medicine Context (00:00:19)

3. How Traditional Antivenom Is Made (00:01:31)

4. Limits: Cost, Safety, Immunogenicity (00:03:58)

5. Three-Finger Toxins And Paralysis (00:06:05)

6. Why Shape Beats Sequence (00:08:15)

7. From AlphaFold To RF Diffusion (00:10:02)

8. How Diffusion Models Design Proteins (00:12:32)

9. Constraining Shape For Binding (00:15:20)

10. Mouse Results And Stability (00:17:14)

11. Broader Promise And Next Steps (00:19:12)

12. Closing And Sign-Off (00:20:40)

23 حلقات

Artwork
iconمشاركة
 
Manage episode 524892799 series 3678189
المحتوى المقدم من Vasanth Sarathy & Laura Hagopian, Vasanth Sarathy, and Laura Hagopian. يتم تحميل جميع محتويات البودكاست بما في ذلك الحلقات والرسومات وأوصاف البودكاست وتقديمها مباشرة بواسطة Vasanth Sarathy & Laura Hagopian, Vasanth Sarathy, and Laura Hagopian أو شريك منصة البودكاست الخاص بهم. إذا كنت تعتقد أن شخصًا ما يستخدم عملك المحمي بحقوق الطبع والنشر دون إذنك، فيمكنك اتباع العملية الموضحة هنا https://ar.player.fm/legal.

What if the future of antivenom didn’t come from horse serum, but from AI models that shape lifesaving proteins out of noise?

In this episode, we explore how diffusion models, powerful tools from the world of AI, are transforming the design of antivenoms, particularly for some of nature’s deadliest neurotoxins. Traditional antivenom is costly, unstable, and can provoke serious immune reactions. But for toxins like those from cobras, mambas, and sea snakes that are potent yet hard to target with immune responses, new strategies are needed.

We begin with the problem: clinicians face high-risk toxins and a shortage of effective, safe treatments. Then we dive into the breakthrough: using diffusion models like RosettaFold Diffusion to generate novel protein binders that precisely fit the structure of snake toxins. These models start with random shapes and iteratively refine them into stable, functional proteins, tailored to neutralize the threat at the molecular level.

You’ll hear how these designs were screened for strength, specificity, and stability, and how the top candidates performed in mouse studies—protecting respiration and holding promise for more scalable, less reactive therapies. Beyond venom, this approach hints at a broader shift in drug development: one where AI accelerates discovery by reasoning in shape, not just sequence.

We wrap by looking ahead at the challenges in manufacturing, regulation, and real-world validation, and why this shape-first design mindset could unlock new frontiers in precision medicine.

If you’re into biotech with real-world impact, subscribe, share, and leave a review to help more curious listeners discover the show.

Reference:

Novel Proteins to Neutralize Venom Toxins
José María Gutiérrez
New England Journal of Medicine (2025)

Credits:

Theme music: Nowhere Land, Kevin MacLeod (incompetech.com)
Licensed under Creative Commons: By Attribution 4.0
https://creativecommons.org/licenses/by/4.0/

  continue reading

فصول

1. Venom Meets Modern AI (00:00:00)

2. Hosts And Wilderness Medicine Context (00:00:19)

3. How Traditional Antivenom Is Made (00:01:31)

4. Limits: Cost, Safety, Immunogenicity (00:03:58)

5. Three-Finger Toxins And Paralysis (00:06:05)

6. Why Shape Beats Sequence (00:08:15)

7. From AlphaFold To RF Diffusion (00:10:02)

8. How Diffusion Models Design Proteins (00:12:32)

9. Constraining Shape For Binding (00:15:20)

10. Mouse Results And Stability (00:17:14)

11. Broader Promise And Next Steps (00:19:12)

12. Closing And Sign-Off (00:20:40)

23 حلقات

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