People, Parasites, and Plagues

The World’s Most Successful Parasite: Inside Toxoplasma’s Weird Biology

39 min · 13. apr. 2026
episode The World’s Most Successful Parasite: Inside Toxoplasma’s Weird Biology cover

Description

In this episode, we sit down with Dr. Diego Huet, an associate professor in the College of Pharmacy at the University of Georgia, to explore Toxoplasma gondii. It's often called the world’s most successful parasite. Infecting up to a third of the global population, Toxoplasma is both incredibly common and largely invisible. Dr. Huet breaks down how it spreads, why most people never know they have it, and how it can persist in the body for life by forming dormant cysts. We also dive into the parasite’s surprisingly complex biology, from its unusual ATP synthase (with nearly double the components found in humans) to the bigger evolutionary questions behind why it works the way it does. Along the way, we explore how scientists use Toxoplasma as a model to better understand other parasites, and how these differences could lead to more targeted treatments in the future.

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54 episodes

episode The World’s Most Successful Parasite: Inside Toxoplasma’s Weird Biology artwork

The World’s Most Successful Parasite: Inside Toxoplasma’s Weird Biology

In this episode, we sit down with Dr. Diego Huet, an associate professor in the College of Pharmacy at the University of Georgia, to explore Toxoplasma gondii. It's often called the world’s most successful parasite. Infecting up to a third of the global population, Toxoplasma is both incredibly common and largely invisible. Dr. Huet breaks down how it spreads, why most people never know they have it, and how it can persist in the body for life by forming dormant cysts. We also dive into the parasite’s surprisingly complex biology, from its unusual ATP synthase (with nearly double the components found in humans) to the bigger evolutionary questions behind why it works the way it does. Along the way, we explore how scientists use Toxoplasma as a model to better understand other parasites, and how these differences could lead to more targeted treatments in the future.

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