The human gut is home to trillions of bacteria that help our bodies work properly. These microbes help us digest food, extract energy, and produce important vitamins. Because of how essential they are, scientists often think of the gut microbiome as an “extra organ” that develops after birth.
However, having so many bacteria living inside us creates a big challenge for the immune system. Normally, the immune system attacks bacteria to protect us from infection—so how does it tolerate the helpful bacteria in our gut without causing constant inflammation?
The answer lies in balance. The immune system uses different types of immune cells, some that promote inflammation and others that suppress it. My research showed that when gut bacteria break down bile acids and dietary fiber from our food, they produce substances that encourage the development of immune cells that calm the immune response. This helps the body live peacefully with its gut microbes.
Despite this progress, the gut microbiome is extremely complex, and we still don’t fully understand what other bacterial signals help regulate the immune system or how they work. To tackle this, I propose a new idea: many of the molecules that help control immune tolerance are produced by gut bacteria specifically in response to eating food.
Using this idea, I have chosen two new groups of bacterial molecules to study. I developed a strategy to identify additional immune-regulating molecules by closely analyzing how bacterial metabolism changes after food intake. I will then determine how these molecules work by identifying their targets in the body using chemical screening techniques. Finally, I will test their effects in living organisms by introducing genetically modified bacteria into mice that are raised without any microbes.
This project builds on my expertise in interactions between microbes and the immune system and makes use of advanced laboratory facilities at my institution, as well as collaborations with experts in complementary fields. Together, this approach will provide a detailed understanding of how gut bacteria help maintain immune balance and support intestinal health—from the molecules they produce to their effects on the body.