Innate lymphoid cells in immunity and disease.
In plain English
AI plain-English summaryThe body’s immune system has a hidden layer of cells—innate lymphoid cells (ILCs)—that were only recently discovered and are now rewriting the textbook understanding of how the body fights infections and triggers autoimmune diseases. For decades, immunologists believed that T helper cells were the main conductors of the immune orchestra, releasing the signalling proteins called cytokines that coordinate attacks on parasites, bacteria, and viruses. But ILCs, which share many features with T cells yet lack their antigen-recognition machinery, turn out to be equally critical. They help clear parasitic worms (ILC2), fight bacterial infections (ILC1 and ILC3), and also drive inflammatory bowel disease and allergies when they go awry. The problem is that no one yet knows how these cells develop, how they relate to one another, or precisely which diseases they control. This project will map the developmental family tree of ILCs and test their roles in mouse models of infection and allergy. If successful, it could reveal new drug targets for conditions such as asthma, food allergy, and Crohn’s disease—offering alternatives to treatments that broadly suppress the immune system. This is fundamental science: the immediate payoff is a deeper understanding of how immunity works, not a therapy. But the discovery of ILCs themselves, only a decade ago, already shows how such foundational knowledge can open entirely new avenues for treating chronic inflammatory diseases.
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