Completed Infection & Immunity Lungs & Breathing

Modulating cytokine expression by T cells to protect the mucosa from chronic viral infections.

In plain English

AI plain-English summary

The body’s immune system can turn against itself during chronic viral infections, with certain T cells releasing a suppressive molecule called IL-10 that blocks antiviral defences instead of helping clear the virus. This matters because many dangerous viruses—including herpesviruses like cytomegalovirus—enter the body through mucosal surfaces such as the lungs, gut, or reproductive tract. Current vaccines and treatments often fail to protect these vulnerable tissues, partly because scientists do not fully understand why immune responses there become suppressed rather than activated. The researcher has already shown in mice that a related molecule, IL-22, can protect mucosal surfaces from viral infection, but how it works and how to trigger it deliberately remain unknown. If this project succeeds, it could reveal new ways to engineer T cells that resist suppression and instead produce protective molecules like IL-22 at mucosal surfaces. That would open the door to vaccines or immunotherapies that prevent chronic herpesvirus infections from establishing themselves in the body’s most vulnerable entry points—a shift from treating established infections to stopping them before they take hold.

View original technical description
Inducing effective antiviral immunity at mucosal surfaces will be critical to inhibit the transmission and persistence of numerous pathogenic viruses. Using the murine cytomegalovirus (MCMV) model, I discovered that chronic mucosal infection induces expression of the suppressive cytokine IL-10 by CD4 T cells, which subsequently antagonises antiviral immunity. Aim 1 of this proposal will elucidate factors driving the development of IL-10+ T cells during infection. Aim 2 will characterise the gene expression profile of IL-10+ T cells and test whether cell-surface molecules preferentially expressed by these suppressive cells promotes their expansion and function. The IL-10-related cytokine IL-22 protects barrier surfaces from bacteria. I have discovered that IL-22 affords protection from mucosal MCMV infection. Aim 3 will elucidate how IL-22 exerts antiviral activity in mucosal and non-mucosal tissue, and Aim 4 seeks to identify how to elicit IL-22 production by T cells and test whether t his enhances T cell mediated protection from mucosal MCMV infection. These experiments will uncover novel immune mechanisms that protect mucosal tissue from herpesvirus infections and, in combination with Aims 1 and 2, will identify approaches to improving anti-viral T cell responses in order to ensure protection of mucosal tissue from chronic viral infections.

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Researchers

Ian Humphreys (EPMC Awardee)

Related Research

Grants with similar aims, by meaning.

Systematic analysis of antiviral microRNA function
Functional proteomic analysis of innate immune subversion by human cytomegalovirus.
IMPC: Activation and effector functions of novel antiviral T cell populations in vivo
A Systematic Investigation into Human Cytomegalovirus Gene Function
Cellular immunity to herpesvirus infections: studies with Epstein-Barr virus (EBV) and human cytomegalovirus (CMV)

Original classification

Senior Research Fellowship Basic

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