Completed Lungs & Breathing Infection & Immunity

Zebrafish genetic approaches to understanding the regulation of inflammatory cell apoptosis.

In plain English

AI plain-English summary

Neutrophils—the white blood cells that fight infection—can also shred lung tissue when they fail to die on cue. In diseases like COPD, asthma, and interstitial lung disease, these cells linger and cause damage because their normal suicide programme, apoptosis, is blocked. Current treatments are weak and carry side effects. This project aims to find out why neutrophil apoptosis fails, and how to restart it. The researcher suspects that neutrophils use a unique protein complex—a new type of caspase-activating platform—to trigger their own death. To test this, they will use zebrafish, whose transparent bodies allow direct observation of living neutrophils. The team will screen for genetic mutations and chemicals that alter neutrophil behaviour. If successful, the work could reveal new drug targets that force inflammatory neutrophils to die, suppressing tissue damage without the side effects of broad immunosuppression. This is fundamental science: it asks how a specific cell type controls its own lifespan. But understanding that mechanism could eventually lead to treatments for common, poorly managed lung diseases that affect millions of people.

View original technical description
In many inflammatory diseases, white blood cells called neutrophils cause damage to tissues. Examples in the lung include common conditions such as COPD, asthma and interstitial lung diseases. Current treatments are poorly effective and have many side effects. Neutrophils normally fight infection, but can also harm tissues if inappropriately activated and in health this is prevented by programmed cell death (apoptosis), which allows their removal. This process is blocked in inflammatory disease. I am looking for ways to circumvent this block and thus suppress the inflammatory response. Apoptosis is regulated by activation of a group of specialised enzymes called caspases in various types of caspase activating platform (CAP) - complexes of proteins that regulate activation of caspases. I propose apoptosis is regulated in a unique way in neutrophils, by activation of specific caspases in a new type of CAP. I will explore this idea using a model of the inflammatory response I have developed in the zebrafish. This organism allows us to observe neutrophils in living animals and to screen for genetic mutations or chemicals that modify neutrophil behaviour. In this way I aim to discover the genes that control neutrophil apoptosis and develop new drugs to treat inflammatory disease.

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Researchers

Stephen Renshaw (Principal Investigator)

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Original classification

Fellowship

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