Active Cancer Heart, Stroke & Blood

Biology and Treatment of Human Myeloid Cancers

In plain English

AI plain-English summary

A single faulty stem cell can spark a chain of genetic errors that, decades later, erupts as acute myeloid leukaemia (AML), the most common aggressive adult blood cancer. This programme traces that entire journey—from the first silent mutations in blood-forming cells to the fully formed malignancy—and aims to turn the immune system against it. Blood cancers are the fifth most common cancers in the UK, and AML is notoriously difficult to treat. Current therapies often fail because they cannot distinguish between cancerous and healthy stem cells, or because the disease evolves too quickly. This research addresses a fundamental gap: we do not know which early genetic events are essential for leukaemia to develop, nor how to harness the body’s own immune defences to eliminate it once it does. If successful, the programme could produce new immune-based treatments that target AML with greater precision, reducing relapse rates and the need for toxic chemotherapy. The work is primarily fundamental science—mapping the cellular and molecular steps from pre-cancer to full disease—but such understanding has historically paved the way for targeted therapies in other cancers. A clearer picture of how AML begins and persists could eventually change how it is diagnosed and treated.

View original technical description
Blood cancers are the 5th most common cancers. This program studies the biology of the most common aggressive adult leukemia, acute myeloid leukemia and blood disorders related to it. The programme is tracing these cancers from the first events that establish the foundations for these cancers to develop late in life, to the events that lead to fully formed cancers. The programme is also to devlope new treatments that harms the power of the immune sustem to cure these cancers.

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Researchers

Paresh Vyas (Principal Investigator)

Related Research

Grants with similar aims, by meaning.

Molecular basis for clonal advantage in myeloid blood cancers
Molecular and Cellular Basis of Clonal Dominance in Myeloid Malignancy
Developing Early Intervention Strategies for High-Risk Clonal Hematopoiesis
Leukaemia Biology Group
Identification, characterisation and therapeutic targeting of leukaemic stem/propagating cells in Acute Myeloid Leukaemia

Original classification

Intramural

Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.