Completed Infection & Immunity Cancer

Complete humanisation of adaptive cellular immunity in the mouse: Vaccine and therapeutic TCR discovery

In plain English

AI plain-English summary

Mice will be engineered to carry a complete human immune system for fighting infections and cancer. The problem is that mice and humans respond to pathogens differently because their immune systems have evolved separately. Vaccines and T cell therapies that work in mice often fail in humans. This project builds a mouse whose cellular immunity—the T cells that kill infected or cancerous cells—is entirely human, just as the team previously created mice with fully human antibodies. If successful, this platform will allow researchers to test vaccines and discover therapeutic T cell receptors directly in a human-like system, bypassing the usual translation gap. In one work stream, the team will identify T cell receptors that target acute myeloid leukaemia cells carrying a mutated nucleophosmin gene. In another, they will systematically scan the *Plasmodium falciparum* genome for vaccine candidates that protect against the liver stage of malaria. The immediate impact is on fundamental immunology and drug discovery. A reliable humanised mouse could accelerate the development of both cancer immunotherapies and malaria vaccines, reducing the number of candidates that fail in human trials.

View original technical description
Adaptive cell mediated immunity is one of the central components of immunological homeostasis. While the basic mechanisms are conserved the components that encounter antigen are subject to rapid evolutionary change driven by species specific pathogens co-evolving with the host and divergence of the host genome against which antigen receptors are negatively selected. Thus, epitopes that direct protective immunological responses differ between species. Consequently, translation of results obtained from immunisations conducted in model organisms to humans remains a pernicious issue. The long term goals of this proposal are to identify and validate vaccine candidates and discover therapeutic T cell receptors To achieve these goals we will build mice in which all components of adaptive cellular immunity have been humanised, building on the technical success, biological insights and health-care benefits accrued from the construction of a mouse with a complete human immunoglobulin repertoire. We will use this humanised mouse as platform to isolate therapeutic T cell receptors for acute myeloid leukaemia in which the nucleophosmin gene has been mutated. In an independent and parallel work stream we will systematically explore the Plasmodium falciparum genome to identify vaccine candidates protective against the liver stage of the pathogen.

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Researchers

Allan Bradley (EPMC Awardee)

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Original classification

Strategic Support: Science

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