Associated organisationsKing's College London · McPin Foundation · The Francis Crick InstituteEurope PMC affiliations are not treated as award recipients or mapped locations.
Funding£5.4M
PeriodSept 2023 — Aug 2031
In plain English
AI plain-English summary
Antipsychotic drugs calm psychosis but also cause severe side effects, and researchers want to know whether the drugs' therapeutic power comes from calming the immune system. The problem is that doctors cannot separate the benefits of antipsychotics from their harms because the underlying mechanisms remain unknown. Emerging evidence suggests that some cases of psychosis involve immune attacks on the brain, and that antipsychotics may work partly by reversing that immune dysregulation. This project aims to pin down exactly which immune processes change during treatment, and whether those changes cause the symptom relief. The researchers will analyse blood and cerebrospinal fluid from people with psychosis, using high-throughput immune profiling, and then test causal links in mice that show psychosis-like behaviour. If they succeed, the work could lead to targeted immune-based treatments for early psychosis that avoid the severe side effects of current drugs. This is fundamental science with a clear translational goal: understanding the immune mechanisms of antipsychotic response could eventually reshape how early psychosis is treated, moving from broad-acting drugs to precise immunological interventions.
View original technical description
The first-line treatment for early psychosis is antipsychotic drugs. Antipsychotic drugs efficaciously reduce psychotic symptoms but have severe side effects. To advance interventions for early psychosis, it is crucial to understand the specific mechanisms mediating the therapeutic effects of antipsychotics so that they may be segregated from the mechanisms mediating adverse effects. Emerging evidence suggests that psychosis can be caused by immune responses targeting the brain, and that antipsychotic drugs favourably modulate this immune dysregulation. Here, we aim to elucidate whether and how immune processes contribute to antipsychotic treatment response. Drawing on our combined expertise in neuroscience, immunology, and psychiatry, we shall integrate investigations of blood and cerebrospinal fluid from individuals affected by psychosis with mechanistic investigations in mouse models. We shall use unbiased, high-throughput, high-resolution immunophenotyping alongside targeted immunological assays to delineate the immune processes most affected by antipsychotic treatment. Exploiting our mouse model for psychosis-like behaviour, we shall use causal interventions to validate these immune mechanisms underlying observed antipsychotic effects. Appropriate data-sharing pipelines will ensure that our findings provide a resource for future research. By systematically interrogating the immune system during antipsychotic treatment, we expect to gain mechanistic insights to guide future targeted immune-based interventions for early psychosis.
Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.
Is something wrong? Let us know