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Published on: October 27, 2020
Formyl peptide receptor as a novel therapeutic target for anxiety-related disorders
Irene Gallo1, Lorenza Rattazzi1, Giuseppa Piras1
1William Harvey Research Institute, Barts and the London School of Medicine, Queen Mary University of London, London, United Kingdom.
Abstract:
Formyl peptide receptors (FPR) belong to a family of sensors of the immune system that detect microbe-associated molecules and inform various cellular and sensorial mechanisms to the presence of pathogens in the host. Here we demonstrate that Fpr2/3-deficient mice show a distinct profile of behaviour characterised by reduced anxiety in the marble burying and light-dark box paradigms, increased exploratory behaviour in an open-field, together with superior performance on a novel object recognition test. Pharmacological blockade with a formyl peptide receptor antagonist, Boc2, in wild type mice reproduced most of the behavioural changes observed in the Fpr2/3(-/-) mice, including a significant improvement in novel object discrimination and reduced anxiety in a light/dark shuttle test. These effects were associated with reduced FPR signalling in the gut as shown by the significant reduction in the levels of p-p38. Collectively, these findings suggest that homeostatic FPR signalling exerts a modulatory effect on anxiety-like behaviours. These findings thus suggest that therapies targeting FPRs may be a novel approach to ameliorate behavioural abnormalities present in neuropsychiatric disorders at the cognitive-emotional interface.
Insights
Formyl peptide receptors (FPRs) modulate anxiety-like behaviors. Targeting FPRs may offer novel therapies for neuropsychiatric disorders affecting cognition and emotion.
Area of Science:
- Neuroscience
- Immunology
- Behavioral Science
Background:
- Formyl peptide receptors (FPRs) are immune sensors detecting pathogens.
- Their role in host behavior and neuropsychiatric disorders is not fully understood.
Purpose of the Study:
- To investigate the role of Fpr2/3 in anxiety-like behaviors and cognitive function.
- To explore the potential of targeting FPRs for therapeutic interventions.
Main Methods:
- Behavioral analysis of Fpr2/3-deficient mice in anxiety and cognition tests.
- Pharmacological blockade of FPRs in wild-type mice using Boc2.
- Measurement of FPR signaling markers (p-p38) in the gut.
Main Results:
- Fpr2/3-deficient mice exhibited reduced anxiety and enhanced exploratory and recognition memory.
- FPR blockade mimicked these behavioral changes, including improved novel object discrimination.
- Reduced gut FPR signaling correlated with observed behavioral improvements.
Conclusions:
- Homeostatic FPR signaling significantly modulates anxiety-like behaviors and cognitive function.
- Targeting FPRs presents a potential therapeutic strategy for neuropsychiatric disorders.
- FPRs represent a novel target at the cognitive-emotional interface for therapeutic intervention.
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