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Published on: September 12, 2016
Peripheral lymphocyte signaling pathway deficiencies predict treatment response in first-onset drug-naïve
Santiago G Lago1, Jakub Tomasik1, Geertje F van Rees1
1Department of Chemical Engineering and Biotechnology, University of Cambridge, Cambridge, United Kingdom.
Abstract:
Despite being a major cause of disability worldwide, the pathophysiology of schizophrenia and molecular basis of treatment response heterogeneity continue to be unresolved. Recent evidence suggests that multiple aspects of pathophysiology, including genetic risk factors, converge on key cell signaling pathways and that exploration of peripheral blood cells might represent a practical window into cell signaling alterations in the disease state. We employed multiplexed phospho-specific flow cytometry to examine cell signaling epitope expression in peripheral blood mononuclear cell (PBMC) subtypes in drug-naïve schizophrenia patients (n = 49) relative to controls (n = 61) and relate these changes to serum immune response proteins, schizophrenia polygenic risk scores and clinical effects of treatment, including drug response and side effects, over the longitudinal course of antipsychotic treatment. This revealed both previously characterized (Akt1) and novel cell signaling epitopes (IRF-7 (pS477/pS479), CrkL (pY207), Stat3 (pS727), Stat3 (pY705) and Stat5 (pY694)) across PBMC subtypes which were associated with schizophrenia at disease onset, and correlated with type I interferon-related serum molecules CD40 and CXCL11. Alterations in Akt1 and IRF-7 (pS477/pS479) were additionally associated with polygenic risk of schizophrenia. Finally, changes in Akt1, IRF-7 (pS477/pS479) and Stat3 (pS727) predicted development of metabolic and cardiovascular side effects following antipsychotic treatment, while IRF-7 (pS477/pS479) and Stat3 (pS727) predicted early improvements in general psychopathology scores measured using the Brief Psychiatric Rating Scale (BPRS). These findings suggest that peripheral blood cells can provide an accessible surrogate model for intracellular signaling alterations in schizophrenia and have the potential to stratify subgroups of patients with different clinical outcomes or a greater risk of developing metabolic and cardiovascular side effects following antipsychotic therapy.
Insights
Schizophrenia research reveals peripheral blood cell signaling alterations linked to disease risk and treatment outcomes. These findings may help predict side effects and stratify patients for personalized antipsychotic therapy.
Area of Science:
- Neuroscience
- Immunology
- Genetics
Background:
- Schizophrenia pathophysiology and treatment response remain poorly understood.
- Genetic factors and cell signaling pathways are implicated in schizophrenia.
- Peripheral blood cells offer a potential window into disease-related signaling changes.
Purpose of the Study:
- To investigate cell signaling alterations in peripheral blood mononuclear cells (PBMCs) of drug-naïve schizophrenia patients.
- To correlate these signaling changes with serum immune proteins, polygenic risk scores, and antipsychotic treatment outcomes.
- To explore the potential of PBMCs as a surrogate model for schizophrenia and treatment response.
Main Methods:
- Multiplexed phospho-specific flow cytometry was used to analyze PBMC subtypes.
- Schizophrenia patients (n=49) and controls (n=61) were studied.
- Analyses included correlations with serum immune markers, polygenic risk scores, and clinical outcomes during antipsychotic treatment.
Main Results:
- Novel cell signaling epitopes (IRF-7, CrkL, Stat3, Stat5) and Akt1 were identified in PBMCs of schizophrenia patients.
- Signaling alterations correlated with type I interferon-related serum molecules (CD40, CXCL11).
- Akt1 and IRF-7 alterations were associated with schizophrenia polygenic risk.
- Specific signaling changes predicted metabolic/cardiovascular side effects and improvements in general psychopathology (BPRS scores).
Conclusions:
- Peripheral blood cells serve as an accessible model for intracellular signaling alterations in schizophrenia.
- PBMC signaling profiles may help stratify patients based on clinical outcomes and risk of side effects.
- This approach could aid in personalizing antipsychotic treatment strategies.
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