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Neuroinflammation in bipolar disorder - A [(11)C]-(R)-PK11195 positron emission tomography study
Bartholomeus C M Benno Haarman1, Rixt F Riemersma-Van der Lek1, Jan Cees de Groot2
1University of Groningen, University Medical Center Groningen, Department of Psychiatry, Groningen, The Netherlands.
Background:
The "monocyte-T-cell theory of mood disorders" regards neuroinflammation, i.e. marked activation of microglia, as a driving force in bipolar disorder. Microglia activation can be visualized in vivo using [(11)C]-(R)-PK11195 PET. Indirect evidence suggests the hippocampus as a potential focus of neuroinflammation in bipolar disorder. We aim to determine if there is increased [(11)C]-(R)-PK11195 binding to activated microglia in the hippocampus of patients with bipolar I disorder when compared to healthy controls.
Material And Methods:
Fourteen patients with bipolar I disorder and eleven healthy controls were included in the analyses. Dynamic 60-min PET scans were acquired after the injection of [(11)C]-(R)-PK11195. All subjects underwent psychiatric interviews as well as an MRI scan, which was used for anatomic co-registration in the data analysis. The data from the PET scans was analyzed with a two-tissue-compartment model to calculate the binding potential, using the metabolite-corrected plasma and blood curve as input.
Results:
A significantly increased [(11)C]-(R)-PK11195 binding potential, which is indicative of neuroinflammation, was found in the right hippocampus of the patients when compared to the healthy controls (1.66 (CI 1.45-1.91) versus 1.33 (CI 1.16-1.53); p=0.033, respectively). Although the same trend was observed in the left hippocampus, this difference was not statistically significant.
Conclusion:
This study is the first to demonstrate the presence of focal neuroinflammation in the right hippocampus in bipolar I disorder.
Insights
Neuroinflammation, indicated by increased [(11)C]-(R)-PK11195 binding, was observed in the right hippocampus of bipolar I disorder patients. This study provides the first evidence of focal neuroinflammation in this brain region for bipolar I disorder.
Area of Science:
- Neuroscience
- Psychiatry
- Medical Imaging
Background:
- Neuroinflammation, specifically microglial activation, is implicated in bipolar disorder pathogenesis.
- Microglial activation can be visualized using [(11)C]-(R)-PK11195 Positron Emission Tomography (PET).
- The hippocampus is a suspected region of neuroinflammation in bipolar disorder.
Purpose of the Study:
- To investigate increased [(11)C]-(R)-PK11195 binding in the hippocampus of bipolar I disorder patients compared to healthy controls.
- To assess for focal neuroinflammation in the hippocampus using in vivo PET imaging.
Main Methods:
- Fourteen bipolar I disorder patients and eleven healthy controls underwent dynamic 60-min [(11)C]-(R)-PK11195 PET scans.
- Psychiatric interviews and MRI scans were performed for all participants.
- PET data was analyzed using a two-tissue-compartment model to determine binding potential.
Main Results:
- Significantly higher [(11)C]-(R)-PK11195 binding potential, indicating neuroinflammation, was found in the right hippocampus of bipolar I disorder patients (p=0.033).
- A similar trend was observed in the left hippocampus, but the difference was not statistically significant.
Conclusions:
- This study provides the first direct evidence of focal neuroinflammation in the right hippocampus in bipolar I disorder.
- These findings support the role of neuroinflammation in the pathophysiology of bipolar disorder.
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