4.8 Article

Bioenergetics and abnormal functional connectivity in psychotic disorders

Journal

MOLECULAR PSYCHIATRY
Volume 26, Issue 6, Pages 2483-2492

Publisher

SPRINGERNATURE
DOI: 10.1038/s41380-020-00993-z

Keywords

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Funding

  1. National Institutes of Health (NIH) [R21MH114020, R01MH114982, P50MH115846, K24MH104449, R01AG066670]

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Schizophrenia and bipolar disorder patients show abnormalities in brain functional connectivity and energy metabolism, which are different from healthy controls, suggesting that impaired neural connectivity may be related to bioenergetic deficits in psychotic disorders.
Psychotic Disorders such as schizophrenia (SZ) and bipolar disorder (BD) are characterized by abnormal functional connectivity (FC) within neural networks such as the default mode network (DMN), as well as attenuated anticorrelation between DMN and task-positive networks (TPN). Bioenergetic processes are critical for synaptic connectivity and are also abnormal in psychotic disorders. We therefore examined the association between brain energy metabolism and FC in psychotic disorders. P-31 magnetization transfer spectroscopy from medial prefrontal cortex (MPFC) and whole-brain fMRI data were collected from demographically matched groups of SZ, BD, and healthy control (HC) subjects. The creatine kinase (CK) reaction flux calculated from spectroscopy was used as an index of regional energy production rate. FC maps were generated with MPFC as the seed region. Compared to HC, SZ showed significantly lower CK flux, while both BD and SZ patients showed decreased anticorrelation between MPFC and TPN. CK flux was significantly correlated with FC between MPFC and other DMN nodes in HC. This positive correlation was reduced modestly in BD and strongly in SZ. CK flux was negatively correlated with the anticorrelation between MPFC and TPN in HC, but this relationship was not observed in BD or SZ. These results indicate that MPFC energy metabolism rates are associated with stronger FC within networks and stronger anticorrelation between networks in HC. However, this association is decreased in SZ and BD, where bioenergetic and FC abnormalities are evident. This pattern may suggest that impairment in energy production in psychotic disorders underlies the impaired neural connectivity.

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