Reduced Adenosine Triphosphate-to-Phosphocreatine Ratios in Neuropsychiatric Post-COVID Condition: Evidence From 31P
Wolfgang Weber-Fahr1, Sandra Dommke1, Markus Sack1
1Department Neuroimaging, Central Institute of Mental Health, Medical Faculty Mannheim/Heidelberg University, Mannheim, Germany.
Background:
Post-COVID condition (PCCo) affects 5% to 10% of individuals following SARS-CoV-2 infection, with cognitive disturbances being a major feature. Central hypotheses regarding its pathophysiology include disturbed cell energy metabolism and oxidative stress pointing to mitochondrial dysfunction. However, brain energy metabolism remains unexplored.
Methods:
We investigated cerebral high-energy phosphate metabolism in 27 patients with PCCo and 23 fully recovered control participants using whole-brain 31P-magnetic resonance spectroscopic imaging at 3T. Adenosine triphosphate/phosphocreatine (ATP/PCr) ratios were quantified throughout the brain and analyzed with voxel-based and regional statistics including correlations with neuropsychological performance (Montreal Cognitive Assessment and Trail Making Test Part B). Statistical analysis used voxelwise comparisons with age as covariate, followed by region-of-interest analysis of cingulate cortex subdivisions.
Results:
Patients with PCCo showed a significant cluster of reduced ATP/PCr ratios centered on the cingulate cortex. Regional analysis revealed consistent reductions across the anterior cingulate cortex (ACC), midcingulate cortex (MCC), and posterior cingulate cortex. Lower ATP/PCr ratios in the ACC specifically correlated with poorer cognitive performance. Exploratory analyses revealed a trend toward higher intracellular pH in the MCC, with significant negative correlation between pH and ATP/PCr observed only in patients, suggesting disease-specific alterations in pH regulation and bioenergetic homeostasis. Subgroup analysis showed similar metabolic alterations in patients with PCCo who met criteria for myalgic encephalomyelitis/chronic fatigue syndrome.
Conclusions:
Our study provides the first in vivo evidence of impaired brain energy metabolism in PCCo, with anterior cingulate dysfunction directly linked to cognitive impairment. The observed pH-ATP/PCr relationship suggests broader disruption of cellular bioenergetic regulation. These findings support mitochondrial dysfunction as a key pathophysiological mechanism and may inform targeted therapeutic strategies.
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