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Updated: Oct 21, 2025

A High-performance Liquid Chromatography Measurement of Kynurenine and Kynurenic Acid: Relating Biochemistry to Cognition and Sleep in Rats
Published on: August 19, 2018
Kynurenines increase MRS metabolites in basal ganglia and decrease resting-state connectivity in frontostriatal
Xiangchuan Chen1,2, Diana J Beltran1,2, Valeriya D Tsygankova1,2
1Emory Behavioral Immunology Program, Atlanta, GA, USA.
Inflammation impacts brain chemistry via the kynurenine pathway (KP), leading to anhedonia in depression. KP metabolites alter basal ganglia function, affecting mood and behavior.
Area of Science:
- Neuroscience
- Psychiatry
- Biochemistry
Background:
- Inflammation is linked to anhedonia in major depression (MD).
- The precise brain mechanisms connecting inflammation to anhedonia remain unclear.
- The kynurenine pathway (KP) is activated by inflammation and influences brain chemistry.
Purpose of the Study:
- To investigate how plasma and cerebrospinal fluid (CSF) KP metabolites affect brain chemistry and neural function in depressed individuals.
- To explore the relationship between KP metabolites, brain imaging markers, and anhedonia severity.
Main Methods:
- Utilized multimodal neuroimaging in 49 depressed subjects.
- Measured KP metabolites in plasma and CSF.
- Assessed brain chemistry (glutamate, myo-inositol) using magnetic resonance spectroscopy (MRS) in the basal ganglia.
- Analyzed resting-state functional MRI for regional homogeneity (ReHo) and functional connectivity.
- Quantified anhedonia using the Inventory for Depressive Symptoms-Self Report Version (IDS-SR).
Main Results:
- Elevated plasma KYN/TRP ratio and CSF 3HK correlated with increased basal ganglia myo-inositol.
- Plasma KYNA and KYNA/QA were linked to decreased basal ganglia glutamate, while QA was linked to increased glutamate.
- Plasma and CSF KP metabolites were associated with reduced ReHo in basal ganglia and DMPFC, and impaired functional connectivity between these regions.
- DMPFC-basal ganglia connectivity mediated the impact of KP on anhedonia.
Conclusions:
- Dysregulation of the kynurenine pathway significantly impacts brain chemistry and neural function in depression.
- KP metabolites contribute to inflammatory behaviors like anhedonia by altering basal ganglia and DMPFC function.
- These findings elucidate a key pathway linking inflammation to anhedonia in major depression.
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