Metabolic insights into the pathophysiology of tuberculous meningitis in FFPE postmortem human brain tissue.

Metabolic insights into the pathophysiology of tuberculous meningitis in FFPE postmortem human brain tissue.

Publication date: Aug 07, 2026

Tuberculous meningitis (TBM), caused by Mycobacterium tuberculosis, is the most severe form of extrapulmonary tuberculosis and isassociated with high morbidity and mortality, particularly when diagnosis is delayed. Improved understanding of the metabolic alterations associated withTBM may support the development of novel diagnostic biomarkers and provide insights into disease pathophysiology. In this study, we applied anuntargeted two-dimensional gas chromatography-time-of-flight mass spectrometry (GCcD7GC-TOFMS) metabolomics approach to formalin-fixed, paraffin-embedded (FFPE) postmortem human brain tissue from 41 TBM cases and 36 tissue sections from 6 non-TBM control cases. Metabolomics data wereprocessed, normalized, and analyzed using multivariate and univariate statistical approaches, including principal component analysis (PCA) and partialleast squares-discriminant analysis (PLS-DA), with variable importance in projection (VIP) scores. These results were further correlated with patient clinical data. Distinct metabolic profiles were observed between TBM and control tissues. Several metabolites were significantly reduced in TBM samples, particularly within the alkane and alkene classes, with additional decreases observed in metabolites associated with alcohols, fatty acids, lipids, carbohydrates, and amino acids. These metabolic alterations suggest substantial perturbations, primarily in the host lysine degradation pathway (linked to the kynurenine pathway), in TBM-affected brain tissue. Collectively, these findings provide insight into the metabolic landscape of terminalTBM and suggest potential metabolic pathways that may contribute to disease pathophysiology. Further investigation of these metabolic signatures in accessible patient tissue and biofluids may support the development of biomarkers and inform future therapeutic strategies for TBM.

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Concepts Keywords
Fatty Adult
Flight Aged
Mycobacterium Autopsy
Pathophysiology Biomarkers
Principal Biomarkers
Brain
Brain tissue
Female
Formaldehyde
Formaldehyde
Formalin-fixed paraffin-embedded (FFPE)
Gas Chromatography-Mass Spectrometry
GC×GC-TOFMS
Granuloma
Humans
Male
Metabolic
Metabolite
Metabolome
Metabolomics
Metabolomics
Middle Aged
Mycobacterium tuberculosis (Mtb)
Paraffin Embedding
Postmortem
Principal Component Analysis
Tuberculosis, Meningeal
Tuberculous meningitis (TBM)

Semantics

Type Source Name
disease MESH tuberculous meningitis
disease MESH tuberculosis
pathway KEGG Tuberculosis
disease MESH extrapulmonary tuberculosis
drug DRUGBANK Formaldehyde
drug DRUGBANK Pidolic Acid
disease MESH PCA
disease MESH PLS
drug DRUGBANK Amino acids
pathway KEGG Lysine degradation
drug DRUGBANK Coenzyme M
pathway REACTOME Metabolism
disease MESH Infectious Diseases
disease MESH ers
pathway REACTOME Fatty acids
disease MESH Granuloma
drug DRUGBANK Gold
disease MESH dis
disease MESH infection
drug DRUGBANK Inositol
drug DRUGBANK L-Leucine
drug DRUGBANK L-Lysine
drug DRUGBANK Filgrastim
disease MESH fetal alcohol syndrome
disease MESH brain injury
disease MESH CAS
drug DRUGBANK Water
drug DRUGBANK Methoxyamine
drug DRUGBANK Phenylbutyric acid
drug DRUGBANK Ademetionine
disease MESH TOF
drug DRUGBANK Helium
drug DRUGBANK Tretamine
disease MESH SD=standard
drug DRUGBANK Salicylic acid
disease MESH infarction
drug DRUGBANK Oleic Acid
drug DRUGBANK Phenylethyl alcohol
drug DRUGBANK Ethionamide
disease MESH death
disease MESH PC1
disease MESH demyelination
disease MESH multiple sclerosis
disease MESH inflammation
disease MESH hypoxia
disease MESH ischemia
drug DRUGBANK Activated charcoal
drug DRUGBANK Arachidonic Acid
drug DRUGBANK Cholesterol
drug DRUGBANK Linoleic acid
pathway REACTOME Immune System
pathway REACTOME Eicosanoids
drug DRUGBANK Pregnenolone
disease MESH tumor
disease MESH necrosis
disease MESH Coma
disease MESH confusion
disease MESH cranial nerve palsies
disease MESH hemiparesis
disease MESH delirium
disease MESH paralysis

Original Article

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