Small molecule bio-signature in childhood intra-thoracic tuberculosis identified by metabolomics

Nupur Sharma1, Deepti Upadhyay2, Hitender Gautam1

  • 1Department of Microbiology, All India Institute of Medical Sciences, New Delhi, India.

NMR in Biomedicine
|March 31, 2023
PubMed

Insights

Diagnosing pediatric tuberculosis (TB) is challenging. This study found distinct serum metabolic profiles in children with intra-thoracic TB (ITTB), offering potential new diagnostic markers for this serious childhood illness.

Area of Science:

  • Pediatric infectious diseases
  • Metabolomics
  • Biochemistry

Background:

  • Pediatric tuberculosis (TB) diagnosis presents significant challenges.
  • Improved diagnostic tools are crucial for timely intervention in childhood TB.

Purpose of the Study:

  • To investigate the serum metabolic profiles of children with culture-confirmed intra-thoracic TB (ITTB).
  • To identify potential metabolic biomarkers for diagnosing pediatric ITTB using metabolomics.

Main Methods:

  • Proton NMR spectroscopy-based targeted and untargeted metabolomics were employed.
  • Serum samples from children with ITTB (n=23) and non-TB controls (NTCs, n=13) were analyzed.
  • Metabolic pathway analysis was performed on identified discriminatory metabolites.

Main Results:

  • Five metabolites (histidine, glycerophosphocholine, creatine/phosphocreatine, acetate, choline) differentiated ITTB from NTCs in targeted profiling.
  • Seven metabolites (N-α-acetyl-lysine, polyunsaturated fatty acids, phenylalanine, lysine, lipids, glutamate + glutamine, dimethylglycine) were identified in untargeted profiling.
  • Classification models achieved high diagnostic performance (untargeted: 92.3% sensitivity, 100% specificity, 0.99 AUC).

Conclusions:

  • Children with ITTB exhibit detectable alterations in serum metabolites related to protein synthesis, energy metabolism, and lipid metabolism.
  • Metabolomics approaches show promise for developing novel diagnostic strategies for pediatric ITTB.
  • Further validation in larger pediatric cohorts is necessary to confirm these findings.