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Serum metabolomics profile identifies patients with community-acquired pneumonia infected by bacteria, fungi, and viruses. | LitMetric

AI Article Synopsis

  • The study aimed to analyze the metabolic profiles of patients with bacterial, viral, and fungal community-acquired pneumonia (CAP) to understand how these infections differ from each other and from healthy individuals.
  • Researchers used advanced technologies to screen respiratory samples and found significant metabolic differences among patients with different types of CAP, identifying specific metabolites unique to each infection type.
  • The findings suggest that serum metabolomic techniques can help early detection of the type of pathogen causing pneumonia, potentially leading to faster and more effective treatment.

Article Abstract

Purpose: Patients with bacterial, fungal, and viral community-acquired pneumonia (CAP) were studied to determine their metabolic profiles.

Methods: Loop-mediated isothermal amplification technology and nucleic acid sequence-dependent amplification combined with microfluidic chip technology were applied to screen multiple pathogens from respiratory tract samples. Eighteen patients with single bacterial infection (B-CAP), fifteen with single virus infection (V-CAP), twenty with single fungal infection (F-CAP), and twenty controls were enrolled. UHPLC-MS/MS analysis of untargeted serum samples for metabolic profiles. Multiple linear regression and Spearman's rank correlation analysis were used to determine associations between metabolites and clinical parameters. The sensitivity and specificity of the screened metabolites were also examined, along with their area under the curve.

Results: The metabolic signatures of patients with CAP infected by bacteria, viruses, and fungi were markedly different from those of controls. The abundances of 45, 56, and 79 metabolites were significantly unbalanced. Among these differential metabolites, 11, 13, and 29 were unique to the B-CAP, V-CAP, and F-CAP groups, respectively. Bacterial infections were the only known causes of disturbances in the pentose and glucuronate and aldarate and ascorbate metabolism interconversions metabolic pathway.

Conclusions: Serum metabolomic techniques based on UHPLC-MS/MS may identify differences between individuals with CAP who have been infected by various pathogens, and they can also build a metabolite signature for early detection of the origin of infection and prompt care.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11407381PMC
http://dx.doi.org/10.1080/07853890.2024.2399320DOI Listing

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