4.7 Article

Metabolic drift in the aging nervous system is reflected in human cerebrospinal fluid

Journal

SCIENTIFIC REPORTS
Volume 11, Issue 1, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/s41598-021-97491-1

Keywords

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Funding

  1. Uppsala University
  2. Stohnes Stiftelse
  3. Magnus Bergvalls Minne
  4. Ake Wiberg stiftelse
  5. Region Uppsala (ALF-grant and RD funds)
  6. BMBF [031L0107]
  7. ELIXIR-the research infrastructure

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This study utilized LC-HRMS metabolomics to analyze CSF metabolites, identifying 69 features related to age and assigning putative annotations to 59 known metabolites. Alterations in metabolites related to the Cytochrome P450 system, brain dysfunction, and harmful microbial metabolites were observed.
Chronic diseases affecting the central nervous system (CNS) like Alzheimer's or Parkinson's disease typically develop with advanced chronological age. Yet, aging at the metabolic level has been explored only sporadically in humans using biofluids in close proximity to the CNS such as the cerebrospinal fluid (CSF). We have used an untargeted liquid chromatography high-resolution mass spectrometry (LC-HRMS) based metabolomics approach to measure the levels of metabolites in the CSF of non-neurological control subjects in the age of 20 up to 74. Using a random forest-based feature selection strategy, we extracted 69 features that were strongly related to age (p(age) < 0.001, r(age) = 0.762, R-Boruta age(2) = 0.764). Combining an in-house library of known substances with in silico chemical classification and functional semantic annotation we successfully assigned putative annotations to 59 out of the 69 CSF metabolites. We found alterations in metabolites related to the Cytochrome P450 system, perturbations in the tryptophan and kynurenine pathways, metabolites associated with cellular energy (NAD+, ADP), mitochondrial and ribosomal metabolisms, neurological dysfunction, and an increase of adverse microbial metabolites. Taken together our results point at a key role for metabolites found in CSF related to the Cytochrome P450 system as most often associated with metabolic aging.

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