Plasma metabolomics in early Alzheimer's disease patients diagnosed with amyloid biomarker.

Neonatal Research Unit, Health Research Institute La Fe, Valencia, Spain. Analytical Unit Platform, Health Research Institute La Fe, Valencia, Spain. Biostatistical Unit, Health Research Institute La Fe, Valencia, Spain. Neurology Unit, University and Polytechnic Hospital La Fe, Valencia, Spain. Neonatal Research Unit, Health Research Institute La Fe, Valencia, Spain. Electronic address: ana.garcia-blanco@uv.es. Neonatal Research Unit, Health Research Institute La Fe, Valencia, Spain. Electronic address: m.consuelo.chafer@uv.es.

Journal of proteomics. 2019;:144-152
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Abstract

An untargeted metabolomics study has been carried out using plasma samples from patients with Mild Cognitive Impairment due to Alzheimer's disease patients (MCI-AD, n = 29) and healthy people (n = 29)). They have been classified following the National Institute on Aging and Alzheimer's Association (NIA-AA) recommendations and cerebrospinal fluid biomarkers. The analytical method was based on liquid chromatography coupled to high resolution mass spectrometry. The data process from the corresponding metabolic profiles retained 1158 molecular features in positive and 424 in negative ionization mode. Differences between metabolomic profiles from MCI-AD patients and healthy participants were investigated using a penalized logistic regression analysis (ElasticNet), and being able to select automatically the most informative variables (53 molecular features). From the molecular features selected for the elastic net models, 16 variables were preliminarily identified by The Human Metabolome Database (amino acids, lipids…). However, only 4 of these variables were tentatively identified by MS/MS and all ions fragmentation modes, being choline the only confirmed metabolite. Regarding their metabolic pathways, they could be involved in cholinergic system, energy metabolism, amino acids and lipids pathways. To conclude, this is a reliable approach to early AD mechanisms, and choline has been identified as a promising AD diagnosis metabolite. SIGNIFICANCE The untargeted analysis carried out in human plasma samples from early Alzheimer's disease patients and healthy individuals, and the use of sophisticated statistical tools, identified some metabolic pathways and plasma biomarkers. Preliminarily, cholinergic system, energy metabolism, and aminoacids and lipids pathways may be involved in early Alzheimer's disease development.

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