Browse MetaboAge database

398 exogenous and endogenous metabolites.
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Name Synonym Chemical formula
12-HETE C20H32O3
13-HODE + 9-HODE
15-hydroxy-eicosatrienoic acid 15-HETE C20H32O3
16a-hydroxy DHEA 3-sulfate 16alpha-hydroxy-DHEA 3-sulfate C19H28O6S
17alpha-hydroxypregnanolone glucuronide C21H32O3
2-aminoadipate α-aminoadipate, α-aminohexanedioate; 2-aminoadipate(2−); DL-2-aminoadipate; DL-2-aminohexanedioate; alpha-aminoadipate, alpha-aminohexanedioate C6H9NO4-2
2-aminoheptanoate 2-aminoheptanoic acid zwitterion C7H15NO2
2-monoolein 2-mono-C18:1;MG (0:0/18:1/0:0) C21H40O4
2-stearoylglycerophosphoethanolamine
21-hydroxypregnenolone disulfate C21H30O9S2-2
21-hydroxypregnenolone monosulfate (1)
3-(4-hydroxyphenyl)lactate 2-hydroxy-3-(4-hydroxyphenyl)propanoate; 2-hydroxy-3-(4-hydroxyphenyl)propanoate; 3-(4-hydroxyphenyl)lactate; 4-hydroxyphenyllactate; p-hydroxyphenyllactate C9H9O4
3-carboxy-4-methyl-5-propyl-2-furanpropanoate 3-Carboxy-4-methyl-5-propyl-2-furanpropionate C12H15O5-
3-chlorotyrosine chlorotyrosine; monochlorotyrosine C9H10ClNO3
3-hydroxy-3-methylglutarate 3-hydroxy-3-methylpentanedioate C6H8O5-2
3-methylglutarylcarnitine (2) O-3-methylglutarylcarnitine; 3-methylglutaroylcarnitine C13H23NO6
3-nitrotyrosine META-nitro-tyrosine C9H10N2O5
4-acetamidobutanoate N-acetyl-4-aminobutyrate; N-acetyl-γ-aminobutyrate; N-acetyl-4-aminobutanoate; N-acetyl-gamma-aminobutanoate; N4-acetylaminobutanoate C6H10NO3-
4-androsten-3beta,17beta-diol monosulfate 4-androstene-3β, 17β-diol monosulfate (1-); 4-androstene-3beta, 17beta-diol monosulfate (1-)
4-androstene-3β,17β-diol disulfate (1) 4-androstene-3beta,17beta-diol disulfate (1)

The MetaboAge Database is a freely available electronic database with the main goal to host high-quality, manually curated, and detailed information about human small molecule metabolites that are involved in the aging signature. Briefly, the metabolites included in this database are small molecules that present variation in different age stages. Also, MetaboAge provides an encyclopedic reference on human metabolic pathways of these molecules. It is intended to be used for better knowledge and understanding of the aging process and has applications in metabolomics, clinical chemistry, biomarker discovery, and general education.