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Eicosatrienoic acid is a polyunsaturated fatty acid with 20 carbon atoms and three double bonds, playing an important role in human metabolism and inflammatory regulation.
Eicosatrienoic acid is a polyunsaturated fatty acid with 20 carbon atoms and three double bonds, playing an important role in human metabolism and inflammatory regulation.
Eicosatrienoic acid refers to a group of fatty acids with 20 carbon atoms and three double bonds in their molecular structure. The name derives from Greek: eikosi (twenty), tri (three), en (double bond), and oic acid denoting the carboxylic acid group. Depending on the position and configuration of the double bonds, several isomers exist, each with distinct biological properties.
The most clinically relevant forms include Mead acid (5,8,11-eicosatrienoic acid; 20:3n-9) and dihomo-gamma-linolenic acid (DGLA; 20:3n-6), as well as the omega-3 isomer 20:3n-3.
Fatty acids are classified by the number of carbon atoms, the number of double bonds, and the position of those double bonds. Eicosatrienoic acids belong to the group of polyunsaturated fatty acids (PUFAs). Key isomers include:
The different isomers of eicosatrienoic acid serve distinct physiological roles:
Mead acid is incorporated into cell membranes as a structural substitute when essential fatty acids are lacking in the diet. However, it cannot fully replicate the functional roles of essential fatty acids. An elevated ratio of Mead acid to arachidonic acid (the triene/tetraene ratio > 0.2) is a clinically accepted diagnostic marker for essential fatty acid deficiency.
DGLA is a key precursor in the biosynthesis of series-1 prostaglandins (e.g., PGE1), which exert anti-inflammatory and vasodilatory effects. Through the enzyme delta-5-desaturase, DGLA can also be converted to arachidonic acid (20:4n-6), a precursor of pro-inflammatory eicosanoids. The balance between these pathways significantly influences the degree of inflammation in the body.
Eicosatrienoic acids occur in small amounts in animal-derived foods. DGLA is found in human breast milk and certain animal fats. In human metabolism, most eicosatrienoic acids are produced through enzymatic elongation and desaturation of shorter-chain precursor fatty acids such as linoleic acid, alpha-linolenic acid, and gamma-linolenic acid.
Certain plant oils and specialty supplements -- such as evening primrose oil or borage oil as GLA sources -- can indirectly raise DGLA levels in the body.
The measurement of eicosatrienoic acids, particularly Mead acid, has diagnostic significance in clinical practice:
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