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icosanoid
EntityQ407680· pop 34· linked from 922 articles

Also known as eicosanoid, icosanoids, eicosanoids

right|thumb|400px|Pathways in biosynthesis of eicosanoids from arachidonic acid: there are parallel paths from Eicosapentaenoic acid|EPA & DGLA.

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Eicosanoids
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Article

28 sections
Contents
  • Nomenclature
  • Fatty acid sources
  • Abbreviation
  • Classic eicosanoids
  • Nonclassic eicosanoids
  • Biosynthesis
  • Fatty acid mobilization
  • Peroxidation and reactive oxygen species
  • Prostanoid pathways
  • Hydroxyeicosatetraenoate (HETE) and leukotriene (LT) pathways
  • Epoxyeicosanoid pathway
  • Function, pharmacology, and clinical significance
  • Prostanoids
  • Cyclopentenone prostaglandins
  • HETEs and oxo-ETEs
  • Leukotrienes
  • Lipoxins and epi-lipoxins
  • Eoxins
  • Resolvin metabolites of eicosapentaenoic acid
  • Other metabolites of eicosapentaenoic acid
  • Epoxyeicosanoids
  • The ω−3 and ω−6 series
  • Mechanisms of ω−3 action
  • Role in inflammation
  • History
  • See also
  • References
  • External links

right|thumb|400px|Pathways in biosynthesis of eicosanoids from arachidonic acid: there are parallel paths from Eicosapentaenoic acid|EPA & DGLA.

Eicosanoids are signaling molecules made by the enzymatic or non-enzymatic oxidation of arachidonic acid or other polyunsaturated fatty acids (PUFAs) that are, similar to arachidonic acid, around 20 carbon units in length. Eicosanoids are a sub-category of oxylipins, i.e. oxidized fatty acids of diverse carbon units in length, and are distinguished from other oxylipins by their overwhelming importance as cell signaling molecules. Eicosanoids function in diverse physiological systems and pathological processes such as: mounting or inhibiting inflammation, allergy, fever and other immune responses; regulating the abortion of pregnancy and normal childbirth; contributing to the perception of pain; regulating cell growth; controlling blood pressure; and modulating the regional flow of blood to tissues. In performing these roles, eicosanoids most often act as autocrine signaling agents to impact their cells of origin or as paracrine signaling agents to impact cells in the proximity of their cells of origin. Some eicosanoids, such as prostaglandins, may also have endocrine roles as hormones to influence the function of distant cells.

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