Novel Pro-resolving Aspirin-Triggered DHA Pathway

Endogenous mechanisms in the resolution of acute inflammation are of interest since excessive inflammation underlies many pathologies. We report a new aspirin-triggered DHA metabolome that biosynthesizes a potent product in inflammatory exudates and human leukocytes, namely aspirin-triggered Neuropr...

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Veröffentlicht in:Chemistry & biology 2011-08, Vol.18 (8), p.976-987
Hauptverfasser: Serhan, Charles N., Fredman, Gabrielle, Yang, Rong, Karamnov, Sergey, Belayev, Ludmila S., Bazan, Nicolas G., Zhu, Min, Winkler, Jeremy W., Petasis, Nicos A.
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Sprache:eng
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Zusammenfassung:Endogenous mechanisms in the resolution of acute inflammation are of interest since excessive inflammation underlies many pathologies. We report a new aspirin-triggered DHA metabolome that biosynthesizes a potent product in inflammatory exudates and human leukocytes, namely aspirin-triggered Neuroprotectin D1/Protectin D1 [AT-(NPD1/PD1)]. The complete stereochemistry of AT-(NPD1/PD1) proved to be 10 R ,17 R -dihydroxydocosa- 4Z,7Z,11E,13E,15Z,19Z-hexaenoic acid. The chirality of hydroxyl groups and geometry of the conjugated triene system essential for bioactivity were established by matching biological materials with stereochemically pure isomers prepared by organic synthesis. AT-(NPD1/PD1) reduced neutrophil (PMN) recruitment in murine peritonitis in a dose-dependent fashion where neither a Δ 15 -trans-isomer nor DHA was effective. With human cells, AT-(NPD1/PD1) decreased transendothelial PMN migration as well as enhanced efferocytosis of apoptotic human PMN by macrophages. These results indicate that AT-(NPD1/PD1) is a potent antiinflammatory-pro-resolving molecule.
ISSN:1074-5521
1879-1301
DOI:10.1016/j.chembiol.2011.06.008