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PUBMED FOR HANDHELDS

Journal Abstract Search


207 related items for PubMed ID: 16859663

  • 1. Selective plasmenylcholine oxidation by hypochlorous acid: formation of lysophosphatidylcholine chlorohydrins.
    Messner MC, Albert CJ, Hsu FF, Ford DA.
    Chem Phys Lipids; 2006 Oct; 144(1):34-44. PubMed ID: 16859663
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  • 4. HOCl-mediated glycerophosphocholine and glycerophosphoethanolamine generation from plasmalogens in phospholipid mixtures.
    Lessig J, Fuchs B.
    Lipids; 2010 Jan; 45(1):37-51. PubMed ID: 19937395
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  • 9. Unexpected products of the hypochlorous acid-induced oxidation of oleic acid: A study using high performance thin-layer chromatography-electrospray ionization mass spectrometry.
    Schröter J, Griesinger H, Reuÿ E, Schulz M, Riemer T, Süÿ R, Schiller J, Fuchs B.
    J Chromatogr A; 2016 Mar 25; 1439():89-96. PubMed ID: 26700153
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  • 11. Eosinophil peroxidase-derived reactive brominating species target the vinyl ether bond of plasmalogens generating a novel chemoattractant, alpha-bromo fatty aldehyde.
    Albert CJ, Thukkani AK, Heuertz RM, Slungaard A, Hazen SL, Ford DA.
    J Biol Chem; 2003 Mar 14; 278(11):8942-50. PubMed ID: 12643282
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  • 15. Identification of alpha-chloro fatty aldehydes and unsaturated lysophosphatidylcholine molecular species in human atherosclerotic lesions.
    Thukkani AK, McHowat J, Hsu FF, Brennan ML, Hazen SL, Ford DA.
    Circulation; 2003 Dec 23; 108(25):3128-33. PubMed ID: 14638540
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  • 19. Interaction of plasmenylcholine with free radicals in selected model systems.
    Broniec A, Żądło A, Pawlak A, Fuchs B, Kłosiński R, Thompson D, Sarna T.
    Free Radic Biol Med; 2017 May 23; 106():368-378. PubMed ID: 28232206
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  • 20. Plasmalogens in biological systems: their role in oxidative processes in biological membranes, their contribution to pathological processes and aging and plasmalogen analysis.
    Lessig J, Fuchs B.
    Curr Med Chem; 2009 May 23; 16(16):2021-41. PubMed ID: 19519379
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