Quantification of F-ring isoprostane-like compounds (F_4-neuroprostanes) derived from docosahexaenoic acid in vivo in humans by a stable isotope dilution mass spectrometric assay
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概要
- 論文の詳細を見る
- 2004-01-05
著者
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MORROW JASON
Departments of Medicine and Pharmacology, Division of Clinical Pharmacology, Vanderbilt University,
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Porter N
Vanderbilt Univ. Tn Usa
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Porter Ned
Department Of Chemistry Vanderbilt University
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YIN Huiyong
Department of Pharmacology, Center in Molecular Toxicology, and Vanderbilt Institute of Chemical Bio
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MUSIEK Erik
Departments of Medicine and Pharmacology, Vanderbilt University
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CHA Jin
Department of Chemistry, Wayne State University
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ZACKERT William
Departments of Medicine and Pharmacology, Vanderbilt University
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TERRY Erin
Departments of Medicine and Pharmacology, Vanderbilt University
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MONTINE Thomas
Department of Pathology, University of Washington
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Yin Huiyong
Department Of Chemistry Vanderbilt University
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Cha Jin
Department Of Chemistry Vanderbilt University
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Cha Jin
Department Of Chemistry Wayne State University
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Terry Erin
Departments Of Medicine And Pharmacology Vanderbilt University
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Musiek Erik
Departments Of Medicine And Pharmacology Vanderbilt University
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Morrow Jason
Departments Of Medicine And Pharmacology Division Of Clinical Pharmacology Vanderbilt University Van
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Morrow Jason
Departments Of Medicine And Pharmacology Vanderbilt University
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Montine Thomas
Department Of Pathology University Of Washington
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Zackert William
Departments Of Medicine And Pharmacology Vanderbilt University
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MORROW Jason
Department of Pharmacology, Center in Molecular Toxicology, and Vanderbilt Institute of Chemical Biology, Vanderbilt University
関連論文
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- Separation and identification of F_2-isoprostane regioisomers and diastereomers by novel liquid chromatographic/mass spectrometric methods
- Quantification of F-ring isoprostane-like compounds (F_4-neuroprostanes) derived from docosahexaenoic acid in vivo in humans by a stable isotope dilution mass spectrometric assay
- The Enteropathy of Prostaglandin Deficiency
- PB11 NEW SYNTHETIC APPROACHES TO POLYOXYGENATED NATURAL PRODUCTS
- Suppression of murine cerebral F_2-isoprostanes and F_4-neuroprostanes from excitotoxicity and innate immune response in vivo by α- or γ-tocopherol