Fe2+ catalyzes vitamin E-induced fragmentation of hydroperoxy and hydroxy endoperoxides that generates gamma-hydroxy alkenals.
Fe2+ catalyzes vitamin E-induced fragmentation of hydroperoxy and hydroxy endoperoxides that generates gamma-hydroxy alkenals. Research Abstract Details
Fe2+ catalyzes vitamin E-induced fragmentation of hydroperoxy and hydroxy endoperoxides that generates gamma-hydroxy alkenals. Publishing Authors By Initials
Fe2+ catalyzes vitamin E-induced fragmentation of hydroperoxy and hydroxy endoperoxides that generates gamma-hydroxy alkenals. Journal Published:
PUBLICATION TYPE: Research Support, N.I.H., Extr
Journal: Journal of the American Chemical Society
VOLUME: 129
Page Numbers: 6088-9
Journal Abbreviation: J. Am. Chem. Soc.
ISSN: 0002-7863
DAY: 19
MONTH: 04
YEAR: 2007
Fe2+ catalyzes vitamin E-induced fragmentation of hydroperoxy and hydroxy endoperoxides that generates gamma-hydroxy alkenals. Information
Number of References:
LANGUAGE: eng
NlmUniqueID: 7503056
Fe2+ catalyzes vitamin E-induced fragmentation of hydroperoxy and hydroxy endoperoxides that generates gamma-hydroxy alkenals. Keywords Mesh Terms:
KEYWORDS: Vitamin E
MESH TERMS: chemistry
Chemical & Substance for Abstract: Fe2+ catalyzes vitamin E-induced fragmentation of hydroperoxy and hydroxy endoperoxides that generates gamma-hydroxy alkenals. Information
Substance Name: Hydrogen Peroxide
Registry Number: 7722-84-1
Grant and Affiliation Information for Fe2+ catalyzes vitamin E-induced fragmentation of hydroperoxy and hydroxy endoperoxides that generates gamma-hydroxy alkenals.
AFFILIATION: Department of Chemistry, Case Western Reserve University, Cleveland, Ohio, USA.
Country: United States
AGENCY: United States NHLBI
GRANT: HL53315
ACRONYM: HL
MEDLINETA: J Am Chem Soc
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