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      Lipid Hydroperoxide-Derived Modification of Biomolecules [electronic resource] / edited by Yoji Kato.

      Contributor(s): Material type: TextTextSeries: Subcellular Biochemistry ; 77Publisher: Dordrecht : Springer Netherlands : Imprint: Springer, 2014Description: VIII, 202 p. 78 illus., 27 illus. in color. online resourceContent type:
      • text
      Media type:
      • computer
      Carrier type:
      • online resource
      ISBN:
      • 9789400779204
      Subject(s): Additional physical formats: Printed edition:: No titleDDC classification:
      • 614.5999 23
      LOC classification:
      • RC261-271
      Online resources:
      Contents:
      Preface. I Lipid peroxidation and small molecule adducts -- Lipid hydroperoxides as a source of singlet molecular oxygen -- The formation of lipid hydroperoxide-derived amide-type lysine adducts on proteins: a review of current knowledge -- Lipid hydroperoxide-derived adduction to amino-phospholipid in biomembrane -- Amide-type adduct of dopamine - Plausible cause of Parkinson diseases -- Determination of HEL (hexanoyl-lysine adduct): a novel biomarker for omega-6 PUFA oxidation -- Hexanoyl-lysine as a deterioration marker for rice during storage -- Cholesterol hydroperoxides and their degradation mechanism. II Pathophysiological consequences -- Amide-adducts in atherosclerosis -- Oxidative Modification of Lipoproteins -- Immunochemical Detection of Lipid Hydroperoxide- and Aldehyde-Modified Proteins in Diseases -- Role of Lipid Peroxide in the Neurodegenerative Disorders -- Lipid Hydroperoxide-Derived Modification of Proteins in Gastrointestinal Tract. III Applications for diagnosis and development of functional food -- Low-cost and easy-to-use "on-chip ELISA" for developing health-promoting foods -- Hexanoyl-lysine as an oxidative-injured marker - application of development of functional food -- Potential role of oxidative protein modification in energy metabolism in exercise -- Suppressive effects of cacao polyphenols on the development of atherosclerosis in apolipoprotein E-deficient mice -- Index.
      In: Springer eBooksSummary: This volume focusses on oxidative modifications of lipid molecules and the successive generation of singlet oxygen. The book also covers the secondary adductions of these reactive species with proteins and aminophospholipids. During lipid peroxidation, the initial event is the formation of lipid hydroperoxide, which is followed by an oxidation event that starts a chain-reaction. The formed lipid hydroperoxide gradually decomposes into harmful aldehydes, which are the advanced end-products of lipid peroxidation. The book consists of three sections:   Part I, entitled Lipid peroxidation and small molecule adducts focusses on the biochemical events that are involved in lipid peroxidation and to the formation of small molecules like singlet molecular oxygen. This part of the book also introduces the hexanoyl-lysine adduct. Part II, entitled Pathophysiological consequences covers a range of damaging physiological consequences of lipid peroxidation, ranging from atherosclerosis to neurodegenerative disorders. Finally, Part III, entitled Applications for diagnosis and development of functional food looks into potential diagnostic uses of lipid peroxidation, the possible beneficial effects that can be achieved and new assays in food safely that have been developed.
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      e-Books e-Books SARVAJNA LIBRARY, UHS, BAGALKOT Link to resource Available Click on the URL to access eBook

      Preface. I Lipid peroxidation and small molecule adducts -- Lipid hydroperoxides as a source of singlet molecular oxygen -- The formation of lipid hydroperoxide-derived amide-type lysine adducts on proteins: a review of current knowledge -- Lipid hydroperoxide-derived adduction to amino-phospholipid in biomembrane -- Amide-type adduct of dopamine - Plausible cause of Parkinson diseases -- Determination of HEL (hexanoyl-lysine adduct): a novel biomarker for omega-6 PUFA oxidation -- Hexanoyl-lysine as a deterioration marker for rice during storage -- Cholesterol hydroperoxides and their degradation mechanism. II Pathophysiological consequences -- Amide-adducts in atherosclerosis -- Oxidative Modification of Lipoproteins -- Immunochemical Detection of Lipid Hydroperoxide- and Aldehyde-Modified Proteins in Diseases -- Role of Lipid Peroxide in the Neurodegenerative Disorders -- Lipid Hydroperoxide-Derived Modification of Proteins in Gastrointestinal Tract. III Applications for diagnosis and development of functional food -- Low-cost and easy-to-use "on-chip ELISA" for developing health-promoting foods -- Hexanoyl-lysine as an oxidative-injured marker - application of development of functional food -- Potential role of oxidative protein modification in energy metabolism in exercise -- Suppressive effects of cacao polyphenols on the development of atherosclerosis in apolipoprotein E-deficient mice -- Index.

      This volume focusses on oxidative modifications of lipid molecules and the successive generation of singlet oxygen. The book also covers the secondary adductions of these reactive species with proteins and aminophospholipids. During lipid peroxidation, the initial event is the formation of lipid hydroperoxide, which is followed by an oxidation event that starts a chain-reaction. The formed lipid hydroperoxide gradually decomposes into harmful aldehydes, which are the advanced end-products of lipid peroxidation. The book consists of three sections:   Part I, entitled Lipid peroxidation and small molecule adducts focusses on the biochemical events that are involved in lipid peroxidation and to the formation of small molecules like singlet molecular oxygen. This part of the book also introduces the hexanoyl-lysine adduct. Part II, entitled Pathophysiological consequences covers a range of damaging physiological consequences of lipid peroxidation, ranging from atherosclerosis to neurodegenerative disorders. Finally, Part III, entitled Applications for diagnosis and development of functional food looks into potential diagnostic uses of lipid peroxidation, the possible beneficial effects that can be achieved and new assays in food safely that have been developed.

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