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Active oxygen in the body --- Superoxides --- Oxygène actif dans l'organisme --- Congresses.
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Oxygen. --- Oxygen --- Active oxygen --- Active oxygen in the body --- Oxygène actif dans l'organisme --- toxicity.
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Interest in the science of exercise dates back to the time of ancient Greece. Today exercise is viewed not only as a leisurely activity but also as an effective preventive and therapeutic tool in medicine. Further biomedical studies in exercise physiology and biochemistry reports that strenuous physical exercise might cause oxidative lipid damage in various tissues. The generation of reactive oxygen species is elevated to a level that overwhelms the tissue antioxidant defense systems resulting in oxidative stress. The Handbook of Oxidants and Antioxidants in Exercise examines the
Analytical biochemistry --- Pathological physiology. Pathogenesis --- Food science and technology --- Antioxidants. --- Biochemistry. --- Oxidizing agents. --- Exercise --- Physiological aspects. --- Oxidation, Physiological --- Active oxygen in the body --- Lipids --- Antioxidants --- Oxydation biologique --- Exercice --- Oxygène actif dans l'organisme --- Lipides --- Antioxydants --- Physiological aspects --- Peroxidation. --- Aspect physiologique --- Peroxydation --- ELSEVIER-B EPUB-LIV-FT --- Exercise physiology --- Clinical exercise physiology --- Oxidants --- Oxidizers --- Oxidation --- Biological chemistry --- Chemical composition of organisms --- Organisms --- Physiological chemistry --- Biology --- Chemistry --- Medical sciences --- Chemical inhibitors --- Physiological effect --- Composition --- 612:796 --- 612:796 Fysiologie van de sport --- Fysiologie van de sport
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In the past few years there has been the increased recognition that the effects of oxidative stress are not limited to the damage of cellular constituents. There is now evidence that reactive oxygen species (ROS) can alter cell function by acting upon the intermediates, or second messengers, in signal transductions. Such effects on signaling mechanisms probably account for the role of oxidative stress in inflammation, aging, and cancer. This volume brings together internationally recognized researchers in both the major areas covered by the book, oxidative stress and signal transduction. The work is organized in three sections. The first deals with the immediate cellular responses to oxidative stress and the production of second messengers. The second details the connection between second messengers and the gene. The third part looks more closely at the level of the gene.
Oxidative Stress. --- Signal Transduction. --- Second Messenger Systems. --- Gene Expression Regulation. --- Active oxygen in the body --- Stress (Physiology) --- Cellular signal transduction. --- Second messengers (Biochemistry) --- Genetic regulation. --- Oxygène actif dans l'organisme --- Stress --- Transduction du signal cellulaire --- Seconds messagers (Biochimie) --- Régulation génétique --- Oxidative stress --- Pathophysiology. --- Second messengers (Biochemistry). --- Oxygène actif dans l'organisme --- Régulation génétique --- Biochemistry. --- Pharmacology. --- Animal physiology. --- Biochemistry, general. --- Pharmacology/Toxicology. --- Animal Physiology. --- Animal physiology --- Animals --- Biology --- Anatomy --- Drug effects --- Medical pharmacology --- Medical sciences --- Chemicals --- Chemotherapy --- Drugs --- Pharmacy --- Biological chemistry --- Chemical composition of organisms --- Organisms --- Physiological chemistry --- Chemistry --- Physiology --- Physiological effect --- Composition --- Second messenger systems (Biochemistry) --- Secondary messengers (Biochemistry) --- Cellular signal transduction --- Gene expression --- Gene expression regulation --- Gene regulation --- Biosynthesis --- Cellular control mechanisms --- Molecular genetics --- Cellular information transduction --- Information transduction, Cellular --- Signal transduction, Cellular --- Bioenergetics --- Information theory in biology --- Oxidation-reduction reaction --- Regulation
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