Mitochondrial Physiology and Vegetal Molecules: Therapeutic Potential of Natural Compounds on Mitochondrial Health
Editat de Marcos Roberto de Oliveiraen Limba Engleză Paperback – 29 iul 2021
This book is structured into two parts that provide a balance of both foundational and applied content. Part I provides an overview of mitochondrial physiology including its structure, dynamics, biogenesis, membranes, DNA transcription, and translation in the mitochondria. Part I also covers other themes such as apoptosis. Part II then covers the effect of specific vegetable-derived molecules on mitochondrial health, including anthocyanins, caffeine, cannabinoids, carnosic and rosmarinic acids, citrus flavonoids, polyphenols, pterostilbene, resveratrol, and sulforaphane, among others.
Mitochondrial Physiology and Vegetal Molecules: Therapeutic potential of natural compounds on mitochondrial health is a complete resource for researchers in this exciting field. Its comprehensive coverage makes it particularly interesting to bioscience researchers willing to understand the foundations of mitochondrial physiology throughout the human life span. Clinician researchers, MDs, nutritionists, pharmacologists, and sports scientists may be attracted to the detailed information on the health effects of vegetal origin molecules on the organelle.
- Contains detailed information on plant products and their effect on mitochondria
- Proposes therapies and reviews mechanisms of absorption at the cellular level
- Discusses the limited bioavailability of plant molecules/compounds in the human organism
- Includes coverage of specific conditions such as Sports and affective disorders, among others
- Presents the protective effects of plant products in mitochondrial health through all stages of life
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Specificații
ISBN-13: 9780128215623
ISBN-10: 0128215623
Pagini: 806
Ilustrații: 120 illustrations (60 in full color)
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
ISBN-10: 0128215623
Pagini: 806
Ilustrații: 120 illustrations (60 in full color)
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
Cuprins
Part I - Overview of Mitochondrial Physiology
1. Mitochondria: Ultrastructure, Dynamics, Biogenesis and Main Functions
2. Mitochondrial biogenesis and mitophagy
3. DNA transcription and translation in the mitochondria
4. Mitochondrial redox biology: reactive species production and antioxidant defenses
5. Mitochondria and apoptosis
6. Mitochondria-Associated Membranes in the Maintenance of Cell Homeostasis
Part II - The effects of plant molecules on the mitochondria in health and disease
7. Biopharmaceutical Properties of Natural Products
8. Carnosic acid and brain mitochondria
9. Rosmarinic acid and the mitochondria
10. The effects of sulforaphane on the mitochondria
11. Cannabinoids and mitochondria
12. Anthocyanins, effects in mitochondria and metabolism
13. Preclinical evidence of the therapeutic role of pterostilbene: focus on the mitochondria
14. Polyphenols attenuate mitochondrial dysfunction induced by amyloid peptides
15. Plant molecules to treat eye mitochondria
16. Mitochondria as a target for monoterpenes
17. Baccharis trimera phytochemicals and the mitochondria
18. Citrus flavonoids and the mitochondria
19. Caffeine and the brain mitochondria
20. Curcumin and the mitochondria
21. Catechins, neuroprotection and brain mitochondria
22. The effects of catechins on the cardiac mitochondria
23. Possible Roles of Garlic and Its Bioactive Components on Mitochondrial Function in Physiological and Pathological Conditions
24. Resveratrol effects on skeletal muscle mitochondria and contractile function
25. Antiaging effects of natural agents in the skin: focus on the mitochondria
26. Role of quercetin in the glial mitochondria: Implications for health and disease
27. The Therapeutic Effects of Lycopene on Mitochondrial Function in Human Diseases
28. Ascorbic acid and the mitochondria
29. Soy isoflavones, mitochondria, and cell fate
30. Resveratrol and the brain mitochondria
31. The role of plant molecules on the prevention and treatment of mitochondriarelated intoxication
32. Mitochondrial toxicity induced by plant molecules
33. Mitohormesis
1. Mitochondria: Ultrastructure, Dynamics, Biogenesis and Main Functions
2. Mitochondrial biogenesis and mitophagy
3. DNA transcription and translation in the mitochondria
4. Mitochondrial redox biology: reactive species production and antioxidant defenses
5. Mitochondria and apoptosis
6. Mitochondria-Associated Membranes in the Maintenance of Cell Homeostasis
Part II - The effects of plant molecules on the mitochondria in health and disease
7. Biopharmaceutical Properties of Natural Products
8. Carnosic acid and brain mitochondria
9. Rosmarinic acid and the mitochondria
10. The effects of sulforaphane on the mitochondria
11. Cannabinoids and mitochondria
12. Anthocyanins, effects in mitochondria and metabolism
13. Preclinical evidence of the therapeutic role of pterostilbene: focus on the mitochondria
14. Polyphenols attenuate mitochondrial dysfunction induced by amyloid peptides
15. Plant molecules to treat eye mitochondria
16. Mitochondria as a target for monoterpenes
17. Baccharis trimera phytochemicals and the mitochondria
18. Citrus flavonoids and the mitochondria
19. Caffeine and the brain mitochondria
20. Curcumin and the mitochondria
21. Catechins, neuroprotection and brain mitochondria
22. The effects of catechins on the cardiac mitochondria
23. Possible Roles of Garlic and Its Bioactive Components on Mitochondrial Function in Physiological and Pathological Conditions
24. Resveratrol effects on skeletal muscle mitochondria and contractile function
25. Antiaging effects of natural agents in the skin: focus on the mitochondria
26. Role of quercetin in the glial mitochondria: Implications for health and disease
27. The Therapeutic Effects of Lycopene on Mitochondrial Function in Human Diseases
28. Ascorbic acid and the mitochondria
29. Soy isoflavones, mitochondria, and cell fate
30. Resveratrol and the brain mitochondria
31. The role of plant molecules on the prevention and treatment of mitochondriarelated intoxication
32. Mitochondrial toxicity induced by plant molecules
33. Mitohormesis