Epigenetics in Human Disease: Translational Epigenetics
Editat de Trygve O Tollefsbolen Limba Engleză Hardback – 17 mai 2018
Further sections explore online epigenetic tools and datasets, early-life programming of epigenetics in age-related diseases, the epigenetics of addiction and suicide, and epigenetic approaches to regulating and preventing diabetes, cardiac disease, allergic disorders, Alzheimer’s disease, respiratory diseases, and many other human maladies.
- Includes contributions from leading international investigators involved in translational epigenetic research and therapeutic applications
- Integrates methods and applications with fundamental chapters on epigenetics in human disease, along with an evaluation of recent clinical breakthroughs
- Presents side-by-side coverage of the basis of epigenetic diseases and treatment pathways
- Provides a fully revised resource covering current developments, including stem cell epigenetic therapy, the bioinformatic analysis of NGS data, epigenetic mechanisms of imprinting disorders, online epigenetic tools and datasets, and more
Toate formatele și edițiile | Preț | Express |
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Hardback (2) | 831.26 lei 36-50 zile | |
ELSEVIER SCIENCE – 17 mai 2018 | 831.26 lei 36-50 zile | |
ELSEVIER SCIENCE – 10 oct 2023 | 1199.47 lei 36-50 zile | +151.23 lei 5-11 zile |
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Specificații
ISBN-13: 9780128122150
ISBN-10: 0128122153
Pagini: 1110
Dimensiuni: 191 x 235 x 57 mm
Ediția:2
Editura: ELSEVIER SCIENCE
Seria Translational Epigenetics
ISBN-10: 0128122153
Pagini: 1110
Dimensiuni: 191 x 235 x 57 mm
Ediția:2
Editura: ELSEVIER SCIENCE
Seria Translational Epigenetics
Public țintă
Researchers working in genetics, biology, molecular biology, pharmaceutical science, and clinical therapy; advanced undergraduate students, graduate students, university researchers, pharmaceutical company and biotechnology researchers interested in drug development and therapiesCuprins
Section I: Introduction 1. Epigenetics in Human Disease
Section II: Methodology 2. Methods and Strategies to Determine Epigenetic Variation in Human Disease 3. Age Estimates Using DNA Methylation Patterns 4.Bioinformatics of Epigenetic Data Generated from Next-generation Sequencing
Section III: Human Cancer 5. DNA Methylation Alterations in Human Cancers 6. Alterations of Histone Modifications in Cancer 7. MicroRNA in Cancer 8. Epigenetic Approaches to Cancer Therapy
Section lV: Neurological Disease 9. Epigenomics in Neurobehavioral Disease 10. Emerging Role of Epigenetics in Human Neurodevelopmental Disorders 11. The Epigenetics of Alzheimer’s and Other Neurodegenerative Disease 12. Epigenetic Modulation of Human Neurobiological Disorder
Section V: Autoimmune Disease 13. Epigenetic Basis of Autoimmune Disorders in Humans 14. Approaches to Autoimmune Diseases Using Epigenetic Therapy
Section VI: Metabolic Disorders 15. Epigenomic Factors in Human Obesity 16. Epigenetic Approaches to Control Obesity 17. Epigenetics of Diabetes in Humans 18. The Potential of Epigenetic Compounds in Treating Diabetes
Section VII: Other Disorders/Diseases 19. Epigenetic Aberrations in Human Allergic Diseases 20. Therapy of Airway Disease: Epigenetic Potential 21. The Role of Epigenetics in Cardiovascular Disease 22. Epigenetic Treatment Approaches to Cardiovascular Disease 23. Epigenetics and Human Infectious Diseases 24. Therapy of Infectious Diseases Using Epigenetic Approaches 25. The Epigenetics of Endometriosis 26. Epigenetic DNA Methylation in Endometrial Cancer 27. Epigenetic Treatment Prospects of Gynecological and Reproductive Diseases
Section VIII: Development, Aging and Transgenerational Effects 28. Epigenetics of Transgenerational Inheritance in Disease 29. Epigenetic Mechanisms of Human Imprinting Disorders 30. Therapeutic Approaches to Imprinting Diseases 31. Stem Cell Epigenetics and Human Disease 32. Non-coding RNA Regulatory Networks, Epigenetics, and Programming Stem Cell Renewal and Differentiation: Implications for Stem Cell Therapy 33. Aging and Disease: The Epigenetic Bridge 34. Epigenetic Programming of Human Disease and Aging
Section lV: Future Research 35. Future Directions in the Epigenetics of Human Disease
Section II: Methodology 2. Methods and Strategies to Determine Epigenetic Variation in Human Disease 3. Age Estimates Using DNA Methylation Patterns 4.Bioinformatics of Epigenetic Data Generated from Next-generation Sequencing
Section III: Human Cancer 5. DNA Methylation Alterations in Human Cancers 6. Alterations of Histone Modifications in Cancer 7. MicroRNA in Cancer 8. Epigenetic Approaches to Cancer Therapy
Section lV: Neurological Disease 9. Epigenomics in Neurobehavioral Disease 10. Emerging Role of Epigenetics in Human Neurodevelopmental Disorders 11. The Epigenetics of Alzheimer’s and Other Neurodegenerative Disease 12. Epigenetic Modulation of Human Neurobiological Disorder
Section V: Autoimmune Disease 13. Epigenetic Basis of Autoimmune Disorders in Humans 14. Approaches to Autoimmune Diseases Using Epigenetic Therapy
Section VI: Metabolic Disorders 15. Epigenomic Factors in Human Obesity 16. Epigenetic Approaches to Control Obesity 17. Epigenetics of Diabetes in Humans 18. The Potential of Epigenetic Compounds in Treating Diabetes
Section VII: Other Disorders/Diseases 19. Epigenetic Aberrations in Human Allergic Diseases 20. Therapy of Airway Disease: Epigenetic Potential 21. The Role of Epigenetics in Cardiovascular Disease 22. Epigenetic Treatment Approaches to Cardiovascular Disease 23. Epigenetics and Human Infectious Diseases 24. Therapy of Infectious Diseases Using Epigenetic Approaches 25. The Epigenetics of Endometriosis 26. Epigenetic DNA Methylation in Endometrial Cancer 27. Epigenetic Treatment Prospects of Gynecological and Reproductive Diseases
Section VIII: Development, Aging and Transgenerational Effects 28. Epigenetics of Transgenerational Inheritance in Disease 29. Epigenetic Mechanisms of Human Imprinting Disorders 30. Therapeutic Approaches to Imprinting Diseases 31. Stem Cell Epigenetics and Human Disease 32. Non-coding RNA Regulatory Networks, Epigenetics, and Programming Stem Cell Renewal and Differentiation: Implications for Stem Cell Therapy 33. Aging and Disease: The Epigenetic Bridge 34. Epigenetic Programming of Human Disease and Aging
Section lV: Future Research 35. Future Directions in the Epigenetics of Human Disease