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Estradiol: A Protective Factor in the Adult Brain

Department of Physiology, College.of Medicine, University of Kentucky, Lexington, Kentucky, USA
  • Phyllis M. Wise
Veröffentlicht/Copyright: 22. Juli 2014

ABSTRACT

Clinical studies suggest that estradiol acts as a protective factor in the adult brain. Postmenopausal women suffer from an increased risk of brain injury associated with neurodegenerative diseases such as Alzheimer's disease, and estrogen replacement therapy appears to decrease the risk and severity of this neurodegenerative condition. Studies using animal models show that estradiol exerts similar effects in rodents and can enhance cell survival. Therefore, we designed experiments to determine whether estradiol treatment can decrease brain injury induced by an experimental model of ischemia. Our experiments used a permanent middle cerebral artery occlusion model and physiological levels of estradiol replacement therapy. The results demonstrate that estradiol exerts profound protective effects against ischemic brain injury induced by cerebral artery occlusion and that this protective action correlates with changes in the level of gene expression of estradiol receptors and members of the Bcl-2 family. These data suggest that estrogen replacement therapy may provide important protection against age- and diseaserelated degenerative processes in the brain.

Published Online: 2014-07-22
Published in Print: 2000-12-01

© 2014 by Walter de Gruyter Berlin/Boston

Artikel in diesem Heft

  1. Titelei
  2. TABLE OF CONTENTS
  3. Foreword
  4. What Happens When Growth Hormone is Discontinued at Completion of Growth? Metabolic Aspects
  5. Growth Hormone Deficiency and Peak Bone Mass
  6. Optimal Strategy for Management of Pituitary Disease in the Growth Hormone-Deficient Teenager
  7. Ethical Dilemmas in Pediatric Endocrinology: Growth Hormone for Short Normal Children
  8. Evidence-Based Approach to Growth Hormone Replacement Therapy in Adults, with Special Emphasis on Body Composition
  9. Evidence-Based Growth Hormone Therapy Prediction Models
  10. New Paradigms for Growth Hormone Treatment in the 21st Century: Prediction Models
  11. Role of Insulin-like Growth Factor Monitoring in Optimizing Growth Hormone Therapy
  12. Knockout Mice Challenge Our Concepts of Glucose Homeostasis and the Pathogenesis of Diabetes Mellitus
  13. Type 2 Diabetes Mellitus in Children: Pathophysiology and Risk Factors
  14. Emergence of Type 2 Diabetes Mellitus in Children: Epidemiological Evidence
  15. Treatment of Type 2 Diabetes Mellitus in Children and Adolescents
  16. Diagnosis of Maturity-Onset Diabetes of the Young in the Pediatric Diabetes Clinic
  17. Thrifty Genotypes and Phenotypes in the Pathogenesis of Type 2 Diabetes Mellitus
  18. Estradiol: A Protective Factor in the Adult Brain
  19. Estrogen Treatment and Estrogen Suppression: Metabolic Effects in Adolescence
  20. Estrogen, Bone, Growth and Sex: A Sea Change in Conventional Wisdom
  21. Route-Dependent Endocrine and Metabolic Effects of Estrogen Replacement Therapy
  22. Telomerase and the Cellular Lifespan: Implications for the Aging Process
  23. Human Aging and Progeria
  24. A Role for the Somatotropic Axis in Neural Development, Injury and Disease
  25. Hypothalamic Growth Hormone-Insulin-like Growth Factor-I Axis across the Human Life Span
  26. The Lost Voice: A History of the Castrato
  27. SELECTED POSTER ABSTRACTS
  28. GROWTH. FETAL GROWTH. SGA
  29. SYNDROMES: TURNER. PRADER-WILLI. NOONAN. PHP. OTHERS
  30. GHD. HYPOPITUITARISM. KIGS
  31. METABOLIC. GENETIC. ADULT. ACROMEGALY
  32. GH. IGF. IGFBPs
  33. GROWTH IN SYSTEMIC DISEASE. CRI. RICKETS. STEROIDS
Heruntergeladen am 5.11.2025 von https://www.degruyterbrill.com/document/doi/10.1515/jpem-2000-s617/html
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