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Effects of estradiol in adult neurogenesis and brain repair in zebrafish

期刊

HORMONES AND BEHAVIOR
卷 63, 期 2, 页码 193-207

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.yhbeh.2012.04.003

关键词

Aromatase B; Brain repair; Estrogen; Lesion; Neurogenesis; Radial glial cells; Zebrafish; Teleost

资金

  1. European project [222719]
  2. ANR NEED [CES 2008-011]
  3. Post-Grenelle de l'Environnement NEMO
  4. Post-Grenelle grant NEMO
  5. NSC Taiwan-CNRS France exchange program

向作者/读者索取更多资源

This article is part of a Special Issue Hormones & Neurotrauma. The brain of the adult teleost fish exhibits intense neurogenic activity and an outstanding capability for brain repair. Remarkably, the brain estrogen-synthesizing enzyme, aromatase B, is strongly expressed, particularly in adult fishes, in radial glial cells, which act as progenitors. Using zebrafish, we tested the hypothesis that estrogens affect adult neurogenesis and brain regeneration by modulating the neurogenic activity of radial glial cells. To investigate this, the estrogenic environment was modified through inhibition of aromatase activity, blockade of nuclear estrogen receptors, or estrogenic treatments. Estrogens significantly decreased cell proliferation and migration at the olfactory bulbs/telencephalon junction and in the mediobasal hypothalamus. It also appears that cell survival is reduced at the olfactory bulbs/telencephalon junction. We also developed a model of telencephalic lesion to assess the role of aromatase and estrogens in brain repair. Proliferation increased rapidly immediately after the lesion in the parenchyma of the injured telencephalon, while proliferation at the ventricular surface appeared after 48 h and peaked at 7 days. At this time, most proliferative cells express Sox2, however, none of these Sox2 positive cells correspond to aromatase B-positive radial glial cells. Interestingly, aromatase B expression was significantly reduced 48 h and 7 days after the injury, but surprisingly, at 72 h after lesion, aromatase B expression appeared de novo expressed in parenchyma cells, suggesting a role for this ectopic expression of aromatase in brain repair mechanisms. Altogether these data suggest that estrogens modulate adult, but not reparative neurogenesis, in zebrafish. (C) 2012 Elsevier Inc. All rights reserved.

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