Literature DB >> 18700946

Estrogen-growth factor interactions and their contributions to neurological disorders.

Helen E Scharfman1, Neil J MacLusky.   

Abstract

Estrogen has diverse and powerful effects in the brain, including actions on neurons, glia, and the vasculature. It is not surprising, therefore, that there are many changes in the female brain as serum estradiol levels rise and fall during the normal ovarian cycle. At times of life when estradiol levels change dramatically, such as puberty, postpartum, or menopause, there also are dramatic changes in the central nervous system. Changes that occur because of fluctuations in serum estrogen levels are potentially relevant to neurological disorders because symptoms often vary with the time of the ovarian cycle. Moreover, neurological disorders (eg, seizures and migraine) often increase in frequency in women when estradiol levels change. In this review, the contribution of 2 growth factors targeted by estrogen, the neurotrophin brain-derived neurotrophic factor (BDNF) and vascular endothelial growth factor (VEGF), will be discussed. Estrogen-sensitive response elements are present on the genes for both BDNF and VEGF, and they are potent modulators of neuronal, glial, and vascular function, making them logical candidates to mediate the multitude of effects of estrogen. In addition, BDNF induces neuropeptide Y, which has diverse actions that are relevant to estrogen action and to the same neurological disorders.

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Year:  2008        PMID: 18700946      PMCID: PMC2729400          DOI: 10.1111/j.1526-4610.2008.01200.x

Source DB:  PubMed          Journal:  Headache        ISSN: 0017-8748            Impact factor:   5.887


  77 in total

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5.  Prevention of menstrual attacks of migraine: a double-blind placebo-controlled crossover study.

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6.  The predictive value of abbreviated migraine diagnostic criteria.

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Journal:  Headache       Date:  2005-10       Impact factor: 5.887

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4.  17β-estradiol increases astrocytic vascular endothelial growth factor (VEGF) in adult female rat hippocampus.

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5.  Cutting through the complexity: the role of brain-derived neurotrophic factor in post-traumatic epilepsy (Commentary on Gill et al.).

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7.  A rat model of epilepsy in women: a tool to study physiological interactions between endocrine systems and seizures.

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8.  Npy deletion in an alcohol non-preferring rat model elicits differential effects on alcohol consumption and body weight.

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Review 9.  Cytochrome P450-mediated estrogen catabolism therapeutic avenues in epilepsy.

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Review 10.  Sex differences in the neurobiology of epilepsy: a preclinical perspective.

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