Literature DB >> 8812295

Endocrine glia: roles of glial cells in the brain actions of steroid and thyroid hormones and in the regulation of hormone secretion.

L M Garcia-Segura1, J A Chowen, F Naftolin.   

Abstract

The development and functioning of the nervous system are known to be influenced in various ways by endocrine signals. In turn, neural tissue modulates internal homeostasis, not only by electrical signaling, but also by regulating the release of endocrine messengers. However, the mechanisms underlying these processes are not fully understood. Recent evidence indicates that glia may play a significant role in the link between the endocrine and nervous systems. Glial cells express nuclear receptors for both thyroid and steroid hormones and participate in the metabolism of these hormones, resulting in the production of neuroactive metabolites. Furthermore, glial cells synthesize endogenous neuroactive steroids, including pregnenolone and progesterone, from cholesterol. Thyroid hormones, glucocorticoids, gonadal steroids, and neurosteroids affect myelinization by acting on oligodendroglia and modulate astroglia morphology, differentiation, and gene expression in different brain areas. Under physiological conditions, hormonal effects on glia may have important consequences for neuronal development, metabolism, and activity and for the formation and plasticity of synaptic connections. In addition, glucocorticoids, gonadal steroids, and neurosteroids may affect regenerative processes in neurons by modulating glial responses after injury. These effects include the activation of microglia, which is regulated by glucocorticoids, and the proliferation of reactive astroglia, which is regulated by gonadal hormones and neurosteroids. Glial cells are also involved in the modulation of hormone release. Pituicytes and microglia in the neurohypophysis may influence hormonal secretion by regulating neurovascular contacts, while astroglia in the hypothalamus regulate the number of synaptic inputs to specific neuronal populations involved in pituitary hormone release, such as LHRH and oxytocinergic neurons. Furthermore, tanycytes and astrocytes in the arcuate nucleus and median eminence release trophic factors that regulate hormone secretion by hypothalamic neurons.

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Year:  1996        PMID: 8812295     DOI: 10.1006/frne.1996.0005

Source DB:  PubMed          Journal:  Front Neuroendocrinol        ISSN: 0091-3022            Impact factor:   8.606


  35 in total

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2.  Fat incites tanycytes to neurogenesis.

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Authors:  F Jauregui-Huerta; Y Ruvalcaba-Delgadillo; R Gonzalez-Castañeda; J Garcia-Estrada; O Gonzalez-Perez; S Luquin
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Review 7.  Mechanisms mediating oestradiol modulation of the developing brain.

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8.  Hormonal modulation of amino acid neurotransmitter metabolism in the arcuate nucleus of the adult female rat: a novel action of estradiol.

Authors:  Tamara Blutstein; Peter J Baab; H Ronald Zielke; Jessica A Mong
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9.  Thyroid hormone acting on astrocytes in culture.

Authors:  A G Trentin; F C Gomes; F R Lima; V M Neto
Journal:  In Vitro Cell Dev Biol Anim       Date:  1998-04       Impact factor: 2.416

10.  Leptin regulates glutamate and glucose transporters in hypothalamic astrocytes.

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Journal:  J Clin Invest       Date:  2012-10-15       Impact factor: 14.808

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