Hormonal and locally produced steroids act in the nervous system as neuroendocrine regulators, as trophic factors and as neuromodulators and have a major impact on neural development and function. Glial cells play a prominent role in the local production of steroids and in the mediation of steroid effects on neurons and other glial cells. In this review, we examine the role of glia in the synthesis and metabolism of steroids and the functional implications of glial steroido-genesis. We analyze the mechanisms of steroid signaling on glia, including the role of nuclear receptors and the mechanisms of membrane and cytoplasmic signaling mediated by changes in intracellular calcium levels and activation of signaling kinases. Effects of steroids ...
Glia can influence the outcome of an epileptogenic insult by controlling the recovery of neuronalnet...
Sex steroids exert actions of paramount importance on brain cells. They contribute to shape the cent...
Astrocytes, the most abundant glial cell in the brain, play critical roles in metabolic and homeosta...
Hormonal and locally produced steroids act in the nervous system as neuroendocrine regulators, as tr...
In recent years it has becoming clear that glial cells of the central and peripheral nervous system ...
Proteins involved in the intramitochondrial trafficking of cholesterol, the first step in steroidoge...
The nervous system, like the classical peripheral endocrine glands, e.g. gonads, placenta and adrena...
A growing body of evidence suggests that glial cells are involved in practically all aspects of neur...
Over the past decade, it has become clear that the brain, like the gonad, adrenal and placenta, is a...
The mechanisms through which steroid hormones influence the LHRH system are not completely clarified...
Non-neuronal cells synthethize and metabolize steroid hormones and produce local neuroactive steroid...
Neuroactive steroids include synthetic steroidal compounds and endogenous steroids, produced by endo...
Neuroactive steroids include synthetic steroidal compounds and endogenous steroids, produced by endo...
peer reviewedThis brief commentary reviews key steps in the history of steroid endocrinology that ha...
Glial cells have both beneficial and detrimentaleffects on recovery from brain damage and playa role...
Glia can influence the outcome of an epileptogenic insult by controlling the recovery of neuronalnet...
Sex steroids exert actions of paramount importance on brain cells. They contribute to shape the cent...
Astrocytes, the most abundant glial cell in the brain, play critical roles in metabolic and homeosta...
Hormonal and locally produced steroids act in the nervous system as neuroendocrine regulators, as tr...
In recent years it has becoming clear that glial cells of the central and peripheral nervous system ...
Proteins involved in the intramitochondrial trafficking of cholesterol, the first step in steroidoge...
The nervous system, like the classical peripheral endocrine glands, e.g. gonads, placenta and adrena...
A growing body of evidence suggests that glial cells are involved in practically all aspects of neur...
Over the past decade, it has become clear that the brain, like the gonad, adrenal and placenta, is a...
The mechanisms through which steroid hormones influence the LHRH system are not completely clarified...
Non-neuronal cells synthethize and metabolize steroid hormones and produce local neuroactive steroid...
Neuroactive steroids include synthetic steroidal compounds and endogenous steroids, produced by endo...
Neuroactive steroids include synthetic steroidal compounds and endogenous steroids, produced by endo...
peer reviewedThis brief commentary reviews key steps in the history of steroid endocrinology that ha...
Glial cells have both beneficial and detrimentaleffects on recovery from brain damage and playa role...
Glia can influence the outcome of an epileptogenic insult by controlling the recovery of neuronalnet...
Sex steroids exert actions of paramount importance on brain cells. They contribute to shape the cent...
Astrocytes, the most abundant glial cell in the brain, play critical roles in metabolic and homeosta...