Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Neuroprotective actions of cerebellar and pineal allopregnanolone on Purkinje cells

View through CrossRef
Abstract The brain produces steroids de novo from cholesterol, so‐called “neurosteroids.” The Purkinje cell, a cerebellar neuron, was discovered as a major site of the biosynthesis of neurosteroids including sex steroids, such as progesterone, from cholesterol in the brain. Allopregnanolone, a progesterone metabolite, is also synthesized in the cerebellum and acts on the Purkinje cell to prevent cell death of this neuron. Recently, the pineal gland was discovered as an important site of the biosynthesis of neurosteroids. Allopregnanolone, a major pineal neurosteroid, acts on the Purkinje cell for the survival of this neuron by suppressing the expression of caspase‐3, a crucial mediator of apoptosis. This review summarizes the discovery of cerebellar and pineal allopregnanolone and its neuroprotective action on Purkinje cells.
Title: Neuroprotective actions of cerebellar and pineal allopregnanolone on Purkinje cells
Description:
Abstract The brain produces steroids de novo from cholesterol, so‐called “neurosteroids.
” The Purkinje cell, a cerebellar neuron, was discovered as a major site of the biosynthesis of neurosteroids including sex steroids, such as progesterone, from cholesterol in the brain.
Allopregnanolone, a progesterone metabolite, is also synthesized in the cerebellum and acts on the Purkinje cell to prevent cell death of this neuron.
Recently, the pineal gland was discovered as an important site of the biosynthesis of neurosteroids.
Allopregnanolone, a major pineal neurosteroid, acts on the Purkinje cell for the survival of this neuron by suppressing the expression of caspase‐3, a crucial mediator of apoptosis.
This review summarizes the discovery of cerebellar and pineal allopregnanolone and its neuroprotective action on Purkinje cells.

Related Results

Spike burst–pause dynamics of Purkinje cells regulate sensorimotor adaptation
Spike burst–pause dynamics of Purkinje cells regulate sensorimotor adaptation
Abstract Cerebellar Purkinje cells mediate accurate eye movement coordination. However, it remains unclear how oculomotor adaptation depends on the interplay betwee...
Lively contributions: 150 years after Johannes (Jan) Evangelist Purkinje passing
Lively contributions: 150 years after Johannes (Jan) Evangelist Purkinje passing
Background: Johannes Evangelist Purkinje was a remarkable Czech scientist who made discoveries concerning the structure and function of the eye, brain and heart which gave him coun...
Gambaran Mikrokopik Serebelum pada Hewan Coba Postmortem
Gambaran Mikrokopik Serebelum pada Hewan Coba Postmortem
Abstract: After death, there will be cellular changes that cause definite signs of death. These changes could be used to determine the time of death. This study was aimed to determ...
Development of a Novel Method to Fabricate Highly Functional Human Purkinje Networks
Development of a Novel Method to Fabricate Highly Functional Human Purkinje Networks
ABSTRACT BACKGROUND In this study, we present a method to bioengineer functional Purkinje networks using recent advances in las...
Adrenergic and Cholinergic Regulation of in vitro Melatonin Release during Ontogeny in the Pineal Gland of Long Evans Rats
Adrenergic and Cholinergic Regulation of in vitro Melatonin Release during Ontogeny in the Pineal Gland of Long Evans Rats
Melatonin, produced by the pineal gland, plays an important role in a great variety of neuroendocrine functions. The rhythmic release of melatonin by the mammalian pineal gland is ...
The Pharmacokinetic Study of Progesterone and Allopregnanolone in Refractory Epilepsy : Phase II Study
The Pharmacokinetic Study of Progesterone and Allopregnanolone in Refractory Epilepsy : Phase II Study
Abstract Background: Progesterone belongs to a class of neurosteroids used for the reduction of seizure frequency in patients with refractory epilepsy. However, the pharmac...
Immunocytochemistry and calcium cytochemistry of the mammalian pineal organ: A comparison with retina and submammalian pineal organs
Immunocytochemistry and calcium cytochemistry of the mammalian pineal organ: A comparison with retina and submammalian pineal organs
AbstractMorphologically the mammalian pineal organ is a part of the diencephalon. It represents a neural tissue histologically (“pineal nervous tissue”) and is dissimilar to endocr...

Back to Top