[3H]corticosterone binding in the caudate-putamen.
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Summary
The cytosolic binding capacity of the caudate-putamen was similar to that of the cerebellum, a brain region which also fails to demonstrate marked retention of glucocorticoids in autoradiographic studies.
- Type
- article
- Published
- 1983-11-14
- Cited by
- 22
- References
- 37
- OpenAlex
- https://openalex.org/W1997369608
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:43264504
Keywords
Putamen, Corticosterone, Internal medicine, Endocrinology, Caudate nucleus
References
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- Heterogeneity of AtT-20 cell glucocorticoid binding sites: evidence for a membrane receptor.
- Review of Medical Physiology
- Effects of hypophysectomy and dexamethasone administration on central and peripheral S-adenosylmethionine levels
- Molecular Neurobiology of the Mammalian Brain
- Nuclear binding of glucocorticoid receptors.
- Protein measurement with the Folin phenol reagent.
- A study of the conditions and mechanism of the diphenylamine reaction for the colorimetric estimation of deoxyribonucleic acid.
- Sex differences in the effects of dexamethasone phosphate on behavior in rats.
- Corticosterone-binding molecules in rat brain cytosols: regional distribution.
- The autoradiographic localization of (3H)dexamethasone in the brain and pituitary of the rat.
- Interactions in vivo and in vitro of corticoids and progesterone with cell nuclei and soluble macromolecules from rat brain regions and pituitary.
- Radioautographic study of the rat brain after injection of [1,2-3H]corticosterone.
- Glucocorticoids and hippocampal enzyme activity
- Glucocorticoid binding to receptor-like proteins in rat brain and pituitary: ontogenetic and experimentally induced changes.
- Ontogeny of Glucocorticoid Binding in Rodent Brain
- Effects of adrenalectomy on open-field behavior in rats.
- The Determination of Enzyme Dissociation Constants
- Corticosteroid binding in rat brain and pituitary cytosols: resolution of multiple binding components by polyacrylamide gel based isoelectric focusing.
- Specific interaction of corticosteroids with binding sites in the plasma membranes of the rat anterior pituitary gland.
Cited by
- Plasma corticosterone is increased and correlated with brain acetylcholine in physostigmine- but not in neostigmine-treated rats.
- Functions and dysfunctions of receptors for adrenal corticoids in the central nervous system.
- Pathophysiology of infantile spasms.
- Brain Activation in Response to Visceral Stimulation in Rats with Amygdala Implants of Corticosterone: An fMRI Study
- Opioid Peptides and Seizures
- Adrenocortical hormone status affects responses to dopamine receptor agonists.
- Effects of adrenalectomy on responses mediated by dopamine D-1 and D-2 receptors.
- Glucocorticoid administration into the dorsal stratium facilitates memory consolidation of inhibitory avoidance training but not of the context or footshock components
- Glucocorticoids potentiate ischemic injury to neurons: therapeutic implications.
- Chronic treatment with supraphysiological levels of corticosterone enhances D-MDMA-induced dopaminergic neurotoxicity in the C57BL/6J female mouse.
- Maturation of the adrenocortical stress response: neuroendocrine control mechanisms and the stress hyporesponsive period.
- Adrenocorticoid action in the spinal cord: Some unique molecular properties of glucocorticoid receptors
- Circadian modifications of blood brain barrier (BBB) permeability in the rat
- The effects of adrenalectomy and thermal stress on glutamic acid decarboxylase activity in different regions of the rat brain
- Infantile spasms: II. Lenticular nuceli and brain stem activation on positron emission tomography
- Two receptor systems for corticosterone in rat brain: microdistribution and differential occupation.
- Corticosterone infused into the dorsal striatum selectively enhances memory consolidation of cued water-maze training.
- Hippocampus: a target for estrogen action in mammalian brain.
- Neonatal factors influence adult stroke outcome.
- Glucocorticoid administration into the dorsolateral but not dorsomedial striatum accelerates the shift from a spatial toward procedural memory
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