Paper
The cortical neuropeptide, cortistatin-14, impairs post-training memory processing
Published Nov 14, 1997 · J. Flood, K. Uezu, J. Morley
Brain Research
Q2 SJR score
19
Citations
0
Influential Citations
Abstract
Abstract hidden due to publisher request; this does not indicate any issues with the research. Click the full text link above to read the abstract and view the original source.
Study Snapshot
Cortistatin-14 impairs post-training memory processing in mice at doses of 0.5-5.0 g.
PopulationOlder adults (50-71 years)
Sample size24
MethodsObservational
OutcomesBody Mass Index projections
ResultsSocial networks mitigate obesity in older groups.
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References
Age-related changes in hippocampal drug facilitation of memory processing in SAMP 8 Mice
Age-related decline in memory retention in SAMP8 mice may be partially due to reduced cholinergic activity in the hippocampus.
1996·48citations·J. Flood et al.·Neurobiology of Aging
Neurobiology of Aging
Noradrenergic and cholinergic interactions in the amygdala and the modulation of memory storage
Activation of muscarinic cholinergic mechanisms in the amygdala enhances memory retention, mediating the facilitatory effects of systemically administered oxotremorine.
1993·81citations·C. Dalmaz et al.·Behavioural Brain Research
Behavioural Brain Research
Effect on memory processing by D-cycloserine, an agonist of the NMDA/glycine receptor.
D-cycloserine (DCS) improves memory retention in mice, with higher doses needed for better results in older mice and those with impaired learning and memory.
1992·146citations·J. Flood et al.·European journal of pharmacology
European journal of pharmacology
Neurotransmitter receptors involved in post-training memory processing by the amygdala, medial septum, and hippocampus of the rat.
Neurotransmitter receptors in the amygdala, medial septum, and hippocampus play a role in memory consolidation, with NMDA, muscarinic, and -noradrenergic receptors stimulating and GABA-A receptors inhibiting.
1992·391citations·I. Izquierdo et al.·Behavioral and neural biology
Behavioral and neural biology
Citations
Exploring the Painless Nature and Potential Mechanisms of Asymptomatic Irreversible Pulpitis: A Narrative Review
Asymptomatic irreversible pulpitis (AIP) may be painless due to local endogenous analgesics, but the precise mechanisms responsible for the lack of symptoms remain unresolved.
2024·0citations·Daniela Paola Cabrera-Abad et al.·The Open Dentistry Journal
The Open Dentistry Journal
Intrahippocampal injection of Cortistatin-14 impairs recognition memory consolidation in mice through activation of sst2, ghrelin and GABAA/B receptors
Cortistatin-14 impairs recognition memory consolidation in mice through activation of sst2, ghrelin, and GABA systems, with its memory-impairing effects reversed by c-SOM, cyanamid154806, [d-Lys3]GHRP-6,
2017·11citations·Jinhong Jiang et al.·Brain Research
Brain Research
Analgesic effect of the neuropeptide cortistatin in murine models of arthritic inflammatory pain.
Cortistatin has potent analgesic effects in arthritis and peripheral tissue inflammation, offering a potential new approach to pain therapy in pathologic inflammatory states.
2013·26citations·M. Morell et al.·Arthritis and rheumatism
Arthritis and rheumatism
Effect of cortistatin on tau phosphorylation at Ser262 site
Cortistatin plays a crucial role in regulating tau phosphorylation, potentially playing a role in Alzheimer's disease pathophysiology in regions like the cerebral cortex.
2008·12citations·A. Rubio et al.·Journal of Neuroscience Research
Journal of Neuroscience Research
Cortistatin—Functions in the central nervous system
Cortistatin (CST) is a neuropeptide that induces slow-wave sleep, reduces locomotor activity, and may play a role in learning and memory processes, as well as being an endogenous anti-convulsant and mediator of immunity and inflammation.
2008·40citations·L. Lecea·Molecular and Cellular Endocrinology
Molecular and Cellular Endocrinology