Keyword search (4,163 papers available)

"nap" Keyword-tagged Publications:

Title Authors PubMed ID
1 Habitual napping in older adults is accompanied by altered heat-loss rhythms across the circadian cycle and reduced coupling between pre-sleep thermoregulatory dynamics and sleep initiation Dourte M; Hammad G; de Haan S; Deantoni M; Reyt M; Baillet M; Lesoinne A; Muto V; Collette F; Vandewalle G; Peigneux P; Cajochen C; Schmidt C; 41797810
PSYCHOLOGY
2 Dopamine inhibits excitatory synaptic responses in layer I of the rat parasubiculum Carter F; Hobishi H; Chapman CA; 40818632
PSYCHOLOGY
3 Syngap1 regulates the synaptic drive and membrane excitability of Parvalbumin-positive interneurons in mouse auditory cortex Francavilla R; Chattopadhyaya B; Damo Kamda JL; Jadhav V; Kourrich S; Michaud JL; Di Cristo G; 40810392
CSBN
4 Progesterone and allopregnanolone facilitate excitatory synaptic transmission in the infralimbic cortex via activation of membrane progesterone receptors Rahaei N; Buynack LM; Kires L; Movasseghi Y; Chapman CA; 39722289
PSYCHOLOGY
5 The effects of acute exercise and a nap on heart rate variability and memory in young sedentary adults Mograss M; Frimpong E; Vilcourt F; Chouchou F; Zvionow T; Dang-Vu TT; 37855092
PERFORM
6 Inhibiting amyloid beta (1-42) peptide-induced mitochondrial dysfunction prevents the degradation of synaptic proteins in the entorhinal cortex Olajide OJ; La Rue C; Bergdahl A; Chapman CA; 36275011
HKAP
7 The effects of napping on night-time sleep in healthy young adults Melodee Mograss 35253300
PERFORM
8 G protein-coupled estrogen receptor-1 enhances excitatory synaptic responses in the entorhinal cortex Batallán Burrowes AA; Sundarakrishnan A; Bouhour C; Chapman CA; 34399010
PSYCHOLOGY
9 Are the Allergic Reactions of COVID-19 Vaccines Caused by mRNA Constructs or Nanocarriers? Immunological Insights Selvaraj G; Kaliamurthi S; Peslherbe GH; Wei DQ; 34021862
CHEMBIOCHEM
10 Neurobehavioral, neurochemical and synaptic plasticity perturbations during postnatal life of rats exposed to chloroquine in-utero Olajide OJ; Alliy ZO; Ojo DO; Osinubi OO; Bello SO; Ibrahim FE; Adukwu FO; Abikoye TO; Gbadamosi IT; Mutholib NY; Bamisi O; Ajiboye OJ; Okesina AA; Alli-Oluwafuyi A; Oyewole AL; Nafiu AB; Akinola O; 33845156
PSYCHOLOGY
11 Atrx Deletion in Neurons Leads to Sexually Dimorphic Dysregulation of miR-137 and Spatial Learning and Memory Deficits. Tamming RJ, Dumeaux V, Jiang Y, Shafiq S, Langlois L, Ellegood J, Qiu LR, Lerch JP, Bérubé NG 32610139
PERFORM
12 Exercising before a nap benefits memory better than napping or exercising alone. Mograss M, Crosetta M, Abi-Jaoude J, Frolova E, Robertson E, Pepin V, Dang-Vu TT 32236442
PERFORM
13 Heterosynaptic modulation of evoked synaptic potentials in layer II of the entorhinal cortex by activation of the parasubiculum. Sparks DW, Chapman CA 27146979
PSYCHOLOGY

 

Title:Progesterone and allopregnanolone facilitate excitatory synaptic transmission in the infralimbic cortex via activation of membrane progesterone receptors
Authors:Rahaei NBuynack LMKires LMovasseghi YChapman CA
Link:https://pubmed.ncbi.nlm.nih.gov/39722289/
DOI:10.1016/j.neuroscience.2024.12.042
Publication:Neuroscience
Keywords:Current source density analysisExcitatory postsynaptic potentialNeurosteroidsPrefrontal cortexRat
PMID:39722289 Category: Date Added:2024-12-26
Dept Affiliation: PSYCHOLOGY
1 Department of Psychology, Concordia University, Montreal, Canada.
2 Department of Psychology, Concordia University, Montreal, Canada. Electronic address: andrew.chapman@concordia.ca.

Description:

Estrogens and progesterone can have rapid effects on neuronal function and can modify the use of spatial navigation strategies dependent upon the prefrontal cortex, striatum, and hippocampus. Here, we assessed the effects of 17ß-estradiol (E2), progesterone, and its metabolite allopregnanolone, on evoked excitatory postsynaptic potentials in the infralimbic region of the female rat prefrontal cortex. Field excitatory postsynaptic potentials (fEPSPs) evoked by stimulation of layer I were first characterized by recording responses at multiple depths between the cortical surface and the underlying white matter. Current source density analysis showed that the short latency negative component was generated by activation of synaptic currents within layer I, and that putative polysynaptic responses were generated in layers III to V. The amplitude of evoked field EPSPs in layer I was not significantly affected by 20 min application of 17ß-estradiol (10 nM), but both 100 nM progesterone and 1 µM allopregnanolone caused lasting increases in field EPSP amplitude. The effects of progesterone were not blocked by the nuclear progesterone receptor antagonist RU486 (1 µM). Both progesterone and allopregnanolone are known to activate membrane progesterone receptors, and we found that the membrane progesterone receptor agonist Org OD 02-0 facilitated EPSPs, and also occluded further increases induced by either progesterone or allopregnanolone. These results provide evidence that both progesterone and allopregnanolone facilitate synaptic responses in layer I of the infralimbic cortex by activating membrane progesterone receptors.





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