🧬 BDNF Extraction Viewer

Извлечено: 997 / 997 (100.0%) Средняя confidence: 0.13
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Caffeine reverses sleep deprivation-induced synaptic and social memory deficits via adenosine receptor modulation in the male mouse hippocampal CA2 region.

PMID: 41667635 · DOI: 10.1038/s41386-026-02362-w · Neuropsychopharmacology : official publication of the American College of Neuropsychopharmacology, 2026 · Lik-Wei Wong, Mohammad Zaki Bin Ibrahim, Aiswaria Lekshmi Kannan, Sreedharan Sajikumar
📄 Abstract

Sleep deprivation (SD) is a critical risk factor for cognitive decline and is closely linked to psychiatric disorders. The hippocampal CA2 region is critically involved in encoding social memory and regulating emotional behavior, and it has been implicated in various neuropsychiatric conditions. However, how SD affects CA2-dependent synaptic plasticity and related behaviors remains poorly understood. Here, we subjected mice to 5 h of SD via gentle handling and examined synaptic plasticity, molecular signaling, and social recognition memory. Electrophysiological recordings revealed that SD markedly impaired long-term potentiation (LTP) in CA2 and disrupted social recognition memory, as evidenced by failure to distinguish novel from familiar conspecifics. These deficits were accompanied by upregulation of adenosine A1 receptors and PDE4A5, along with reduced expression of plasticity-related proteins including PKMζ, ERK, and BDNF. Moreover, caffeine-induced synaptic potentiation was diminished in SD mice, whereas caffeine supplementation reversed both synaptic and behavioral impairments. Together, these findings demonstrate that SD compromises CA2-dependent plasticity and social cognition through adenosine receptor signaling and identify CA2 as a vulnerable, therapeutically relevant region. Targeting adenosine pathways may represent a novel strategy to mitigate sleep loss-related cognitive dysfunction in neuropsychiatric disorders.

Confidence: 0.35 · 18 полей извлечено
Идентификация (6 полей)
Target
adenosine A1 receptor
0.90
Alt. target
0.00
Protein family
G protein-coupled receptor
0.80
Functional class
receptor
0.90
Subcellular loc.
plasma membrane
0.70
Isoforms (metab/obesity)
0.00
Механизм действия (21 полей)
Mechanism
Caffeine acts as an adenosine receptor antagonist, reversing sleep deprivation-induced upregulation of adenosine A1 receptors and PDE4A5, and restoring plasticity-related proteins (PKMζ, ERK, BDNF) and synaptic potentiation in the hippocampal CA2 region.
0.95
Mutations (obesity/lean)
0.00
Activity (obesity)
0.00
Activity temporal
0.00
Energy balance
0.00
Appetite
0.00
Fat metabolism
0.00
Lipolysis
0.00
Thermogenesis
0.00
Muscle metabolism
0.00
Inflammation
0.00
Glucose metabolism
0.00
AA metabolism
0.00
Hormonal pathways
0.00
Cell death
0.00
Adipocyte fibrosis
0.00
Upstream (biochem)
Adenosine A1 receptors, PDE4A5
0.90
Upstream (physiol)
Sleep deprivation
0.90
Downstream (biochem)
PKMζ, ERK, BDNF
0.90
Downstream (physiol)
Synaptic plasticity (LTP), social recognition memory
0.90
PTMs
0.00
Экспрессия (8 полей)
Tissue expression
hippocampal CA2 region
0.90
In vitro
0.00
In vivo
mice subjected to 5 h sleep deprivation via gentle handling; electrophysiological recordings; social recognition memory test; caffeine supplementation
0.95
In silico
0.00
Genetic association
0.00
Ex vivo
0.00
Animal model
male mice
0.95
Diet/model
sleep deprivation via gentle handling
0.90
Клиника (11 полей)
Drug
Caffeine
0.95
Indication
Sleep deprivation-induced cognitive dysfunction and social memory deficits
0.90
Patient subgroups
0.00
Safety concerns
0.00
Off-target
0.00
Trial stage
Preclinical (mouse model)
0.95
Pharma competitors
0.00
AE severity
0.00
MOA weight loss
0.00
Endpoints
Reversal of synaptic plasticity (LTP) impairment; Restoration of social recognition memory
0.90
Approved
False
0.80