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Multi-Target Mechanisms of the Naofucong in Ameliorating Diabetes-Associated Cognitive Dysfunction via cAMP/PKA/CREB-Mediated Synaptic and Inflammatory Regulation.

PMID: 41431402 · DOI: 10.1002/cns.70716 · CNS neuroscience & therapeutics, 2025 · Mei Ma, Yue Tian, Ruiying Yin, Guangchan Jing, Mengren Zhang
📄 Abstract

Diabetes-associated cognitive dysfunction (DACD) is a prevalent and debilitating complication of diabetes, yet effective therapies remain limited. The traditional Chinese medicine compound Naofucong (NFC) has shown neuroprotective potential, but its underlying mechanisms are not fully understood. This study investigated the therapeutic efficacy and molecular mechanisms of NFC against DACD using an integrated multi-omics approach combined with experimental validation. Streptozotocin-induced DACD rats received NFC (22.5 g/kg/day) for 12 weeks. Cognitive performance was assessed by the Morris water maze. Transcriptomics and untargeted metabolomics were integrated to identify key regulatory pathways, which were further validated using immunofluorescence, Golgi staining, cytokine profiling, qPCR, and western blotting. NFC significantly improved spatial learning and memory, attenuated neuronal damage in the hippocampus and cortex, and reduced pathological protein accumulation (APP, phosphorylated Tau). By integrating transcriptomics and metabolomics, we elucidated that NFC primarily acts via activation of the cAMP/PKA/CREB signaling pathway, leading to synaptic repair and neuroinflammatory modulation. Mechanistically, NFC restored synaptic ultrastructure, enhanced dendritic complexity and spine maturation, and upregulated neurotrophic factors (BDNF, NGF) and synaptic proteins (PSD-95, SYN). Furthermore, NFC inhibited glial overactivation, decreased pro-inflammatory cytokines (IL-1β, TNF-α, IFN-γ, IL-6, KC/GRO), and increased anti-inflammatory cytokines (IL-10, IL-13, IL-4), thereby re-establishing neuroimmune balance. NFC exerts multi-target neuroprotective effects by activating the cAMP/PKA/CREB pathway and coordinately regulating synaptic plasticity and neuroinflammation. These findings highlight NFC as a promising candidate for DACD treatment.

Confidence: 0.16 · 8 полей извлечено
Идентификация (6 полей)
Target
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Alt. target
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Protein family
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Subcellular loc.
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Isoforms (metab/obesity)
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Механизм действия (21 полей)
Mechanism
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Mutations (obesity/lean)
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Activity (obesity)
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Activity temporal
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Energy balance
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Appetite
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Fat metabolism
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Lipolysis
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Thermogenesis
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Muscle metabolism
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Inflammation
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Glucose metabolism
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AA metabolism
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Hormonal pathways
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Cell death
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Adipocyte fibrosis
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Upstream (biochem)
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Upstream (physiol)
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Downstream (biochem)
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Downstream (physiol)
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PTMs
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Экспрессия (8 полей)
Tissue expression
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In vitro
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In vivo
Streptozotocin-induced DACD rats received NFC (22.5 g/kg/day) for 12 weeks. Cognitive performance assessed by Morris water maze. Transcriptomics and untargeted metabolomics integrated. Validation by immunofluorescence, Golgi staining, cytokine profiling, qPCR, and western blotting.
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In silico
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Genetic association
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Ex vivo
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Animal model
Streptozotocin-induced DACD rats
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Diet/model
Streptozotocin-induced diabetes-associated cognitive dysfunction (DACD) rat model
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Клиника (11 полей)
Drug
Naofucong
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Indication
Diabetes-associated cognitive dysfunction
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Patient subgroups
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Safety concerns
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Off-target
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Trial stage
Preclinical (animal study)
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Pharma competitors
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AE severity
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MOA weight loss
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Endpoints
Improved spatial learning and memory, attenuated neuronal damage, reduced pathological protein accumulation (APP, phosphorylated Tau), restored synaptic ultrastructure, enhanced dendritic complexity and spine maturation, upregulated neurotrophic factors (BDNF, NGF) and synaptic proteins (PSD-95, SYN), inhibited glial overactivation, decreased pro-inflammatory cytokines (IL-1β, TNF-α, IFN-γ, IL-6, KC/GRO), increased anti-inflammatory cytokines (IL-10, IL-13, IL-4)
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Approved
False
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