🧬 BDNF Extraction Viewer

Извлечено: 997 / 997 (100.0%) Средняя confidence: 0.13
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Effects of Short-Term Exposure to Polystyrene Nanoplastics on the Nervous System: Calcium Homeostasis, BDNF and Synaptic Plasticity.

PMID: 41745852 · DOI: 10.3390/toxics14020178 · Toxics, 2026 · Yiming Zhao, Licheng Yan, Yizhe Wei, Jianping Ma, Jiang Chen, Xuan Liu, Yanan Mi, Bingyan Wang, Leili Zhang, Lei Tian, B
📄 Abstract

(1) Background: The increasing environmental concentration of polystyrene nanoplastics (PS-NPs) may pose a risk of human exposure and health threats. Previous studies have demonstrated that exposure to PS-NPs poses a threat to neural synaptic plasticity, yet the underlying mechanisms remain unclear. (2) Methods: Hippocampal astrocytes and neurons were co-cultured, exposed to PS-NPs at concentrations of 10, 50, and 100 μg/mL, and cytotoxicity was assessed. We investigated PS-NP-induced impairment of synaptic plasticity by regulating the brain-derived neurotrophic factor (BDNF). (3) Results: Calmodulin-dependent protein kinase II (CaMKII) is a central molecular organizer of synaptic plasticity, learning, and memory, and its activity is intrinsically linked to intracellular calcium ion concentration. Our research indicates that PS-NPs may interfere with calcium ion signaling and CaMKIIα activity, thereby reducing CaMKIIα activity. This subsequently downregulates the expression of cAMP response element-binding protein (CREB), modulates BDNF expression, and impacts synaptic plasticity. (4) Conclusions: In summary, this study primarily focused on the effects of PS-NPs exposure on hippocampal synaptic plasticity.

Confidence: 0.12 · 5 полей извлечено
Идентификация (6 полей)
Target
Calmodulin-dependent protein kinase II alpha
0.90
Alt. target
CaMKIIα
0.90
Protein family
Serine/threonine protein kinase
0.80
Functional class
Kinase
0.80
Subcellular loc.
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0.00
Isoforms (metab/obesity)
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0.00
Механизм действия (21 полей)
Mechanism
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Mutations (obesity/lean)
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Activity (obesity)
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0.00
Activity temporal
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Energy balance
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0.00
Appetite
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0.00
Fat metabolism
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0.00
Lipolysis
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0.00
Thermogenesis
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0.00
Muscle metabolism
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0.00
Inflammation
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0.00
Glucose metabolism
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0.00
AA metabolism
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0.00
Hormonal pathways
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0.00
Cell death
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0.00
Adipocyte fibrosis
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0.00
Upstream (biochem)
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0.00
Upstream (physiol)
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0.00
Downstream (biochem)
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0.00
Downstream (physiol)
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0.00
PTMs
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0.00
Экспрессия (8 полей)
Tissue expression
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0.00
In vitro
Hippocampal astrocytes and neurons co-culture
0.95
In vivo
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0.00
In silico
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0.00
Genetic association
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0.00
Ex vivo
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0.00
Animal model
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0.00
Diet/model
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0.00
Клиника (11 полей)