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Извлечено: 997 / 997 (100.0%) Средняя confidence: 0.13
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T7 peptide-engineered liposomal Irisin mitigates PND progression through AMPK/PGC-1α signaling: multi-omic evidence of metabolic and epigenetic modulation.

PMID: 41689005 · DOI: 10.1186/s12951-026-04109-7 · Journal of nanobiotechnology, 2026 · Huisheng Wu, Wenlong Dai, Jun Cheng, Aowen Li, Yue Peng, Peipei Guo, Zhaohong Kong
📄 Abstract

This study explored the molecular mechanisms by which T7 peptide-modified liposomal irisin (T7@Lipo@Irisin) alleviates perioperative neurocognitive disorders (PND) via regulation of the AMPK/PGC-1α metabolic pathway. T7@Lipo@Irisin nanoparticles were prepared by thin-film hydration and ultrasonic dispersion and showed favorable physicochemical performance, with an encapsulation efficiency of approximately 85%. Serum analysis of healthy donors (n = 10) and PND patients (n = 6) showed higher IL-6 and TNF-α and lower brain-derived neurotrophic factor (BDNF) in PND. In vitro, T7@Lipo@Irisin restored mitochondrial membrane potential, reduced reactive oxygen species (ROS) accumulation, enhanced Neuro-2a hippocampal neuron viability, and activated the AMPK/PGC-1α axis under oxidative stress. In a PND mouse model, it improved Garcia neurological scores, preserved neuronal morphology, and decreased apoptosis. Multi-omic integration of scATAC-seq/scRNA-seq and TMT-based proteomics demonstrated enhanced neuro-glial crosstalk, epigenetic activation of metabolic/antioxidant genes (e.g., Sirt1, Nfe2l2), and upregulated pathways (mitochondrial function, NAD-dependent metabolism, synaptic homeostasis). Proteomics confirmed upregulation of SIRT1, NDUFS2, and BDNF, forming a network linked to energy metabolism and neural repair. Collectively, T7@Lipo@Irisin mitigates PND by activating AMPK/PGC-1α to enhance mitochondrial function and stabilize the neuro-microenvironment.

Confidence: 0.32 · 16 полей извлечено
Идентификация (6 полей)
Target
Irisin
0.95
Alt. target
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0.00
Protein family
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0.00
Functional class
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0.00
Subcellular loc.
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0.00
Isoforms (metab/obesity)
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0.00
Механизм действия (21 полей)
Mechanism
Activates AMPK/PGC-1α signaling pathway
0.95
Mutations (obesity/lean)
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0.00
Activity (obesity)
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0.00
Activity temporal
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0.00
Energy balance
Enhances mitochondrial function and energy metabolism via AMPK/PGC-1α
0.90
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
Reduces inflammation (lower IL-6 and TNF-α in PND patients)
0.85
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
Decreases apoptosis in neurons
0.90
Adipocyte fibrosis
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0.00
Upstream (biochem)
AMPK
0.90
Upstream (physiol)
—
0.00
Downstream (biochem)
PGC-1α, SIRT1, NDUFS2, BDNF, Nfe2l2
0.90
Downstream (physiol)
Improved mitochondrial function, reduced ROS, enhanced neuronal viability
0.85
PTMs
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0.00
Экспрессия (8 полей)
Tissue expression
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0.00
In vitro
Neuro-2a hippocampal neuron viability assay under oxidative stress
0.90
In vivo
PND mouse model: Garcia neurological scores, neuronal morphology, apoptosis
0.90
In silico
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0.00
Genetic association
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0.00
Ex vivo
Serum analysis of healthy donors (n=10) and PND patients (n=6): IL-6, TNF-α, BDNF
0.90
Animal model
PND mouse model
0.90
Diet/model
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0.00
Клиника (11 полей)
Drug
T7 peptide-modified liposomal irisin
0.95
Indication
perioperative neurocognitive disorders
0.95
Patient subgroups
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0.00
Safety concerns
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0.00
Off-target
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0.00
Trial stage
preclinical
0.90
Pharma competitors
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0.00
AE severity
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0.00
MOA weight loss
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0.00
Endpoints
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0.00
Approved
False
0.90