🧬 BDNF Extraction Viewer

Извлечено: 997 / 997 (100.0%) Средняя confidence: 0.13
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Microbiome-Metabolomics Insights into the Brain-Gut Homeostasis of d-gal Induced Aging Mice To Reveal the Antiaging Effects of Lactoferrin and Its Digesta.

PMID: 41431112 · DOI: 10.1021/acs.jafc.5c11706 · Journal of agricultural and food chemistry, 2026 · Mengqi Wang, Shuangjie Qin, Caiwen Wu, Hongjuan Li, Hongbo Li, Jinghua Yu
📄 Abstract

Lactoferrin (LF) plays a positive role in attenuating aging. In this study, LF obtained using different processing methods (freeze-dried: F and spray-dried: S) and its gastrointestinal digesta (XF and XS) were supplemented in d-gal-induced mice to explore their antiaging effects. The results showed that LF and its digesta (LFs) effectively ameliorated cognitive decline. Mechanistically, LFs prevented neuronal and synaptic injury by restoring redox balance, inhibiting the activation of microglia and astrocytes, and activating the cAMP-response element binding protein (CREB)/brain-derived neurotrophic factor (BDNF) pathway. Additionally, LFs increased the tight junction proteins and mucin-2, regulated the gut microbiota, particularly enriching bacteria in Firmicutes and restoring the Firmicutes/Bacteroidota ratio to maintain intestinal homeostasis. Meanwhile, LFs altered phospholipids (PLs) and other metabolites involved in glycerophospholipid metabolism such as arachidonic acid. Correlation analysis showed a significant association among metabolites, microbiota, and behaviors. These results indicated that LF and especially its digesta exert antiaging effects through multitarget pathways involving neuronal protection, neuroinflammation suppression, and microbiota-gut-brain axis regulation.

Confidence: 0.18 · 9 полей извлечено
Идентификация (6 полей)
Target
Flavin-containing monooxygenase 5
0.90
Alt. target
FMO5
0.90
Protein family
Flavin-containing monooxygenase
0.90
Functional class
Oxidoreductase
0.80
Subcellular loc.
0.00
Isoforms (metab/obesity)
0.00
Механизм действия (21 полей)
Mechanism
0.00
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)
0.00
Upstream (physiol)
0.00
Downstream (biochem)
0.00
Downstream (physiol)
0.00
PTMs
0.00
Экспрессия (8 полей)
Tissue expression
0.00
In vitro
0.00
In vivo
d-gal induced aging mice supplemented with lactoferrin and its digesta
0.95
In silico
0.00
Genetic association
0.00
Ex vivo
0.00
Animal model
d-gal induced aging mice
0.95
Diet/model
d-galactose-induced aging model
0.90
Клиника (11 полей)
Drug
Lactoferrin
0.95
Indication
Antiaging, cognitive decline
0.90
Patient subgroups
0.00
Safety concerns
0.00
Off-target
0.00
Trial stage
0.00
Pharma competitors
0.00
AE severity
0.00
MOA weight loss
0.00
Endpoints
0.00
Approved
0.00