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Silymarin attenuates senescence-exacerbated amyloidogenesis, neuroinflammation, and oxidative stress in lipopolysaccharide-induced memory impairment in aging mice

delete2026-07-13
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PRE
AI
B
Bienose S. Chijioke
B
Benneth Ben‐Azu *
D
Daniel T. Esuku
M
Miracle K. Nekabari
S
Saviour G. Usin
F
Faith B. Friday
P
Prosper Iwhiwhu
A
Ayereoghene S. Moses
E
Emmanuel O. Chidebe
S
Samuel Nwawuba
DOI:10.1007/s10522-026-10465-6delete
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Abstract

Abstract

En 中文
Accelerated cellular perturbations such as cellular senescence, neuroinflammation and oxidative stress are hallmarks of Alzheimer’s disease, a neurodegenerative disease associated with memory decline. However, the senolytic effects of silymarin, a flavonolignan with known antioxidant and anti-inflammatory properties, on memory decline remain unknown. Hence, we investigated the effect of silymarin on doxycycline-mediated senescence and exacerbated neuroinflammation in lipopolysaccharide-induced memory-impaired mice. Five groups of adult Swiss female mice (n = 10) were exposed to doxycycline-induced accelerated senescence for 21 days, followed by lipopolysaccharide-induced neuroinflammation from days 15–21, and silymarin (50 and 100 mg/kg, p.o.) or donepezil (1 mg/kg, p.o.) treatments. Spatial and non-spatial memory, and social and motor function tests in mice were assessed. Biochemical assays were performed on the prefrontal cortex and hippocampus to assess senescence-associated secretory phenotypes (SASPs), including SA-β-galactosidase activity, cytokines (TNF-α, IL-6, IL-10), amyloid-beta levels, acetylcholinesterase activity, oxidative stress markers, and molybdoenzymes. Doxycycline-lipopolysaccharide-exacerbated memory impairments were reversed by silymarin, accompanied by reduced molybdoenzymes, malondialdehyde, nitrite, and elevated antioxidants (glutathione, superoxide-dismutase, catalase) in the prefrontal cortex and hippocampus. Additionally, silymarin reverses doxycycline-exacerbated lipopolysaccharide-induced increases in IL-6 and TNF-α release and myeloperoxidase activity while also reducing IL-10 levels. Similar to donepezil, silymarin reduced heightened acetylcholinesterase activity associated with doxycycline-enhanced lipopolysaccharide-induced accumulation of cortical SA-β-galactosidase and amyloid-β levels, relative to the doxycycline-lipopolysaccharide group. These findings suggest that silymarin ameliorates doxycycline-lipopolysaccharide-exacerbated memory impairment and modulates senescence and neuroinflammation by reducing oxidative stress, SASP marker levels, and amyloid-beta concentrations in the prefrontal cortex and hippocampus of mouse brains.
Keywords:
Silymarin
Oxidative Stress
Neuroinflammation
Cellular senescence
Lipopolysaccharide
Neuroprotection

Journal

Biogerontology cover
Biogerontology
IF:
4.1
Papers:
1.7K
Citations:
3.5K

Organization

American University of Antigua cover
American University of Antigua
Scholars:
11
Papers: 11
Citations: 88
C
College of Health Sciences
Scholars:
753
Papers: 349
Citations: 0
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