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Senolytics ameliorate cognitive decline in D-galactose-induced aging mice by inhibiting astrocytic cholesterol

Lulin Nie1, Wei Wu2, Chenyuan Hu3

  • 1Department of Anesthesiology, The Tenth Affiliated Hospital of Southern Medical University (Dongguan People's Hospital), Dongguan 523000, China; Shenzhen Key Laboratory of Modern Toxicology, Shenzhen Medical Key Discipline of Health Toxicology (2020-2024), Shenzhen Center for Disease Control and Prevention, Shenzhen 518055, China.

Insights

Senolytic treatments, like dasatinib and quercetin (D+Q), improve brain aging and cognition by reducing cellular senescence. This study reveals they work by inhibiting cholesterol synthesis in astrocytes, offering a new therapeutic target.

Area of Science:

  • Neuroscience
  • Gerontology
  • Biochemistry

Background:

  • Cellular senescence contributes to brain aging and cognitive decline.
  • Senolytic treatments show promise for cognitive enhancement, but mechanisms are unclear.

Purpose of the Study:

  • To elucidate the mechanism by which senolytics improve cognitive function.
  • To investigate the role of cholesterol biosynthesis in senolytic efficacy.

Main Methods:

  • Utilized a D-galactose-induced accelerated aging murine model.
  • Administered dasatinib and quercetin (D+Q) senolytics.
  • Performed multi-omics analysis and in vitro astrocyte studies, including Hsd17b7 manipulation.

Main Results:

  • D+Q treatment improved cognitive performance and reduced senescence in aged mice.
  • Senolytics downregulated hippocampal cholesterol biosynthesis, specifically in astrocytes.
  • Inhibition of astrocytic cholesterol synthesis reduced lipid accumulation and neuroinflammation.
  • Activating cholesterol synthesis reversed senolytic benefits, confirming a causal link.

Conclusions:

  • Senolytics enhance cognitive function by suppressing cholesterol biosynthesis in astrocytes.
  • This mechanism highlights senolytics as modulators of brain lipid metabolism.
  • Targeting astrocytic cholesterol synthesis presents a novel therapeutic strategy for age-related cognitive decline.

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