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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.
Abstract:
Cellular senescence plays a crucial role in brain aging and the decline of cognitive abilities. Although senolytic treatments, particularly the combination of dasatinib and quercetin (D+Q), show potential for improving cognition, the specific mechanisms involved are not well understood. In this study, we present strong evidence that senolytics enhance cognitive function by modulating cholesterol biosynthesis in astrocytes. Using a murine model of accelerated aging (via D-galactose exposure), we show that administering D + Q results in significant improvements in cognitive performance and a decrease in cellular senescence. A comprehensive multi-omics analysis subsequently demonstrated that senolytics are especially effective at downregulating cholesterol biosynthesis in the hippocampus. Notably, this effect was localized to astrocytes, where senolytics significantly reduced intracellular lipid accumulation and subsequent neuroinflammation. Critically, pharmacological activation of cholesterol synthesis and genetic overexpression of Hsd17b7, a key enzyme in the cholesterol synthesis pathway, in astrocytes reversed the anti-senescence benefits of senolytics in vitro, establishing a causal link between cholesterol pathway inhibition and the therapeutic effects. Overall, our work identifies the suppression of astrocytic cholesterol biosynthesis as a fundamental mechanism of senolytic action, repositioning these compounds as modulators of brain lipid metabolism and highlighting a promising therapeutic axis for combating age-related cognitive decline.
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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