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Multi-omics profiling reveals systemic rejuvenation of the aged kidney through senolytic therapy
Shilin Chen1,2,3, Chenglin Zhang4, Pengxu Cang5
1Department of Endocrinology, Affiliated Nanshan Hospital of Shenzhen University, Shenzhen, China.
Abstract:
Cellular senescence is a key driver of kidney aging, leading to functional decline and increased susceptibility to chronic kidney disease. While the senolytic combination of dasatinib and quercetin (D + Q) has shown promise in mitigating age-related pathologies, its long-term effects and underlying multi-level systemic mechanisms in the aging kidney remain poorly defined. Here, we systematically evaluated the long-term effects of D + Q in naturally aged mice using multi-omics approaches. We show that D + Q treatment reduces senescence markers (p16, p21, SA-β-gal), restores the anti-aging protein Klotho, and attenuates renal fibrosis and inflammation. Proteomic profiling reveals that D + Q enhances apoptotic clearance of senescent cells and promotes proliferative and regenerative pathways. Moreover, D + Q reactivates PPARα signaling, improves fatty acid oxidation, and reduces lipid accumulation in aged kidneys. Single-cell transcriptomics further demonstrates that D + Q reverses transcriptional aging signatures across multiple renal cell types and remodels cell-type-specific pathways associated with metabolism, inflammation, and fibrosis. Cell-cell communication analysis reveals that D + Q normalizes the hyperconnected intercellular network in aged kidneys, particularly by modulating inflammation-related signaling. Our findings offer a comprehensive, systems-level understanding of how senolytic therapy restores renal homeostasis, emphasizing its potential as a multifaceted intervention to combat kidney aging.
Insights
Senolytic therapy with dasatinib and quercetin (D+Q) reverses kidney aging markers, reduces fibrosis and inflammation, and restores kidney function in aged mice. This study reveals D+Q
Area of Science:
- Gerontology
- Nephrology
- Molecular Biology
Background:
- Cellular senescence drives kidney aging and chronic kidney disease susceptibility.
- Long-term effects of senolytic dasatinib and quercetin (D+Q) on aging kidneys are not well understood.
- Multi-level systemic mechanisms of D+Q in kidney aging require systematic evaluation.
Purpose of the Study:
- To systematically evaluate the long-term effects of D+Q in naturally aged mice.
- To elucidate the underlying multi-level systemic mechanisms of D+Q action in the aging kidney.
Main Methods:
- Long-term administration of D+Q in naturally aged mice.
- Multi-omics approaches including proteomics and single-cell transcriptomics.
- Analysis of senescence markers, protein expression, cellular pathways, and cell-cell communication.
Main Results:
- D+Q reduced senescence markers (p16, p21, SA-β-gal), restored Klotho, and attenuated renal fibrosis and inflammation.
- Proteomics revealed enhanced senescent cell clearance and promotion of regenerative pathways.
- Single-cell transcriptomics showed reversal of transcriptional aging signatures and normalized intercellular communication networks.
Conclusions:
- D+Q therapy effectively mitigates kidney aging by reducing senescence, fibrosis, and inflammation.
- D+Q reactivates PPARα signaling, improves fatty acid oxidation, and reduces lipid accumulation.
- Senolytic intervention offers a multifaceted approach to restore renal homeostasis and combat kidney aging.
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