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. 2024 Dec 12;187(25):7314-7334.e21.
doi: 10.1016/j.cell.2024.09.021. Epub 2024 Oct 4.

Identifying specific functional roles for senescence across cell types

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Free article

Identifying specific functional roles for senescence across cell types

Huan Zhao et al. Cell. .
Free article

Abstract

Cellular senescence plays critical roles in aging, regeneration, and disease; yet, the ability to discern its contributions across various cell types to these biological processes remains limited. In this study, we generated an in vivo genetic toolbox consisting of three p16Ink4a-related intersectional genetic systems, enabling pulse-chase tracing (Sn-pTracer), Cre-based tracing and ablation (Sn-cTracer), and gene manipulation combined with tracing (Sn-gTracer) of defined p16Ink4a+ cell types. Using liver injury and repair as an example, we found that macrophages and endothelial cells (ECs) represent distinct senescent cell populations with different fates and functions during liver fibrosis and repair. Notably, clearance of p16Ink4a+ macrophages significantly mitigates hepatocellular damage, whereas eliminating p16Ink4a+ ECs aggravates liver injury. Additionally, targeted reprogramming of p16Ink4a+ ECs through Kdr overexpression markedly reduces liver fibrosis. This study illuminates the functional diversity of p16Ink4a+ cells and offers insights for developing cell-type-specific senolytic therapies in the future.

Keywords: Cdkn2a; aging; cellular senescence; dual recombinases; endothelial cell; lineage tracing; liver fibrosis; liver repair; macrophage; p16(Ink4a).

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Conflict of interest statement

Declaration of interests The authors declare no competing interests.

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