Modulation of fracture healing by the transient accumulation of senescent cells

Abstract Senescent cells have detrimental effects across tissues with aging but may have beneficial effects on tissue repair, specifically on skin wound healing. However, the potential role of senescent cells in fracture healing has not been defined. Here, we performed anin silicoanalysis of public mRNAseq data and found that senescence and senescence-associated secretory phenotype (SASP) markers increased during fracture healing. We next directly established that the expression of senescence biomarkers increased markedly during murine fracture healing. We also identified a subset of cells in the fracture callus that displayed hallmarks of senescence, including distension of satellite heterochromatin and telomeric DNA damage. Then, using a genetic mouse model (p16LUC) containing apl6Ink4a-dnven luciferase reporter, we demonstrated transientin vivosenescent cell accumulation during callus formation. Finally, we intermittently treated young adult mice following fracture with drugs that selectively eliminate senescent cells (“senolytics”, Dasatinib plus Quercetin), and showed that this regimen both decreased senescence and SASP markers in the fracture callus and significantly accelerated the time course of fracture healing. Our findings thus demonstrate that senescent cells accumulate transiently in the murine fracture callus and, in contrast to the skin, their clearance does not impair but rather may improve fracture healing..

Medienart:

Preprint

Erscheinungsjahr:

2023

Erschienen:

2023

Enthalten in:

bioRxiv.org - (2023) vom: 03. Nov. Zur Gesamtaufnahme - year:2023

Sprache:

Englisch

Beteiligte Personen:

Saul, Dominik [VerfasserIn]
Monroe, David G. [VerfasserIn]
Rowsey, Jennifer L. [VerfasserIn]
Kosinsky, Robyn L. [VerfasserIn]
Vos, Stephanie J. [VerfasserIn]
Doolittle, Madison L. [VerfasserIn]
Farr, Joshua N. [VerfasserIn]
Khosla, Sundeep [VerfasserIn]

Links:

Volltext [lizenzpflichtig]
Volltext [kostenfrei]

Themen:

570
Biology

doi:

10.1101/2021.05.18.444618

funding:

Förderinstitution / Projekttitel:

PPN (Katalog-ID):

XBI020602847