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Updated: Feb 24, 2026

Techniques to Induce and Quantify Cellular Senescence
Published on: May 1, 2017
Targeting cellular senescence prevents age-related bone loss in mice
Joshua N Farr1, Ming Xu1, Megan M Weivoda1
1Robert and Arlene Kogod Center on Aging and Division of Endocrinology, Mayo Clinic College of Medicine, Rochester, Minnesota, USA.
Abstract:
Aging is associated with increased cellular senescence, which is hypothesized to drive the eventual development of multiple comorbidities. Here we investigate a role for senescent cells in age-related bone loss through multiple approaches. In particular, we used either genetic (i.e., the INK-ATTAC 'suicide' transgene encoding an inducible caspase 8 expressed specifically in senescent cells) or pharmacological (i.e., 'senolytic' compounds) means to eliminate senescent cells. We also inhibited the production of the proinflammatory secretome of senescent cells using a JAK inhibitor (JAKi). In aged (20- to 22-month-old) mice with established bone loss, activation of the INK-ATTAC caspase 8 in senescent cells or treatment with senolytics or the JAKi for 2-4 months resulted in higher bone mass and strength and better bone microarchitecture than in vehicle-treated mice. The beneficial effects of targeting senescent cells were due to lower bone resorption with either maintained (trabecular) or higher (cortical) bone formation as compared to vehicle-treated mice. In vitro studies demonstrated that senescent-cell conditioned medium impaired osteoblast mineralization and enhanced osteoclast-progenitor survival, leading to increased osteoclastogenesis. Collectively, these data establish a causal role for senescent cells in bone loss with aging, and demonstrate that targeting these cells has both anti-resorptive and anabolic effects on bone. Given that eliminating senescent cells and/or inhibiting their proinflammatory secretome also improves cardiovascular function, enhances insulin sensitivity, and reduces frailty, targeting this fundamental mechanism to prevent age-related bone loss suggests a novel treatment strategy not only for osteoporosis, but also for multiple age-related comorbidities.
Insights
Cellular senescence drives age-related bone loss. Eliminating senescent cells or their inflammatory secretome improved bone mass and strength in aged mice, suggesting a novel therapeutic strategy for osteoporosis.
Area of Science:
- Gerontology
- Cell Biology
- Bone Biology
Background:
- Aging increases cellular senescence, a state linked to age-related diseases.
- Cellular senescence is hypothesized to contribute to age-related bone loss and osteoporosis.
Purpose of the Study:
- To investigate the causal role of senescent cells in age-related bone loss.
- To evaluate the efficacy of targeting senescent cells for improving bone health in aging.
Main Methods:
- Used genetic (INK-ATTAC) and pharmacological (senolytics) methods to eliminate senescent cells in aged mice.
- Inhibited senescent cell secretome using a JAK inhibitor (JAKi).
- Assessed bone mass, strength, microarchitecture, and formation/resorption markers in treated vs. control mice.
Main Results:
- Eliminating senescent cells or inhibiting their secretome significantly increased bone mass, strength, and improved microarchitecture in aged mice.
- Targeting senescent cells reduced bone resorption and either maintained or increased bone formation.
- In vitro studies confirmed senescent cells impair osteoblast function and promote osteoclastogenesis.
Conclusions:
- Senescent cells play a causal role in age-related bone loss.
- Targeting senescent cells offers a dual therapeutic approach with anti-resorptive and anabolic effects on bone.
- This strategy presents a novel treatment for osteoporosis and potentially other age-related comorbidities.
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