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Updated: Mar 1, 2026

Methods for Analyzing the Impacts of Natural Uranium on In Vitro Osteoclastogenesis
Published on: January 30, 2018
Uranium exposure induces osteopenia via mitochondrial dysfunction-driven senescence in bone marrow mesenchymal stem
Lei Sheng1, Yinxuan Suo1, Sheng Hong2
1Department of Orthopedics, The Second Affiliated Hospital of Soochow University, Suzhou, Jiangsu 215004, China.
None:
Uranium primarily accumulates in the bone over the long-time exposure, and studies in both humans and animal models have shown that it disrupts bone metabolism and function. Bone marrow mesenchymal stem cells (BMSCs) play crucial roles in bone homeostasis and can differentiate into osteoblasts, chondrocytes and adipocytes. However, the effect of uranium on BMSCs remains obscure. Here, we showed that long-term accumulation of uranium in the femur caused loss of bone mass with reduction of bone formation and increased adipogenesis and osteoclast activity in mice as determined by micro-CT analysis and histological staining. RNA sequencing analysis revealed that oxidative phosphorylation, mitochondrial function, inflammation and fat metabolism related genes were dysregulated in BMSCs treated with uranium. Similarly, immunofluorescence staining and TEM exhibited mitochondrial and oxidative phosphorylation impairment especially mitochondrial Complex I dysfunction. Of note, the mitochondrial dysfunction resulted in SASP secretion and senescence in BMSCs which can inhibit bone formation and enhance adipogenesis and osteoclast activity. Administration of nicotinamide mononucleotide (NMN) as NAD⁺ precursor partially rescued uranium induced senescence in BMSCs through enhancing mitochondrial complex I activity and mitochondrial function. Compared to uranium treated mice, declining uranium concentration in bone with a potent chelating agent TAM-2LI-MAM2 (LNN), bone mass and number of trabecular bone were recovered with enhanced bone formation and reduction of adipogenesis. Taken together, our results demonstrate that long-term accumulation of uranium in bone resulted in osteopenia with reduction of bone formation and increased adipogenesis and osteoclast activity through mitochondrial dysfunction-driven senescence.
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