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Resveratrol counteracts bone loss via mitofilin-mediated osteogenic improvement of mesenchymal stem cells in senescence-accelerated mice
Yajie Lv, Yi Yang, Bing‐Dong Sui, Cheng‐Hu Hu, Pan Zhao, Li Liao, Jihua Chen, Liqiang Zhang, Tong-Tao Yang, Shaofeng Zhang, Yan Jin
Theranostics · 2018 · ▲ 122 citations
Mitochondrial dysfunction
Cellular senescence
Stem-cell exhaustion
Caloric restriction
Stem-cell therapy
Cell culture / in vitro
Mouse
In vitro
Abstract
Rational: Senescence(definition) of mesenchymal stem cells (MSCs) and the related functional decline of osteogenesis have emerged as the critical pathogenesis of osteoporosis in aging. Resveratrol (RESV), a small molecular compound that safely mimics the effects of dietary restriction, has been well documented to extend lifespan in lower organisms and improve health in aging rodents. However, whether RESV promotes function of senescent stem cells in alleviating age-related phenotypes remains largely unknown. Here, we intend to investigate whether RESV counteracts senescence-associated bone loss via osteogenic improvement of MSCs and the underlying mechanism. Methods: MSCs derived from bone marrow (BMMSCs) and the bone-specific, senescence-accelerated, osteoblastogenesis/osteogenesis-defective mice (the SAMP6 strain) were used as experimental models. In vivo application of RESV was performed at 100 mg/kg intraperitoneally once every other day for 2 months, and in vitro application of RESV was performed at 10 M. Bone mass, bone formation rates and osteogenic differentiation of BMMSCs were primarily evaluated. Metabolic statuses of BMMSCs and the mitochondrial activity, transcription and morphology were also examined. Mitofilin expression was assessed at both mRNA and protein levels, and short hairpin RNA (shRNA)-based gene knockdown was applied for mechanistic experiments. Results: Chronic intermittent application of RESV enhances bone formation and counteracts accelerated bone loss, with RESV improving osteogenic differentiation of senescent BMMSCs. Furthermore, in rescuing osteogenic decline under BMMSC senescence, RESV restores cellular metabolism through mitochondrial functional recovery via facilitating mitochondrial autonomous gene transcription. Molecularly, in alleviating senescence-associated mitochondrial disorders of BMMSCs, particularly the mitochondrial morphological alterations, RESV upregulates Mitofilin, also known as inner membrane protein of mitochondria (Immt) or Mic60, which is the core component of the mitochondrial contact site and cristae organizing system (MICOS). Moreover, Mitofilin is revealed to be indispensable for mitochondrial homeostasis and osteogenesis of BMMSCs, and that insufficiency of Mitofilin leads to BMMSC senescence and bone loss. More importantly, Mitofilin mediates resveratrol-induced mitochondrial and osteogenic improvements of BMMSCs in senescence. Conclusion: Our findings uncover osteogenic functional improvements of senescent MSCs as critical impacts in anti-osteoporotic practice of RESV, and unravel Mitofilin as a novel mechanism mediating RESV promotion on mitochondrial function in stem cell senescence.
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- 10.7150/thno.23620
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- 2026-06-23 MST
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APA
Lv, Y., Yang, Y., Sui, B., Hu, C., Zhao, P., Liao, L., Chen, J., Zhang, L., Yang, T., Zhang, S., & Jin, Y. (2018). Resveratrol counteracts bone loss via mitofilin-mediated osteogenic improvement of mesenchymal stem cells in senescence-accelerated mice. <em>Theranostics</em>. https://doi.org/10.7150/thno.23620
Vancouver
Lv Y, Yang Y, Sui B, Hu C, Zhao P, Liao L, et al. Resveratrol counteracts bone loss via mitofilin-mediated osteogenic improvement of mesenchymal stem cells in senescence-accelerated mice. Theranostics. 2018. doi:10.7150/thno.23620.
BibTeX
@article{yajie2018Resver,
title = {Resveratrol counteracts bone loss via mitofilin-mediated osteogenic improvement of mesenchymal stem cells in senescence-accelerated mice},
author = {Yajie Lv and Yi Yang and Bing‐Dong Sui and Cheng‐Hu Hu and Pan Zhao and Li Liao and Jihua Chen and Liqiang Zhang and Tong-Tao Yang and Shaofeng Zhang and Yan Jin},
journal = {Theranostics},
year = {2018},
doi = {10.7150/thno.23620},
}
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