Human in vitro skeletal muscle models recapitulate age-related atrophy and contractile decline induced by aged serum

Nature作者:Akitoshi Nagai2026年8月12日正文已收录本站
  • Article
  • Open access
  • Published:
  • Hisanori Tokuda1,
  • Yoshihisa Kaneda1,
  • Takayuki Izumo1,
  • Yoshihiro Nakao1,
  • Hirokazu Akiyama2,
  • Hiroyuki Honda2 &
  • …
  • Kazunori Shimizu2 

npj Aging (2026) Cite this article

We are providing an unedited version of this manuscript to give early access to its findings. Before final publication, the manuscript will undergo further editing. Please note there may be errors present which affect the content, and all legal disclaimers apply.

Abstract

Age-related skeletal muscle atrophy and the accompanying decline in muscle strength represent major societal challenges, highlighting the urgent need to identify bioactive compounds that can prevent such deterioration. Although in vitro muscle models are valuable tools for evaluating the effects of candidate compounds, a human in vitro system that faithfully reproduces age-related muscle atrophy and functional loss has not yet been established. This study established a human in vitro aged muscle model and examined whether quercetin, a dietary polyphenol, could alleviate atrophic and functional effects induced by aged human serum. Primary human myoblasts were cultured and treated with serum from healthy young or older individuals for 48 h. Exposure to aged serum reduced the MF20-positive cell area in the 2D model and diminished contractile force in the 3D model. Further analyses revealed that aged serum treatment upregulated muscle-specific E3 ubiquitin ligases, mainly through activation of NF-κB signaling. Quercetin also suppressed NF-κB activation and mitigated aged serum-induced muscle atrophy and contractile dysfunction. Together, these findings demonstrate the effectiveness of quercetin and confirm the establishment of a human in vitro model of age-related muscle atrophy.

Subjects

Acknowledgements

The authors thank Tomohiro Rogi and Daisuke Takemoto for their valuable advice. The authors also sincerely thank Makoto Suematsu for insightful suggestions and Kazuki Fujimoto for guidance on RNA-seq data analyses. This research was supported in part by research funding from Suntory Wellness Ltd. to K.S.

Author information

Authors and Affiliations

  1. Institute for Science of Life, Suntory Wellness Ltd., Kyoto, Japan

    Akitoshi Nagai, Hisanori Tokuda, Yoshihisa Kaneda, Takayuki Izumo & Yoshihiro Nakao

  2. Department of Biomolecular Engineering, Graduate School of Engineering, Nagoya University, Nagoya, Japan

    Akitoshi Nagai, Hirokazu Akiyama, Hiroyuki Honda & Kazunori Shimizu

Authors

  1. Akitoshi Nagai
  2. Hisanori Tokuda
  3. Yoshihisa Kaneda
  4. Takayuki Izumo
  5. Yoshihiro Nakao
  6. Hirokazu Akiyama
  7. Hiroyuki Honda
  8. Kazunori Shimizu

Corresponding author

Correspondence to Kazunori Shimizu.

Ethics declarations

Competing interests

Five authors (i.e., A.N., H.T., Y.K., T.I., and Y.N.) are employees of Suntory Wellness Ltd. H.A., H.H., and K.S. declare no conflicts of interest.

Additional information

Publisher’s note Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.

Supplementary information

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Nagai, A., Tokuda, H., Kaneda, Y. et al. Human in vitro skeletal muscle models recapitulate age-related atrophy and contractile decline induced by aged serum. npj Aging (2026). https://doi.org/10.1038/s41514-026-00472-9

Download citation

  • Received:

  • Accepted:

  • Published:

  • DOI: https://doi.org/10.1038/s41514-026-00472-9