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Multimodal cell atlas of the ageing human skeletal muscle

Author

Listed:
  • Yiwei Lai

    (BGI Research
    BGI Research)

  • Ignacio Ramírez-Pardo

    (Universitat Pompeu Fabra (UPF)
    San Diego Institute of Science)

  • Joan Isern

    (San Diego Institute of Science)

  • Juan An

    (BGI Research
    BGI Research
    Chinese Academy of Sciences
    University of Science and Technology of China)

  • Eusebio Perdiguero

    (Universitat Pompeu Fabra (UPF)
    San Diego Institute of Science)

  • Antonio L. Serrano

    (Universitat Pompeu Fabra (UPF)
    San Diego Institute of Science)

  • Jinxiu Li

    (BGI Research
    BGI Research
    University of Chinese Academy of Sciences)

  • Esther García-Domínguez

    (University of Valencia and CIBERFES, Fundación Investigación Hospital Clínico Universitario/INCLIVA)

  • Jessica Segalés

    (Universitat Pompeu Fabra (UPF))

  • Pengcheng Guo

    (BGI Research
    BGI Research
    Jilin University)

  • Vera Lukesova

    (Universitat Pompeu Fabra (UPF))

  • Eva Andrés

    (Universitat Pompeu Fabra (UPF))

  • Jing Zuo

    (BGI Research
    BGI Research)

  • Yue Yuan

    (BGI Research
    BGI Research)

  • Chuanyu Liu

    (BGI Research
    BGI Research)

  • José Viña

    (University of Valencia and CIBERFES, Fundación Investigación Hospital Clínico Universitario/INCLIVA)

  • Julio Doménech-Fernández

    (Hospital Arnau de Vilanova y Hospital de Liria and Health Care Department Arnau-Lliria
    Clinica Universidad de Navarra)

  • Mari Carmen Gómez-Cabrera

    (University of Valencia and CIBERFES, Fundación Investigación Hospital Clínico Universitario/INCLIVA)

  • Yancheng Song

    (The First Affiliated Hospital of Guangdong Pharmaceutical University)

  • Longqi Liu

    (BGI Research
    BGI Research
    University of Chinese Academy of Sciences)

  • Xun Xu

    (BGI Research
    BGI Research
    University of Chinese Academy of Sciences)

  • Pura Muñoz-Cánoves

    (Universitat Pompeu Fabra (UPF)
    San Diego Institute of Science
    ICREA)

  • Miguel A. Esteban

    (BGI Research
    BGI Research
    Chinese Academy of Sciences
    Jilin University)

Abstract

Muscle atrophy and functional decline (sarcopenia) are common manifestations of frailty and are critical contributors to morbidity and mortality in older people1. Deciphering the molecular mechanisms underlying sarcopenia has major implications for understanding human ageing2. Yet, progress has been slow, partly due to the difficulties of characterizing skeletal muscle niche heterogeneity (whereby myofibres are the most abundant) and obtaining well-characterized human samples3,4. Here we generate a single-cell/single-nucleus transcriptomic and chromatin accessibility map of human limb skeletal muscles encompassing over 387,000 cells/nuclei from individuals aged 15 to 99 years with distinct fitness and frailty levels. We describe how cell populations change during ageing, including the emergence of new populations in older people, and the cell-specific and multicellular network features (at the transcriptomic and epigenetic levels) associated with these changes. On the basis of cross-comparison with genetic data, we also identify key elements of chromatin architecture that mark susceptibility to sarcopenia. Our study provides a basis for identifying targets in the skeletal muscle that are amenable to medical, pharmacological and lifestyle interventions in late life.

Suggested Citation

  • Yiwei Lai & Ignacio Ramírez-Pardo & Joan Isern & Juan An & Eusebio Perdiguero & Antonio L. Serrano & Jinxiu Li & Esther García-Domínguez & Jessica Segalés & Pengcheng Guo & Vera Lukesova & Eva Andrés , 2024. "Multimodal cell atlas of the ageing human skeletal muscle," Nature, Nature, vol. 629(8010), pages 154-164, May.
  • Handle: RePEc:nat:nature:v:629:y:2024:i:8010:d:10.1038_s41586-024-07348-6
    DOI: 10.1038/s41586-024-07348-6
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