4.8 Article

In Situ Fixation Redefines Quiescence and Early Activation of Skeletal Muscle Stem Cells

期刊

CELL REPORTS
卷 21, 期 7, 页码 1982-1993

出版社

CELL PRESS
DOI: 10.1016/j.celrep.2017.10.080

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资金

  1. Association Francaise contre les Myopathies (AFM) via TRANSLAMUSCLE [19507]
  2. Labex REVIVE [ANR-10-LABX-73]
  3. Fondation pour la Recherche Medicale (FRM) [FDT20130928236, DEQ20130326526]
  4. Agence Nationale pour la Recherche (ANR) [ANR 11 BSV2 017 02]
  5. Bone-muscle-repair [ANR-13-BSV1-0011-02]
  6. BMP-myomass [ANR-12-BSV1-0038-04]
  7. Satnet [ANR-15-CE13-0011-01]
  8. Crestnetmetabo [ANR-15-CE13-0012-02]
  9. RHU CARMMA [ANR-15-RHUS-0003]
  10. Danish Diabetes Academy - Novo Nordisk Foundation [1077471001]
  11. Agence Nationale de la Recherche (ANR) [ANR-15-CE13-0012, ANR-13-BSV1-0011] Funding Source: Agence Nationale de la Recherche (ANR)
  12. NNF Center for Basic Metabolic Research [Barres Group] Funding Source: researchfish

向作者/读者索取更多资源

State of the art techniques have been developed to isolate and analyze cells from various tissues, aiming to capture their in vivo state. However, the majority of cell isolation protocols involve lengthy mechanical and enzymatic dissociation steps followed by flow cytometry, exposing cells to stress and disrupting their physiological niche. Focusing on adult skeletal muscle stem cells, we have developed a protocol that circumvents the impact of isolation procedures and captures cells in their native quiescent state. We show that current isolation protocols induce major transcriptional changes accompanied by specific histone modifications while having negligible effects on DNA methylation. In addition to proposing a protocol to avoid isolation-induced artifacts, our study reveals previously undetected quiescence and early activation genes of potential biological interest.

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