4.7 Article

Single-cell RNA sequencing deconvolutes the in vivo heterogeneity of human bone marrow-derived mesenchymal stem cells

期刊

INTERNATIONAL JOURNAL OF BIOLOGICAL SCIENCES
卷 17, 期 15, 页码 4192-4206

出版社

IVYSPRING INT PUBL
DOI: 10.7150/ijbs.61950

关键词

single-cell RNA sequencing (scRNA-seq); mesenchymal stem cell (MSC); bone marrow; osteogenesis; chondrogenesis; adipogenesis

资金

  1. National Institutes of Health [R01AR069055, U19AG055373, P20GM109036, R01AG061917]
  2. Edward G. Schlieder Endowment
  3. Tulane University
  4. National Natural Science Foundation of China [81902277]
  5. National Key R&D Program of China [2017YFC1001100]
  6. China Oceanwide Holding Group Project Fund [143010100]
  7. Natural Science Foundation of Hunan Province [S2019JJQNJJ2093]
  8. Special Funding for the Construction of Innovative Provinces in Hunan [2019SK2141]
  9. Hunan Womes Research Association [18ZDB03]
  10. Changsha Science and Technology project [kq1907153]
  11. Central South University [164990007, 2018zzts886]
  12. Xiangya Clinical Big Data Project [xyyydsj9]

向作者/读者索取更多资源

This study utilized single-cell RNA sequencing to identify distinct subpopulations of BM-MSCs in humans, shedding light on their cellular heterogeneity and roles in maintaining bone homeostasis, as well as potential novel markers for BM-MSC purification.
Bone marrow-derived mesenchymal stem cells (BM-MSCs) are multipotent stromal cells that have a critical role in the maintenance of skeletal tissues such as bone, cartilage, and the fat in bone marrow. In addition to providing microenvironmental support for hematopoietic processes, BM-MSCs can differentiate into various mesodermal lineages including osteoblast/osteocyte, chondrocyte, and adipocyte that are crucial for bone metabolism. While BM-MSCs have high cell-to-cell heterogeneity in gene expression, the cell subtypes that contribute to this heterogeneity in vivo in humans have not been characterized. To investigate the transcriptional diversity of BM-MSCs, we applied single-cell RNA sequencing (scRNA-seq) on freshly isolated CD271(+) BM-derived mononuclear cells (BM-MNCs) from two human subjects. We successfully identified LEPR(hi)CD45(low) BM-MSCs within the CD271(+) BM-MNC population, and further codified the BM-MSCs into distinct subpopulations corresponding to the osteogenic, chondrogenic, and adipogenic differentiation trajectories, as well as terminal-stage quiescent cells. Biological functional annotations of the transcriptomes suggest that osteoblast precursors induce angiogenesis coupled with osteogenesis, and chondrocyte precursors have the potential to differentiate into myocytes. We also discovered transcripts for several clusters of differentiation (CD) markers that were either highly expressed (e.g., CD167b, CD91, CD130 and CD118) or absent (e.g., CD74, CD217, CD148 and CD68) in BM-MSCs, representing potential novel markers for human BM-MSC purification. This study is the first systematic in vivo dissection of human BM-MSCs cell subtypes at the single-cell resolution, revealing an insight into the extent of their cellular heterogeneity and roles in maintaining bone homeostasis.

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