4.6 Article

Quiescence, Stemness and Adipogenic Differentiation Capacity in Human DLK1-/CD34+/CD24+ Adipose Stem/Progenitor Cells

期刊

CELLS
卷 10, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/cells10020214

关键词

ex vivo; human adipose stem; progenitor cells; quiescence; senescence; stemness; proliferation; adipogenesis

资金

  1. European Union [847681-ARDRE-H2020-MSCA-COFUND-2018]
  2. EUREGIO Environment Food and Health - European Region Tyrol-South-Tyrol-Trentino
  3. University of Innsbruck
  4. Forderungsbeitrage Aktion D. Swarovski KG 2017

向作者/读者索取更多资源

This study reveals that DLK1(-)/CD34(+) ASCs in human subcutaneous white adipose tissue exist in a quiescent state, express high levels of somatic stemness factors and the early adipogenic transcription factor C/EBP beta, but senescence and pluripotency markers are barely detectable. CD24 is shown to be necessary for proper ASC proliferation and adipogenesis, and DLK1(-)/CD34(+)/CD24(+) cells exhibit higher stemness and lower adipogenic capacity compared to DLK1(-)/CD34(+)/CD24(-) subpopulations.
We explore the status of quiescence, stemness and adipogenic differentiation capacity in adipose stem/progenitor cells (ASCs) ex vivo, immediately after isolation from human subcutaneous white adipose tissue, by sorting the stromal vascular fraction into cell-surface DLK1(+)/CD34(-), DLK1(+)/CD34(dim) and DLK1(-)/CD34(+) cells. We demonstrate that DLK1(-)/CD34(+) cells, the only population exhibiting proliferative and adipogenic capacity, express ex vivo the bonafide quiescence markers p21(Cip1), p27(Kip1) and p57(Kip2) but neither proliferation markers nor the senescence marker p16(Ink4a). The pluripotency markers NANOG, SOX2 and OCT4 are barely detectable in ex vivo ASCs while the somatic stemness factors, c-MYC and KLF4 and the early adipogenic factor C/EBP beta are highly expressed. Further sorting of ASCs into DLK1(-)/CD34(+)/CD24(-) and DLK1(-)/CD34(+)/CD24(+) fractions shows that KLF4 and c-MYC are higher expressed in DLK1(-)/CD34(+)/CD24(+) cells correlating with higher colony formation capacity and considerably lower adipogenic activity. Proliferation capacity is similar in both populations. Next, we show that ASCs routinely isolated by plastic-adherence are DLK1(-)/CD34(+)/CD24(+). Intriguingly, CD24 knock-down in these cells reduces proliferation and adipogenesis. In conclusion, DLK1(-)/CD34(+) ASCs in human sWAT exist in a quiescent state, express high levels of somatic stemness factors and the early adipogenic transcription factor C/EBP beta but senescence and pluripotency markers are barely detectable. Moreover, our data indicate that CD24 is necessary for adequate ASC proliferation and adipogenesis and that stemness is higher and adipogenic capacity lower in DLK1(-)/CD34(+)/CD24(+) relative to DLK1(-)/CD34(+)/CD24(-) subpopulations.

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