AI Article Synopsis

  • The human endometrium experiences about 480 cycles of growth and regeneration throughout reproductive life, relying on somatic stem cells (SSC) for this process.
  • Researchers hypothesize that specific endometrial side population (SP) cells act as somatic stem cells, isolating and characterizing these cells from both stromal and epithelial areas using various techniques.
  • The study demonstrated that endometrial SP cells possess the ability to differentiate into other cell types and can regenerate endometrial tissue when injected into mice, indicating their potential role in endometrial repair.

Article Abstract

During reproductive life, the human endometrium undergoes around 480 cycles of growth, breakdown and regeneration should pregnancy not be achieved. This outstanding regenerative capacity is the basis for women's cycling and its dysfunction may be involved in the etiology of pathological disorders. Therefore, the human endometrial tissue must rely on a remarkable endometrial somatic stem cells (SSC) population. Here we explore the hypothesis that human endometrial side population (SP) cells correspond to somatic stem cells. We isolated, identified and characterized the SP corresponding to the stromal and epithelial compartments using endometrial SP genes signature, immunophenotyping and characteristic telomerase pattern. We analyzed the clonogenic activity of SP cells under hypoxic conditions and the differentiation capacity in vitro to adipogenic and osteogenic lineages. Finally, we demonstrated the functional capability of endometrial SP to develop human endometrium after subcutaneous injection in NOD-SCID mice. Briefly, SP cells of human endometrium from epithelial and stromal compartments display genotypic, phenotypic and functional features of SSC.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2891991PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0010964PLOS

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