AI Article Synopsis

  • Researchers isolated a new type of cells from human bone marrow, called Mesodermal Progenitor Cells (MPCs), which are distinct from traditional Mesenchymal Stromal Cells (MSCs) based on their unique characteristics.
  • MPCs are round with a thick core and adhere strongly to plastic, but they grow slowly and are negative for the cell proliferation marker Ki-67.
  • The study presents a detailed protocol for isolating and characterizing these MPCs through flow cytometry and suggests renaming them to "Mesangiogenic Progenitor Cells" to reflect their multifaceted potential, including both mesenchymal and angiogenic differentiation.

Article Abstract

In a research study aimed to isolate human bone marrow (hBM)-derived Mesenchymal Stromal Cells (MSCs) for clinical applications, we identified a novel cell population specifically selected for growth in human serum supplemented medium. These cells are characterized by morphological, phenotypic, and molecular features distinct from MSCs and we named them Mesodermal Progenitor Cells (MPCs). MPCs are round, with a thick highly refringent core region; they show strong, trypsin resistant adherence to plastic. Failure to expand MPCs directly revealed that they are slow in cycling. This is as also suggested by Ki-67 negativity. On the other hand, culturing MPCs in standard medium designed for MSC expansion, gave rise to a population of exponentially growing MSC-like cells. Besides showing mesenchymal differentiation capacity MPCs retained angiogenic potential, confirming their multiple lineage progenitor nature. Here we describe an optimized highly reproducible protocol to isolate and characterize hBM-MPCs by flow cytometry (CD73, CD90, CD31, and CD45), nestin expression, and F-actin organization. Protocols for mesengenic and angiogenic differentiation of MPCs are also provided. Here we also suggest a more appropriate nomenclature for these cells, which has been re-named as "Mesangiogenic Progenitor Cells".

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Source
http://dx.doi.org/10.3791/54225DOI Listing

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