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Updated: Jul 10, 2026

Pan-myeloid Differentiation of Human Cord Blood Derived CD34+ Hematopoietic Stem and Progenitor Cells
Published on: August 9, 2019
Quantification of progenitors capable of generating T cells in human cord blood
Maiko Kato1, Kyoko Masuda, Kiyokazu Kakugawa
1Division of Cell Regeneration and Transplantation, Advanced Medical Research Center, Nihon University School of Medicine, Itabashi-ku, Tokyo, Japan.
Objective:
For transplantation of cord blood (CB) cells, it is important to select a CB sample that can reconstitute not only myelo-erythropoiesis but also lymphopoiesis in recipients. However, until now the reconstitution ability of CB samples has been assessed by colony forming unit-culture (CFU-C) assay or by simply counting CD34+ cells. The present study aims at establishing a method capable of assessing the potential of T lymphopoieses of CB samples.
Methods:
CD34+ CD38- cells sorted from CB were cultured on a monolayer of murine stromal cell line TSt-4, transduced with the human Delta-like 1 gene.
Results:
Immature T cells expressing CD5 and/or CD7 were generated in the culture. As these immature T cells can easily be discriminated from mature T cells that are included in the mononuclear cell population (MNCs), we can use the MNCs as starting material for quantification of progenitors capable of generating T cells (TGP). By applying a limiting dilution analysis, we succeeded in determining the frequency of TGP in MNCs. It was found that the ratios for the number of TGP vs. that of CFU-C differ among CB samples maximally by 3.5 times.
Conclusion:
The present assay system provides a novel tool for the evaluation of CB samples, especially for their T-cell-generating potential.
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