Immature human thymocytes can be driven to differentiate into nonlymphoid lineages by cytokines from thymic epithelial cells.
- 1 October 1989
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 86 (19) , 7575-7579
- https://doi.org/10.1073/pnas.86.19.7575
Abstract
The signals and cellular interactions required for hematopoietic stem-cell commitment to the T lineage are unknown, yet are central to understanding the early stages of normal T-cell development. To study the differentiative capacity of T-cell precursors, we isolated CD4-, CD8-, surface(s) CD3- thymocytes from postnatal human thymuses and determined their capacity to differentiate into lymphoid and nonlymphoid lineages in vitro. We found that CD4-, CD8-, sCD3- thymocytes, which differentiated in the presence of T-cell conditioned medium plus interleukin 2 into T cells expressing the gamma delta receptor for antigen, were capable of differentiating into myeloid or erythroid lineages in the presence of either 5637 bladder carcinoma cell line conditioned medium plus recombinant human erythropoietin or human thymic epithelial cell conditioned medium. Thymic epithelial cell conditioned medium was as effective as 5637 supernatant plus erythropoietin in inducing myeloerythroid differentiation in the CD4-, CD8-, sCD3- thymocytes. Sixty-eight +/- 14% of CD4-, CD8-, sCD3- thymocytes underwent nonlymphoid differentiation within 4 days in culture with 5637 supernatant plus erythropoietin. Twenty-six +/- 4% of freshly isolated CD4-, CD8-, sCD3- cells were CD34+, and clonal granulocyte/macrophage, granulocyte/erythrocyte/monocyte/megakaryocyte, and T-cell progenitors were found in both CD34+ and CD34- subsets of CD4-, CD8-, sCD3- thymocytes. Thus, cells within the human CD4-, CD8-, sCD3- thymocyte subset can give rise to gamma delta+ T cells as well as to cells of myeloerythroid lineages. Moreover, CD34+, CD4-, CD8-, sCD3- cells can give rise to clonal T-cell progenitors as well as to clonal myeloid progenitors.This publication has 37 references indexed in Scilit:
- Ontogeny of T-cell precursors: a model for the initial stages of human T-cell developmentImmunology Today, 1989
- Early events in human T cell ontogeny. Phenotypic characterization and immunohistologic localization of T cell precursors in early human fetal tissues.The Journal of Experimental Medicine, 1988
- Immunochemical Proof That a Novel Rearranging Gene Encodes the T Cell Receptor δ SubunitScience, 1987
- A novel subset of human lymphocytes with a T cell receptor-gamma complex.The Journal of Experimental Medicine, 1987
- Establishment of the DU.528 human lymphohemopoietic stem cell line.The Journal of Experimental Medicine, 1985
- In vitro growth and phenotypic characterization of mesodermal-derived and epithelial components of normal and abnormal human thymusHuman Immunology, 1985
- Phenotypic characterization and ontogeny of mesodermal-derived and endocrine epithelial components of the human thymic microenvironment.The Journal of Experimental Medicine, 1984
- Expression of myeloid differentiation antigens on normal and malignant myeloid cells.Journal of Clinical Investigation, 1981
- Preparative nonlytic separation of Lyt2+ and Lyt2− T lymphocytes, functional analyses of the separated cells and demonstration of synergy in graft‐vs.‐host reaction of Lyt2+ and Lyt2− cellsEuropean Journal of Immunology, 1981
- HAEMOPOIETIC STEM CELLS IN THE FOETAL MOUSE THYMUSImmunology & Cell Biology, 1978