| Literature DB >> 27085705 |
Seyed Mohammad Reza Azghadi1, Maria Suciu2,3, Alexandra Teodora Gruia4, Lucian Barbu-Tudoran5, Mirabela Iustina Cristea6, Ani Aurora Mic1,7, Danina Muntean8, Dragos Vasile Nica6,9, Felix Aurel Mic1.
Abstract
The development of thymocytes and generation of mature T cells is a complex process that requires spatio-temporal interactions of thymocytes with the other cells of the thymus microenvironment. Recently, mesenchymal stromal cells were isolated from the neonatal human thymus and differentiated into chondrogenic, osteogenic, and adipogenic lineages, just like their bone marrow counterparts. However, their function in thymocyte homeostasis is unknown. In our autologous co-cultures of rat mesenchymal stromal cells and thymocytes, the stromal cells preserve the viability of cultured thymocytes and stimulate the development of CD4-CD8- double-negative and the maturation of mainly CD4+ single-positive thymocytes. Thymocytes also influence the stemness of bone marrow mesenchymal stromal cells, as their expression of CD44, a marker associated with cellular proliferation and migration, is reduced in co-cultures. Mesenchymal stromal cells' influence on thymocyte development requires direct physical contact between the two cells and is not mediated by a soluble factor. When the two types of cells were physically separated, the stimulative effects of mesenchymal stromal cells on thymocytes did not occur. Electron microscopy confirmed the close contact between the membranes of thymocytes and mesenchymal stromal cells. Our experiments suggest that membrane exchanges could occur between mesenchymal stromal cells and thymocytes, such as the transfer of CD44 from mesenchymal stromal cells to the thymocytes, but its functional significance for thymocytes development remains to be established. These results suggest that mesenchymal stromal cells could normally be a part of the in vivo thymic microenvironment and form a niche that could sustain and guide the development of thymocytes.Entities:
Keywords: Co-cultures; Maturation; Mesenchymal stromal cells; Thymocytes; Viability
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Year: 2016 PMID: 27085705 DOI: 10.1007/s00418-016-1430-y
Source DB: PubMed Journal: Histochem Cell Biol ISSN: 0948-6143 Impact factor: 4.304