scholarly journals Long-term survival of exogenous embryonic stem cells in adult bone marrow

Cell Research ◽  
2011 ◽  
Vol 21 (7) ◽  
pp. 1148-1151 ◽  
Author(s):  
Yueying Li ◽  
Yanfeng Liu ◽  
Jing He ◽  
Fengchao Wang ◽  
Sheng Liu ◽  
...  
Stem Cells ◽  
2005 ◽  
Vol 23 (7) ◽  
pp. 914-922 ◽  
Author(s):  
Rosario Sánchez-Pernaute ◽  
Lorenz Studer ◽  
Daniela Ferrari ◽  
Anselme Perrier ◽  
Hyojin Lee ◽  
...  

2010 ◽  
Vol 37 (7) ◽  
pp. 431-439 ◽  
Author(s):  
Yueying Li ◽  
Jing He ◽  
Fengchao Wang ◽  
Zhenyu Ju ◽  
Sheng Liu ◽  
...  

Biomaterials ◽  
2010 ◽  
Vol 31 (27) ◽  
pp. 7032-7042 ◽  
Author(s):  
Michel L. Dubois-Dauphin ◽  
Nicolas Toni ◽  
Stéphanie D. Julien ◽  
Igor Charvet ◽  
Lars E. Sundstrom ◽  
...  

1984 ◽  
Vol 159 (3) ◽  
pp. 731-745 ◽  
Author(s):  
R A Fleischman ◽  
B Mintz

Bone marrow of normal adult mice was found, after transplacental inoculation, to contain cells still able to seed the livers of early fetuses. The recipients' own hematopoietic stem cells, with a W-mutant defect, were at a selective disadvantage. Progression of donor strain cells to the bone marrow, long-term self-renewal, and differentiation into myeloid and lymphoid derivatives was consistent with the engraftment of totipotent hematopoietic stem cells (THSC) comparable to precursors previously identified (4) in normal fetal liver. More limited stem cells, specific for the myeloid or lymphoid cell lineages, were not detected in adult bone marrow. The bone marrow THSC, however, had a generally lower capacity for self-renewal than did fetal liver THSC. They had also embarked upon irreversible changes in gene expression, including partial histocompatibility restriction. While completely allogeneic fetal liver THSC were readily accepted by fetuses, H-2 incompatibility only occasionally resulted in engraftment of adult bone marrow cells and, in these cases, was often associated with sudden death at 3-5 mo. On the other hand, H-2 compatibility, even with histocompatibility differences at other loci, was sufficient to ensure long-term success as often as with fetal liver THSC.


Blood ◽  
2010 ◽  
Vol 116 (21) ◽  
pp. 4788-4788
Author(s):  
Dong-Myung Shin ◽  
Rui Liu ◽  
Wu Wan ◽  
Janina Ratajczak ◽  
Mariusz Z Ratajczak ◽  
...  

Abstract Abstract 4788 Recently, we identified a population of very small embryonic-like (VSEL) stem cells (SCs) in adult bone marrow (BM; Leukemia 2006;20:857). These Oct4+CXCR4+SSEA-1+Sca-1+CD45-Lin- VSELs are capable of differentiation in vitro into cells of all three germ lineages and are able to form spheres (VSEL-derived spheres[VSEL-DS]) composed of primitive stem cells in co-cultures with C2C12 myoblasts. Cells isolated from VSEL-DS are also able to differentiate into all three germ layers (cardiomyocytes, neural cells, and insulin-producing cells). Our previous epigenetic study proved that VSELs exhibit open chromatin structures in the promoters of pluripotent stem cell markers, such as Oct4 and Nanog (Leukemia 2009;23:2042). However, it still remains unclear whether the pluripotency of VSELs could be orchestrated by a mechanism similar to that seen in embryonic stem cells (ESCs). To address this issue, we evaluated whether adult BM-derived VSELs, in a similar way as ESCs, display bivalent-domain–marked histone modifications in the promoter region of homeodomain-containing developmental master transcription factors (TFs), such as Dlx-, Irx-, Lhx-, Pou-, Pax-, and Six-family proteins. To overcome the problem that VSELs sorted by FACS are heterogeneous, we constructed a cDNA library from a small number of cells (~25) by employing the protocols used for single-cell analysis (Nat Protoc 2007;2:739). Analysis of this cDNA library indicated that Oct4+ VSELs highly express several epigenetic regulators, especially polycomb repressive complex 2 (PRC2) proteins, including Ezh2, Suz12, and Eed. It is known that PRC2, due to its histone methyltransferase activity on lysine27 of histone3 (H3K27), is responsible for transcriptionally repressive trimethylation of H3K27 (HKK27me3) in promoters for several homeobox domain-containing developmental TFs, such as Sox21, Nkx2.2, Dlx1, Zfpm2, Irx2, Lbx1h, Hlxb9, and Pax5. Moreover, we observed that most of these promoters are “bivalent” and marked with the transcriptionally active histone code that includes trimethylated H3K4 together with H3K27me3, similarly to ESCs. Such bivalent epigenetic marks prevent the premature expression of these TFs in freshly isolated quiescent VSELs. Furthermore, we noticed that during formation of VSEL-DS, Ezh2 expression was decreased and most of the bivalent domains in VSELs were transformed into unmodified histone marks, resulting in the expression of some bivalent-targeted genes, including Hlxb9, HoxA3, and Evx1. Moreover, most of the pluripotent SC markers were also reduced during VSEL-DS progression, which was paralleled by inactivation of the Oct4 promoter. In conclusion, our results suggest that the pluripotency of adult tissue-derived VSELs is modulated, in a similar manner as in ESCs, by transient repression of developmental master TFs through bivalent epigenetic marks. Although PRC2 proteins stimulate cellular proliferation and are highly expressed in various tumors, unique epigenetic reprogramming of genomic imprinting maintains VSEL quiescence under steady-state conditions and also protects these cells from teratoma formation (Leukemia 2009;23:2042). Thus, we suggest that attenuation of this protective mechanism in VSELs, for example during chronic tissue injury and ageing, may lead to tumor formation. Disclosures: No relevant conflicts of interest to declare.


Blood ◽  
1996 ◽  
Vol 87 (10) ◽  
pp. 4057-4067 ◽  
Author(s):  
TD Randall ◽  
FE Lund ◽  
MC Howard ◽  
IL Weissman

Using a monoclonal antibody to murine CD38, we showed that a population of adult bone marrow cells that expressed the markers Sca-1 and c-kit but lacked the lineage markers Mac-1, GR-1, B220, IgM, CD3, CD4, CD8 and CD5 could be subdivided by the expression of CD38. We showed that CD38high c-kit+ Sca-1+, linlow/-cells sorted from adult bone marrow cultured with interleukin-3 (IL-3), IL-6, and kit-L produced much larger colonies in liquid culture at a greater frequency than their CD38low/- counterparts. In addition, we found that CD36low/ - cells contained most of the day-12 colony-forming units-spleen (CFU-S) but were not long-term reconstituting cells, whereas the population that expressed higher levels of CD38 contained few, but significant, day-12 CFU-S and virtually all the long-term reconstituting stem cells. Interestingly, the CD38high Sca-1+ c-kit+ linlow/- cells isolated from day-E14.5 fetal liver were also found to be long-term reconstituting stem cells. This is in striking contrast to human hematopoietic progenitors in which the most primitive hematopoietic cells from fetal tissues lack the expression of CD38. Furthermore, because antibodies to CD38 could functionally replace antibodies to Thy-1.1 in a stem cell purification procedure, the use of anti-CD38 may be more generally applicable to the purification of hematopoietic stem cells from mouse strains that do not express the Thy-1.1 allele.


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