Kucia M, Reca R, Jala V R, Dawn B, Ratajczak J, Ratajczak M Z
Stem Cell Biology Program at James Graham Brown Cancer Center, University of Louisville, KY 40202, USA.
Leukemia. 2005 Jul;19(7):1118-27. doi: 10.1038/sj.leu.2403796.
Evidence is presented that bone marrow (BM) in addition to CD45(positive) hematopoietic stem cells contains a rare population of heterogenous CD45(negative) nonhematopoietic tissue committed stem cells (TCSC). These nonhematopoietic TCSC (i) are enriched in population of CXCR4(+) CD34(+) AC133(+) lin(-) CD45(-) and CXCR4(+) Sca-1(+) lin(-) CD45(-) in humans and mice, respectively, (ii) display several markers of pluripotent stem cells (PSC) and (iii) as we envision are deposited in BM early in development. Thus, since BM contains versatile nonhematopoietic stem cells, previous studies on plasticity trans-dedifferentiation of BM-derived hematopoietic stem cells (HSC) that did not include proper controls to exclude this possibility could lead to wrong interpretations. Therefore, in this spotlight review we present this alternative explanation of 'plasticity' of BM-derived stem cells based on the assumption that BM stem cells are heterogenous. We also discuss a potential relationship of TCSC/PSC identified by us with other BM-derived CD45(negative) nonhematopoietic stem cells that were recently identified by other investigators (eg MSC, MAPC, USSC and MIAMI cells). Finally, we discuss perspectives and pitfalls in potential application of these cells in regenerative medicine.
有证据表明,除了CD45阳性造血干细胞外,骨髓(BM)还含有一种罕见的异质性CD45阴性非造血组织定向干细胞(TCSC)。这些非造血TCSC:(i)在人类和小鼠中分别富集于CXCR4(+) CD34(+) AC133(+) lin(-) CD45(-)和CXCR4(+) Sca-1(+) lin(-) CD45(-)群体中;(ii)表现出多能干细胞(PSC)的几种标志物;(iii)正如我们所设想的,在发育早期就沉积在骨髓中。因此,由于骨髓含有通用的非造血干细胞,之前关于骨髓来源的造血干细胞(HSC)可塑性转分化的研究,如果没有包括适当的对照来排除这种可能性,可能会导致错误的解释。因此,在这篇重点综述中,我们基于骨髓干细胞是异质性的这一假设,提出了对骨髓来源干细胞“可塑性”的这种替代性解释。我们还讨论了我们所鉴定的TCSC/PSC与其他研究人员最近鉴定的其他骨髓来源的CD45阴性非造血干细胞(如间充质干细胞、多能成体祖细胞、脐带血干细胞和迈阿密细胞)之间的潜在关系。最后,我们讨论了这些细胞在再生医学潜在应用中的前景和陷阱。