Clinical Evidence That Very Small Embryonic-Like Stem Cells Are Mobilized Into Peripheral Blood in Patients After Stroke

被引:184
作者
Paczkowska, Edyta [2 ]
Kucia, Magda [1 ]
Koziarska, Dorota [3 ]
Halasa, Maciej [2 ]
Safranow, Krzysztof
Masiuk, Marek [4 ]
Karbicka, Anna [3 ]
Nowik, Marta [3 ]
Nowacki, Przemyslaw [3 ]
Ratajczak, Mariusz Z. [1 ,2 ]
Machalinski, Boguslaw [2 ]
机构
[1] Univ Louisville, Stem Cell Inst, James Graham Brown Canc Ctr, Louisville, KY 40202 USA
[2] Pomeranian Med Univ, Dept Physiopathol, Szczecin, Poland
[3] Pomeranian Med Univ, Dept Biochem & Med Chem, Neurol Clin, Szczecin, Poland
[4] Pomeranian Med Univ, Dept Pathol, Szczecin, Poland
关键词
ischemic stroke; very small embryonic-like stem cells; stem cells; mobilization; ENDOTHELIAL PROGENITOR CELLS; CHEMOKINE RECEPTOR CXCR4; BONE-MARROW; STEM/PROGENITOR CELLS; CXCR4-POSITIVE CELLS; ISCHEMIC-STROKE; MARKERS; MUSCLE; MIGRATION; RESIDE;
D O I
10.1161/STROKEAHA.108.535062
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Background and Purpose-In a murine model of stroke, we identified a population of very small embryonic-like (VSEL) stem cells (SCs) in adult murine bone marrow that could be mobilized into peripheral blood (PB). This raised the question of whether a similar population of cells is mobilized in human stroke patients. Methods-We evaluated a number of cells that corresponded to VSEL SCs in the PB of 44 stroke patients and 22 age-matched controls. After each patient's stroke, PB samples were harvested during the first 24 hours, on day + 3, and on day +7 and then compared with normal controls. The circulating human cells with the phenotype of VSEL SCs were evaluated in PB by real-time quantitative polymerase chain reaction, fluorescence-activated cell sorting analysis, and direct immunofluorescence staining. In parallel, we also measured the serum concentration of stromal derived factor-1 by ELISA. Results-In stroke patients, we found an increase in the number of circulating cells expressing SC-associated antigens, such as CD133, CD34, and CXCR4. More important, we found an increase in the number of circulating primitive cells expressing the VSEL phenotype (CXCR4(+)lin(-)CD45(-) small cells), mRNA for Octamer-4 and Nanog, and Octamer-4 protein. All changes were accompanied by an increased serum concentration of stromal derived factor-1. Additionally, we found a positive correlation between stroke extensiveness, stromal derived factor-1 concentration in serum, and the number of CXCR4(+) VSEL SCs circulating in the PB. Conclusions-We conclude that stroke triggers the mobilization of CXCR4(+) VSEL SCs that have potential prognostic value in stroke patients. However, the potential role of these mobilized cells in brain regeneration requires further study. (Stroke. 2009;40:1237-1244.)
引用
收藏
页码:1237 / 1244
页数:8
相关论文
共 33 条
[1]   Glial and neuronal cells express functional chemokine receptor CXCR4 and its natural ligand stromal cell-derived factor 1 [J].
Bajetto, A ;
Bonavia, R ;
Barbero, S ;
Piccioli, P ;
Costa, A ;
Florio, T ;
Schettini, G .
JOURNAL OF NEUROCHEMISTRY, 1999, 73 (06) :2348-2357
[2]   CLASSIFICATION AND NATURAL-HISTORY OF CLINICALLY IDENTIFIABLE SUBTYPES OF CEREBRAL INFARCTION [J].
BAMFORD, J ;
SANDERCOCK, P ;
DENNIS, M ;
BURN, J ;
WARLOW, C .
LANCET, 1991, 337 (8756) :1521-1526
[3]   Progenitor cell trafficking is regulated by hypoxic gradients through HIF-1 induction of SDF-1 [J].
Ceradini, DJ ;
Kulkarni, AR ;
Callaghan, MJ ;
Tepper, OM ;
Bastidas, N ;
Kleinman, ME ;
Capla, JM ;
Galiano, RD ;
Levine, JP ;
Gurtner, GC .
NATURE MEDICINE, 2004, 10 (08) :858-864
[4]   Circulating progenitor epithelial cells traffic via CXCR4/CXCL12 in response to airway injury [J].
Gomperts, BN ;
Belperio, JA ;
Rao, PN ;
Randell, SH ;
Fishbein, MC ;
Burdick, MD ;
Strieter, RM .
JOURNAL OF IMMUNOLOGY, 2006, 176 (03) :1916-1927
[5]  
Hatch Heather M., 2002, Cloning and Stem Cells, V4, P339, DOI 10.1089/153623002321025014
[6]   Administration of hematopoietic cytokines in the subacute phase after cerebral infarction is effective for functional recovery facilitating proliferation of intrinsic neural stem/progenitor cells and transition of bone marrow-derived neuronal cells [J].
Kawada, H ;
Takizawa, S ;
Takanashi, T ;
Morita, Y ;
Fujita, J ;
Fukuda, K ;
Takagi, S ;
Okano, H ;
Ando, K ;
Hotta, T .
CIRCULATION, 2006, 113 (05) :701-710
[7]   Cells expressing early cardiac markers reside in the bone marrow and are mobilized into the peripheral blood after myocardial infarction [J].
Kucia, M ;
Dawn, B ;
Hunt, G ;
Guo, YR ;
Wysoczynski, M ;
Majka, M ;
Ratajczak, J ;
Rezzoug, F ;
Ildstad, ST ;
Bolli, R ;
Ratajczak, MZ .
CIRCULATION RESEARCH, 2004, 95 (12) :1191-1199
[8]   A population of very small embryonic-like (VSEL) CXCR4+SSEA-1+Oct-4+ stem cells identified in adult bone marrow [J].
Kucia, M ;
Reca, R ;
Campbell, FR ;
Zuba-Surma, E ;
Majka, M ;
Ratajczak, J ;
Ratajczak, MZ .
LEUKEMIA, 2006, 20 (05) :857-869
[9]   The migration of bone marrow-derived non-hematopoietic tissue-committed stem cells is regulated in an SDF-1-, HGF-, and LIF-dependent manner [J].
Kucia, M ;
Wojakowski, W ;
Reca, R ;
Machalinski, B ;
Gozdzik, J ;
Majka, M ;
Baran, J ;
Ratajczak, J ;
Ratajczak, MZ .
ARCHIVUM IMMUNOLOGIAE ET THERAPIAE EXPERIMENTALIS, 2006, 54 (02) :121-135
[10]   Cells enriched in markers of neural tissue-committed stem cells reside in the bone marrow and are mobilized into the peripheral blood following stroke [J].
Kucia, M ;
Zhang, YP ;
Reca, R ;
Wysoczynski, M ;
Machalinski, B ;
Majka, M ;
Ildstad, ST ;
Ratajczak, J ;
Shields, CB ;
Ratajczak, MZ .
LEUKEMIA, 2006, 20 (01) :18-28