Enhanced cloning efficiency of mouse bone marrow macrophage progenitors correlates with increased content of CSF-1 receptor of their progeny at low oxygen tension

2003 ◽  
Vol 5 (12) ◽  
pp. 1064-1069 ◽  
Author(s):  
Stéphane Flamant ◽  
Maï Lebastard ◽  
Pascale Pescher ◽  
Claude Besmond ◽  
Geneviève Milon ◽  
...  
1994 ◽  
Vol 24 (10) ◽  
pp. 2279-2284 ◽  
Author(s):  
Marella F. T. R. de Bruijn ◽  
Walentina A. T. Slieker ◽  
Johannes C. M. van der Loo ◽  
Jane S. A. Voerman ◽  
Willem van Ewijk ◽  
...  

2020 ◽  
Vol 13 (11) ◽  
pp. 2469-2476
Author(s):  
Erma Safitri

Background and Aim: Octamer-binding transcription factor 4 (OCT4) and sex-determining region Y-box 2 (SOX2) are transcription factors whose functions are essential to maintain the pluripotency of embryonic stem cells. The purpose of this study was to derive stem cells for in vitro culture and to maintain their viability and pluripotency, with the goal to obtain a cell line for transplantation in patients with degenerative diseases or injuries. This research focused on examining the effect of low oxygen tension on the ability of bone marrow-derived mesenchymal stem cells (BM-MSCs) to express OCT4 and SOX2 in vitro. Materials and Methods: BM-MSCs were obtained from femurs of 2000 to 3000 g New Zealand male rabbits. BM-MSCs were divided into three groups to test different culture conditions: A control group under hyperoxia condition (21% O2) and two treatment groups with low oxygen tension (1% and 3% O2). We characterized the BM-MSCs using flow cytometric measurement of cluster differentiation 44 (CD44) and cluster differentiation 90 (CD90) expression. The expression of OCT4 and SOX2 was measured by immunofluorescence staining after 48 h of incubation in chambers with normal or low oxygen tension with controlled internal atmosphere consisting of 95% N2, 5% CO2, and 1% O2 (T1) and 3% O2 (T2). We considered OCT4 and SOX2 as two markers of pluripotency induction. All immunofluorescence data were subjected to a post hoc normality Tukey's honestly significant difference test; all differences with p<5% were considered significant. Results: BM-MSCs were positive for CD44 and CD90 expression after isolation. Oxygen tension culture conditions of 1% and 3% O2 led to OCT4 and SOX2 expression on culture days 2 and 4 (p<0.05), respectively, as compared to the hyperoxia condition (21% O2). Conclusion: Based on the OCT4 and SOX2 immunofluorescence data, we conclude that the stem cells were pluripotent at low O2 tension (at 1% O2 on day 2 and at 3% O2 on day 4), whereas under 21% O2 the OCT4 and SOX2 were not expressed.


Blood ◽  
2010 ◽  
Vol 116 (21) ◽  
pp. 3715-3715
Author(s):  
Norioki Ohno ◽  
Teruyuki Kajiume ◽  
Seiichi Hayakawa ◽  
Yoshiyuki Kobayashi ◽  
Akari Utunomiya ◽  
...  

Abstract Abstract 3715 Human umbilical cord blood (CB) is rich source of hematopoietic stem cells (HSCs) and provides an attractive alternative to bone marrow or mobilized peripheral blood transplantation. However, major disadvantage of CB transplantation is the relatively low number of HSCs in each CB unit, which severely limits its usefulness in clinical transplantation. A part of CD34+ cells expresses cell surface CXCR4, which has been found to be critical for bone marrow engraftment by human hematopoietic stem cells. Recently, we reported that the increase of the cell surface expression of CXCR4 on CD34 cells by short time cultured enhanced the homing activity and engraftment (Ohno et al, Stem Cells Dev. 2009). It has been reported that CXCR4 expression has been enhanced by hypoxia through the enforcement of hypoxia-inducible factor-1α (HIF-1α). In the present study, we examined the effect of short-term culture of CB-derived CD34+ cells under low oxygen tension on CXCR4 expression and on migration, homing, and engraftment capability using xenotransplantation into non-obese diabetic/severe combined immunodeficient (NOD/SCID) mice. CB-derived CD34+-enriched samples were divided into four aliquots and cultured. The first aliquot was incubated for 6hs in RPMI-1640 medium alone, the second was incubated for 6hrs in RPMI-1640 medium under low oxygen tension (5% CO2, O2 < 1%), whereas the third was incubated for 6hs in RPMI-1640 medium containing the specific HIF-1 antagonist, Rapamycin under low oxygen tension. As a control, the fourth sample received neither treatments nor incubations. As shown in Table, surface CXCR4 expression on CD34+ cells significantly increased after incubating the cells for 6hrs compared with control. The incubation under low oxygen tension led to further enhancement of CXCR4 expression. This enhancement was completely inhibited by the addition of Rapamycin. No difference in CXCR4 mRNA expression was noted after incubating CD34+ cells for 6hrs, however, CXCR4 expression as well as HIF-1 mRNA expressions in cells cultured under low oxygen tension was significantly increased by using quantitative real-time PCR. The incubation of the increase in the cell surface CXCR4 expression appears to be caused by translocation of CXCR4 from the interior of the cell to the cell surface and the increase in HIF-1 expression. CD34+ cells cultured under low oxygen tension for 6hrs showed significantly increased transmigrational activity toward SDF-1.Finally, we assessed the homing activity of cells cultured under low oxygen using the transplantation into NOD/SCID mice. Homing activity was examined by the detection of human CD45 and CD34 positive cells 16hrs after transplantation. The CD34+ cells ia cultured under low oxygen tension demonstrated significantly increased homing activity in the bone marrow of NOD/SCID mice compared with that of control cells, cells cultured for 6hs, and cells cultured under low oxygen tension in the presence of Rapamycin (P < 0.01). These observations suggest that the culture of CD34+ cells derived from CB under low oxygen tension led to the increase in the expression of CXCR4 in cells, resulting in the acceleration of homing capability in the bone marrow. The culture of hematopoietic cells under low oxygen tension may be useful technique for applying to hematopoietic stem cell transplantation. Table 1. Effect of culture under low oxygen tension human umbilical hematopoietic cells control (no incubation) Incubation for 6hrs Incubation for 6hrs under low oxygen Incubation for 6hrs under low oxygen with Rapamycin CXCR4+ cells in CD34+cells (%) 3.2ü±ü1.2 15.1ü±ü6.5 23.8ü±ü7.7* 14.5ü±ü6.0 Expression of CXCR4 mRNA (Ratio to β-actin) 0.26ü±ü0.12 0.23ü±ü0.12 1.04ü±ü0.52* 0.02ü±ü0.02 Migration activity to SDF-1 (%) 20.5ü±ü5.4 46.2ü±ü3.2 61.0ü±ü7.4* 43.7ü±ü6.3 Homing activity (fold increase) 1 1.40ü±ü0.12 1.76ü±ü0.12* 1.31ü±ü0.17 Date represent the Mean±SD of five deffrent experiments. * P<0.01 Disclosures: No relevant conflicts of interest to declare.


2016 ◽  
Vol 21 (6) ◽  
pp. 1089-1099 ◽  
Author(s):  
Dae Seong Kim ◽  
Young Jong Ko ◽  
Myoung Woo Lee ◽  
Hyun Jin Park ◽  
Yoo Jin Park ◽  
...  

2021 ◽  
Vol 66 (1) ◽  
pp. 98-104 ◽  
Author(s):  
Marco Govoni ◽  
Claudio Muscari ◽  
Francesca Bonafè ◽  
Paolo Giovanni Morselli ◽  
Marilisa Cortesi ◽  
...  

2009 ◽  
Vol 337 (1) ◽  
pp. 103-111 ◽  
Author(s):  
Cheng-Juan Qu ◽  
Teemu Pöytäkangas ◽  
Marjo Jauhiainen ◽  
Seppo Auriola ◽  
Mikko J. Lammi

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