Stem cells, pluripotency and glial cell markers in peripheral blood of bipolar patients on long-term lithium treatment

Author(s):  
Ewa Ferensztajn-Rochowiak ◽  
Jolanta Kucharska-Mazur ◽  
Maciej Tarnowski ◽  
Jerzy Samochowiec ◽  
Mariusz Z. Ratajczak ◽  
...  
2016 ◽  
Vol 26 (9) ◽  
pp. 1516-1521 ◽  
Author(s):  
Ewa Ferensztajn-Rochowiak ◽  
Maciej Tarnowski ◽  
Jerzy Samochowiec ◽  
Michal Michalak ◽  
Mariusz Z. Ratajczak ◽  
...  

2016 ◽  
Vol 18 (1) ◽  
pp. 54-62 ◽  
Author(s):  
Ewa Ferensztajn-Rochowiak ◽  
Jolanta Kucharska-Mazur ◽  
Jerzy Samochowiec ◽  
Mariusz Z. Ratajczak ◽  
Michal Michalak ◽  
...  

2017 ◽  
Vol 41 (S1) ◽  
pp. S206-S206
Author(s):  
J. Kucharska-Mazur ◽  
A. Reginia ◽  
M. Jabłoński ◽  
B. Dołęgowska ◽  
J. Rybakowski ◽  
...  

IntroductionAfter analysis of biological and pharmacological data, we formulated the hypothesis that the factors involved in trafficking of stem cells could be engaged in aetiology of bipolar disorder (BP).AimsIn this study, we considered the role of complement cascade proteins, stromal derived factor-1 (SDF-1), and sphingosine-1-phosphate (S1P) in long-term treated BP.MethodsA group of 30 patients with BP, without the history of lithium treatment, was examined in remission and compared with a group of 30 healthy volunteers. In peripheral blood, we have analysed the concentration of stromal derived factor-1 (SDF-1), sphingosine-1-phosphate (S1P), and some proteins of the complement cascade (C3a, C5a, C5b-9).ResultsPeripheral blood concentration of C3a, C5a, C5b-9 and SDF-1 was significantly higher in BP group compared to control group. The concentration of S1P does not distinguish BP patients from controls.ConclusionOur results suggest the possible role of the regeneration system in aetiology of BP.This work was supported by grant POIG.01.01.02-00-109/09.Disclosure of interestThe authors have not supplied their declaration of competing interest.


2013 ◽  
Vol 11 (1) ◽  
pp. 625-633 ◽  
Author(s):  
Philippe Brunet de la Grange ◽  
Marija Vlaski ◽  
Pascale Duchez ◽  
Jean Chevaleyre ◽  
Veronique Lapostolle ◽  
...  

2018 ◽  
Vol 53 (9) ◽  
pp. 1225-1227
Author(s):  
Fatima Aerts-Kaya ◽  
Gül Koca ◽  
Parisa Sharafi ◽  
Funda Çakmak Sayla ◽  
Duygu Uçkan-Çetinkaya ◽  
...  

1995 ◽  
Vol 181 (1) ◽  
pp. 369-374 ◽  
Author(s):  
K J Grzegorzewski ◽  
K L Komschlies ◽  
S E Jacobsen ◽  
F W Ruscetti ◽  
J R Keller ◽  
...  

Administration of recombinant human interleukin 7 (rh)IL-7 to mice has been reported by our group to increase the exportation of myeloid progenitors (colony-forming unit [CFU]-c and CFU-granulocyte erythroid megakarocyte macrophage) from the bone marrow to peripheral organs (blood, spleen[s], and liver). We now report that IL-7 also stimulates a sixfold increase in the number of more primitive CFU-S day 8 (CFU-S8) and day 12 (CFU-S12) in the peripheral blood leukocytes (PBL) of mice treated with rhIL-7 for 7 d. Moreover, > 90% of lethally irradiated recipient mice that received PBL from rhIL-7-treated donor mice have survived for > 6 mo whereas none of the recipient mice that received an equal number of PBL from diluent-treated donors survived. Flow cytometry analysis at 3 and 6 mo after transplantation revealed complete trilineage (T, B, and myelomonocytic cell) repopulation of bone marrow, thymus, and spleen by blood-borne stem/progenitor cells obtained from rhIL-7-treated donor mice. Thus, IL-7 may prove valuable for mobilizing pluripotent stem cells with long-term repopulating activity from the bone marrow to the peripheral blood for the purpose of gene modification and/or autologous or allogeneic stem cell transplantation.


Blood ◽  
2012 ◽  
Vol 120 (21) ◽  
pp. 1196-1196
Author(s):  
Hiroshi Sakamoto ◽  
Naoki Takeda ◽  
Kiyomi Tsuji-Tamura ◽  
Saeka Hirota ◽  
Ogawa Minetaro

Abstract Abstract 1196 c-Myb is a transcription factor essential for the proliferation of hematopoietic cells: conventional c-myb deficient mice died around E14 when their hematopoietic progenitors/stem cells fail to proliferate in the fetal livers. Recently, c-myb has also been reported to be crucial for the differentiation of hematopoietic progenitors. We have previously reported that the differentiation into erythrocytes, megakaryocytes and B-lymphocytes is regulated by c-myb levels utilizing ES cell in vitro differentiation combined with a tetracycline-inducible gene expression system. The gene-altered c-myb mice, such as knockdown or conditional knockout mice in the hematopoietic cell lineages, showed that c-myb controlled hematopoietic stem cells (HSCs). In order to examine the levels of the c-Myb protein in HSCs, we established c-Myb reporter mice in which the EGFP cDNA was linked to the coding sequence of the c-myb gene (c-MybEGFP). Homozygous c-MybEGFP mice, showing normal hematopoiesis, expressed EGFP in hematopoietic progenitors. EGFP+ cells were observed in most long-term (LT) HSCs (90–95%), which were defined as CD34− Lin− Sca-1+c-Kithigh cells (34LSKs), CD150+CD48−LSKs and side-population LSKs. To evaluate c-Myb function in LT-HSCs, we transplanted 100 cells of EGFPlow and EGFPhigh of 34LSKs into irradiated mice along with competitor cells (0×106 cells). Both LT-HSC populations presented multilineage repopulating capacity over 20 weeks. In addition, the EGFPlow cells indicated higher chimerism in the total peripheral blood than the EGFPhigh cells at any given time point. The contribution of the EGFPlow-derived cells in the peripheral blood of the recipient mice increased over time whereas EGFPhigh progeny gradually decreased over time. Under a stringent transplantation condition (30 donor cells with 0.4×106 competitor cells), 83.3% of the recipients that received the EGFPlow34LSK showed donor-derived progeny while the EGFPhigh were lower (20.0%) 8 weeks after transplantation. At Week 12, all the recipients with the EGFPlow34LSKs demonstrated donor-derived progeny; however, EGFPhigh 34LSKs-derived cells disappeared totally in all the transplants. These results suggest that the EGFPlow and the EGFPhigh cells in LT-HSCs possess distinct repopulating capacity: the EGFPlow cells are high and the EGFPhigh cells are low. To investigate the relationship between the EGFPlow and the EGFPhigh LT-HSC, we examined EGFP expression levels in the recipient mice grafted EGFPlow34KSL at least 24 weeks after transplantation. EGFPlow34LSK generated EGFPhigh cells in the donor-derived 34LSK population in the recipient mice, suggesting the possibility that the EGFPlow LT-HSCs support the production of the EGFPhigh LT-HSCs. In conclusion, we found that the expression levels of c-Myb protein subdivide LT-HSC population in correspondence with their respective multilineage repopulating capacities. Disclosures: No relevant conflicts of interest to declare.


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