Особенности изменения структурно-функциональных характеристик стволовых кроветворных клеток из разных источников после криоконсервирования

The performed comparative analysis of structural and functional status of fetal liver (FL) hematopoietic stem cells(HSCs) of 14 gestation days and adult bone marrow (BM) of 4-month-old CBA/H mice demonstrated not only the differences of their initial qualitative and quantitative characteristics but...

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Datum:2014
Hauptverfasser: Goltsev, Anatoly N., Dubrava, Tatiana G., Gaevskaya, Yulia A., Yampolskaya, Ekaterina E., Ostankova, Lyudmila V., Ostankov, Maksim V.
Format: Artikel
Sprache:English
Veröffentlicht: Publishing House ‘Akademperiodyka’ of the National Academy of Sciences of Ukraine; Institute for Problems of Cryobiology and Cryomedicine 2014
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Online Zugang:https://cryo.org.ua/journal/index.php/probl-cryobiol-cryomed/article/view/556
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Назва журналу:Problems of Cryobiology and Cryomedicine

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Problems of Cryobiology and Cryomedicine
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Zusammenfassung:The performed comparative analysis of structural and functional status of fetal liver (FL) hematopoietic stem cells(HSCs) of 14 gestation days and adult bone marrow (BM) of 4-month-old CBA/H mice demonstrated not only the differences of their initial qualitative and quantitative characteristics but also different responses to the effect of cryopreservation factors. Either FL or BM cells were frozen according to various regimens under protection of 5 and 10% dimethyl sulfoxide. To estimate structural and functional characteristics of HSCs derived from different sources there were used cytofluorimetry (content of CD34+СD38– cells), methods of colony formation in vivo (CFUs) and in vitro (CFU-GM). It has been established that certain cryopreservation regimens are able to manifest the effect of selective enrichment of cell populations with phenotype of hemopoietic progenitors (CD34+CD38– cells). Comparing the content of CFUs, CFU-GM, HSCs and cells with CD34+CD38– phenotype has shown that cryopreservation regimen for FL cells was not optimal for BM. It has been demonstrated that varying cryopreservation conditions allowed not only to provide optimal preservation rate of hemopoietic progenitors derived from FL and BM with various initial functional status, but to control it purposefully. Probl Cryobiol Cryomed 2014; 24(2):118-131.