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Ontogenez|March 5, 2015
[Low expression of activin A in mouse and human embryonic teratocarcinoma cells]O F GordeevaOntogenez|October 6, 2012
[Antiproliferative and cytotoxic effects of different type cytostatics on mouse pluripotent stem and teratocarcinoma cells]O F GordeevaJournal of Stem Cells|September 25, 2012
Pluripotent cells in embryogenesis and in teratoma formationO F GordeevaOntogenez|July 25, 2015
[Expression of Cancer-Testis Antigens of Magea and Mageb Families in Mouse Embryonic Fibroblasts Cultured in vitro]O F GordeevaOntogenez|December 3, 2014
[Cytotoxic effects of etoposide at different stages of differentiation of embryoid bodies formed by mouse embryonic stem cells]O F GordeevaOntogenez|May 8, 2007
[Comparative analysis of expression of TGFbeta family factors and their receptors in mouse embryonic stem and embryonic teratocarcinoma cells]N Iu Krasnikova, O F GordeevaCell Transplantation|October 12, 2012
Development of experimental tumors formed by mouse and human embryonic stem and teratocarcinoma cells after subcutaneous and intraperitoneal transplantations into immunodeficient and immunocompetent miceO F Gordeeva, T M NikonovaOntogenez|January 14, 2009
[Pluripotent stem cells: maintenance of genetic and epigenetic stability and prospects of cell technologies]O F Gordeeva, Sh M MitalipovIzvestiia Akademii Nauk. Seriia Biologicheskaia|July 4, 2001
[Biological model of accelerated senescence. II. Age-related changes in the number of developing male germ cells and Sertoli cells in gonads of senescence-accelerated mice]O F Gordeeva, S T Zakhidov, T L MarshakIzvestiia Akademii Nauk. Seriia Biologicheskaia|August 30, 2001
[A biological model of accelerated aging. III. Histological characteristics of age-related changes of spermatogenic epithelium in mice SAM (senescence-accelerated mouse)]S T Zakhidov, O F Gordeeva, T L MarshakPageof 2