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Methods in Molecular Biology (Clifton, N.J.)|April 3, 2013
Labeled stem cells as disease models and in drug discoveryCatharina Ellerström, Raimund Strehl, Johan HyllnerMethods in Molecular Biology (Clifton, N.J.)|November 13, 2009
Single cell enzymatic dissociation of human embryonic stem cells: a straightforward, robust, and standardized culture methodCatharina Ellerström, Johan Hyllner, Raimund StrehlStem Cells (Dayton, Ohio)|March 24, 2007
Facilitated expansion of human embryonic stem cells by single-cell enzymatic dissociationCatharina Ellerström, Raimund Strehl, Karin Noaksson, et al.Developmental Dynamics : an Official Publication of the American Association of Anatomists|March 14, 2002
RP59, a marker for osteoblast recruitment, is also detected in primitive mesenchymal cells, erythroid cells, and megakaryocytesAnders Krüger, Catharina Ellerström, Carin Lundmark, et al.Methods in Molecular Biology (Clifton, N.J.)|April 25, 2012
Principles for derivation of human embryonic stem cellsMikael C O Englund, Catharina Ellerström, Katarina Andersson, et al.Stem Cells (Dayton, Ohio)|June 3, 2006
Derivation of a xeno-free human embryonic stem cell lineCatharina Ellerström, Raimund Strehl, Karina Moya, et al.Stem Cells Translational Medicine|March 8, 2014
Footprint-free human induced pluripotent stem cells from articular cartilage with redifferentiation capacity: a first step toward a clinical-grade cell sourceCecilia Boreström, Stina Simonsson, Lars Enochson, et al.Acta Ophthalmologica|January 28, 2012
Transplantation of human embryonic stem cells onto a partially wounded human cornea in vitroCharles Hanson, Thorir Hardarson, Catharina Ellerström, et al.Stem Cells (Dayton, Ohio)|October 27, 2007
Creation of engineered human embryonic stem cell lines using phiC31 integraseBhaskar Thyagarajan, Ying Liu, Soojung Shin, et al.Pageof 1