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Biotechnology Progress|January 12, 2012
Large-scale compatible methods for the preservation of human embryonic stem cells: current perspectivesKaren CoopmanArtificial Cells, Nanomedicine, and Biotechnology|June 3, 2024
Cell microencapsulation techniques for cancer modelling and drug discoveryLisa Barrett, Karen CoopmanPolymers|April 11, 2019
Biocompatibility Assessment of Conducting PANI/Chitosan Nanofibers for Wound Healing ApplicationsPanagiota Moutsatsou, Karen Coopman, Stella GeorgiadouJournal of Translational Medicine|December 1, 2019
The impact of cryopreservation on bone marrow-derived mesenchymal stem cells: a systematic reviewSoukaina Bahsoun, Karen Coopman, Elizabeth C AkamStem Cell Research & Therapy|December 15, 2020
Quantitative assessment of the impact of cryopreservation on human bone marrow-derived mesenchymal stem cells: up to 24 h post-thaw and beyondSoukaina Bahsoun, Karen Coopman, Elizabeth C AkamBiotechnology Letters|September 25, 2013
Low temperature cell pausing: an alternative short-term preservation method for use in cell therapies including stem cell applicationsNathalie J Robinson, Andrew Picken, Karen CoopmanBiotechnology Letters|September 26, 2012
Multiparameter flow cytometry for the characterization of human embryonic stem cellsKathryn Brosnan, Andrew Want, Karen Coopman, et al.Biopreservation and Biobanking|September 12, 2022
Cryopreservation of Human Bone Marrow Derived Mesenchymal Stem Cells at High Concentration Is FeasibleSoukaina Bahsoun, Marie-Juliet Brown, Karen Coopman, et al.Stem Cells and Development|July 14, 2018
The Role of Dissolved Oxygen Levels on Human Mesenchymal Stem Cell Culture Success, Regulatory Compliance, and Therapeutic PotentialSoukaina Bahsoun, Karen Coopman, Nicholas R Forsyth, et al.Biotechnology Journal|December 4, 2015
Systematic microcarrier screening and agitated culture conditions improves human mesenchymal stem cell yield in bioreactorsQasim A Rafiq, Karen Coopman, Alvin W Nienow, et al.Pageof 4