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Cellular reprogramming

Showing results (621-630 of 728) with videos related to

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Cellular Reprogramming|June 9, 2015
Runx1 and Runx3 Are Downstream Effectors of Nanog in Promoting Osteogenic Differentiation of the Mouse Mesenchymal Cell Line C3H10T1/2Tadahito Saito, Shinsuke Ohba, Fumiko Yano, et al.
Cellular Reprogramming|August 9, 2016
Hypoxic Preconditioning Improves the Therapeutic Potential of Aging Bone Marrow Mesenchymal Stem Cells in Streptozotocin-Induced Type-1 Diabetic MiceMuhammad Waseem, Irfan Khan, Hana'a Iqbal, et al.
Cellular Reprogramming|July 27, 2016
Gnotobiotic Miniature Pig Interbreed Somatic Cell Nuclear Transfer for XenotransplantationJeong Ho Hwang, Sang Eun Kim, Mukesh Kumar Gupta, et al.
Cellular Reprogramming|July 27, 2016
MEF2 Transcription Factor Regulates Osteogenic Differentiation of Dental Pulp Stem CellsShuling Shen, Dan Huang, Guijuan Feng, et al.
Cellular Reprogramming|June 21, 2017
Hematopoietic Developmental Potential of Human Pluripotent Stem Cell Lines Is Accompanied by the Morphology of Embryoid Bodies and the Expression of Endodermal and Hematopoietic MarkersLenka Tesarova, Pavel Simara, Stanislav Stejskal, et al.
Cellular Reprogramming|February 6, 2010
A new title and a new focus: Cellular ReprogrammingIan Wilmut
Cellular Reprogramming|February 6, 2010
Pre- and postimplantation development of swine-cloned embryos derived from fibroblasts and bone marrow cells after inhibition of histone deacetylasesMario A Martinez-Diaz, Limei Che, Marcelo Albornoz, et al.
Cellular Reprogramming|February 6, 2010
Generation of mouse embryonic stem cell lines from zona-free nuclear transfer embryosJulianna Kobolak, Szilard Bodo, Ruttachuk Rungsiwiwut, et al.
Cellular Reprogramming|May 31, 2017
Developmental Competence and Epigenetic Profile of Porcine Embryos Produced by Two Different Cloning MethodsYing Liu, Andrea Lucas-Hahn, Bjoern Petersen, et al.
Cellular Reprogramming|August 9, 2018
Porcine Fetal-Derived Fibroblasts Alter Gene Expression and Mitochondria to Compensate for Hypoxic Stress During CultureBethany R Mordhorst, Stephanie L Murphy, Martin Schauflinger, et al.
Pageof 73

Showing results (621-630 of 728) with videos related to

Sort By:
Pageof 73
Cellular Reprogramming|June 9, 2015
Runx1 and Runx3 Are Downstream Effectors of Nanog in Promoting Osteogenic Differentiation of the Mouse Mesenchymal Cell Line C3H10T1/2Tadahito Saito, Shinsuke Ohba, Fumiko Yano, et al.
Cellular Reprogramming|August 9, 2016
Hypoxic Preconditioning Improves the Therapeutic Potential of Aging Bone Marrow Mesenchymal Stem Cells in Streptozotocin-Induced Type-1 Diabetic MiceMuhammad Waseem, Irfan Khan, Hana'a Iqbal, et al.
Cellular Reprogramming|July 27, 2016
Gnotobiotic Miniature Pig Interbreed Somatic Cell Nuclear Transfer for XenotransplantationJeong Ho Hwang, Sang Eun Kim, Mukesh Kumar Gupta, et al.
Cellular Reprogramming|July 27, 2016
MEF2 Transcription Factor Regulates Osteogenic Differentiation of Dental Pulp Stem CellsShuling Shen, Dan Huang, Guijuan Feng, et al.
Cellular Reprogramming|June 21, 2017
Hematopoietic Developmental Potential of Human Pluripotent Stem Cell Lines Is Accompanied by the Morphology of Embryoid Bodies and the Expression of Endodermal and Hematopoietic MarkersLenka Tesarova, Pavel Simara, Stanislav Stejskal, et al.
Cellular Reprogramming|February 6, 2010
A new title and a new focus: Cellular ReprogrammingIan Wilmut
Cellular Reprogramming|February 6, 2010
Pre- and postimplantation development of swine-cloned embryos derived from fibroblasts and bone marrow cells after inhibition of histone deacetylasesMario A Martinez-Diaz, Limei Che, Marcelo Albornoz, et al.
Cellular Reprogramming|February 6, 2010
Generation of mouse embryonic stem cell lines from zona-free nuclear transfer embryosJulianna Kobolak, Szilard Bodo, Ruttachuk Rungsiwiwut, et al.
Cellular Reprogramming|May 31, 2017
Developmental Competence and Epigenetic Profile of Porcine Embryos Produced by Two Different Cloning MethodsYing Liu, Andrea Lucas-Hahn, Bjoern Petersen, et al.
Cellular Reprogramming|August 9, 2018
Porcine Fetal-Derived Fibroblasts Alter Gene Expression and Mitochondria to Compensate for Hypoxic Stress During CultureBethany R Mordhorst, Stephanie L Murphy, Martin Schauflinger, et al.
Pageof 73