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ESCs Require PRC2 to Direct the Successful Reprogramming of Differentiated Cells toward PluripotencyPEREIRA, Carlos F; PICCOLO, Francesco M; KOSEKI, Haruhiko et al.Cell stem cell. 2010, Vol 6, Num 6, pp 547-556, issn 1934-5909, 10 p.Article

Cellular Reprogramming in Pursuit of ImmortalityAZIM SURANI, M.Cell stem cell. 2012, Vol 11, Num 6, pp 748-750, issn 1934-5909, 3 p.Article

Historical Origins of Transdifferentiation and ReprogrammingGRAF, Thomas.Cell stem cell. 2011, Vol 9, Num 6, pp 504-516, issn 1934-5909, 13 p.Article

O-GlcNAc Regulates Pluripotency and Reprogramming by Directly Acting on Core Components of the Pluripotency NetworkJANG, Hyonchol; TAE WAN KIM; YOON, Sungho et al.Cell stem cell. 2012, Vol 11, Num 1, pp 62-74, issn 1934-5909, 13 p.Article

A Robust and Highly Efficient Immune Cell Reprogramming SystemBUSSMANN, Lars H; SCHUBERT, Alexis; GRAF, Thomas et al.Cell stem cell. 2009, Vol 5, Num 5, pp 554-566, issn 1934-5909, 13 p.Article

Direct Reprogramming of Fibroblasts into Neural Stem Cells by Defined FactorsDONG WOOK HAN; TAPIA, Natalia; GREBER, Boris et al.Cell stem cell. 2012, Vol 10, Num 4, pp 465-472, issn 1934-5909, 8 p.Article

Nuclear Cloning and Direct Reprogramming: The Long and the Short Path to StockholmJAENISCH, Rudolf.Cell stem cell. 2012, Vol 11, Num 6, pp 744-747, issn 1934-5909, 4 p.Article

Progress in understanding reprogramming to the induced pluripotent statePLATH, Kathrin; LOWRY, William E.Nature reviews. Genetics (Print). 2011, Vol 12, Num 4, pp 253-265, issn 1471-0056, 13 p.Article

Reprogramming Factor Expression Initiates Widespread Targeted Chromatin RemodelingKOCHE, Richard P; SMITH, Zachary D; ADLI, Mazhar et al.Cell stem cell. 2011, Vol 8, Num 1, pp 96-105, issn 1934-5909, 10 p.Article

Perspectives on cell reprogramming with RNASUL, Jai-Yoon; TAE KYUNG KIM; JAE HEE LEE et al.Trends in biotechnology (Regular ed.). 2012, Vol 30, Num 5, pp 243-249, issn 0167-7799, 7 p.Article

Regulation of Pluripotency and Cellular Reprogramming by the Ubiquitin-Proteasome SystemBUCKLEY, Shannon M; ARANDA-ORGILLES, Beatriz; STADTFELD, Matthias et al.Cell stem cell. 2012, Vol 11, Num 6, pp 783-798, issn 1934-5909, 16 p.Article

Reprogramming Factor Stoichiometry Influences the Epigenetic State and Biological Properties of Induced Pluripotent Stem CellsCAREY, Bryce W; MARKOULAKI, Styliani; WELSTEAD, G. Grant et al.Cell stem cell. 2011, Vol 9, Num 6, pp 588-598, issn 1934-5909, 11 p.Article

Reprogramming of T Cells from Human Peripheral BloodLOH, Yuin-Han; HARTUNG, Odelya; LENSCH, M. William et al.Cell stem cell. 2010, Vol 7, Num 1, pp 15-19, issn 1934-5909, 5 p.Article

Stat3 Activation Is Limiting for Reprogramming to Ground State PluripotencyJIAN YANG; VAN OOSTEN, Anouk L; THEUNISSEN, Thorold W et al.Cell stem cell. 2010, Vol 7, Num 3, pp 319-328, issn 1934-5909, 10 p.Article

Direct Reprogramming of Adult Human Fibroblasts to Functional Neurons under Defined ConditionsAMBASUDHAN, Rajesh; TALANTOVA, Maria; COLEMAN, Ronald et al.Cell stem cell. 2011, Vol 9, Num 2, pp 113-118, issn 1934-5909, 6 p.Article

Mouse ooplasm confers context- specific reprogramming capacityCHAN, Michelle M; SMITH, Zachary D; EGLI, Dieter et al.Nature genetics. 2012, Vol 44, Num 9, pp 978-980, issn 1061-4036, 3 p.Article

Transcriptional analysis of pluripotency reveals the Hippo pathway as a barrier to reprogrammingHAN QIN; BLASCHKE, Kathryn; WEI, Grace et al.Human molecular genetics (Print). 2012, Vol 21, Num 9, pp 2054-2067, issn 0964-6906, 14 p.Article

A Late Transition in Somatic Cell Reprogramming Requires Regulators Distinct from the Pluripotency NetworkGOLIPOUR, Azadeh; DAVID, Laurent; YU LIU et al.Cell stem cell. 2012, Vol 11, Num 6, pp 769-782, issn 1934-5909, 14 p.Article

Epigenetic factors influencing resistance to nuclear reprogrammingPASQUE, Vincent; JULLIEN, Jerome; MIYAMOTO, Kei et al.Trends in genetics (Regular ed.). 2011, Vol 27, Num 12, pp 516-525, issn 0168-9525, 10 p.Article

Understanding gene circuits at cell-fate branch points for rational cell reprogrammingZHOU, Joseph X; SUI HUANG.Trends in genetics (Regular ed.). 2011, Vol 27, Num 2, pp 55-62, issn 0168-9525, 8 p.Article

Highly Efficient Reprogramming to Pluripotency and Directed Differentiation of Human Cells with Synthetic Modified mRNAWARREN, Luigi; MANOS, Philip D; DALEY, George Q et al.Cell stem cell. 2010, Vol 7, Num 5, pp 618-630, issn 1934-5909, 13 p.Article

Early―stage epigenetic modification during somatic cell reprogramming by Parpl and Tet2DOEGE, Claudia A; INOUE, Keiichi; LEVINE, Ross L et al.Nature (London). 2012, Vol 488, Num 7413, pp 652-655, issn 0028-0836, 4 p.Article

Large intergenic non-coding RNA-RoR modulates reprogramming of human induced pluripotent stem cellsLOEWER, Sabine; CABILI, Moran N; MANOS, Philip D et al.Nature genetics. 2010, Vol 42, Num 12, pp 1113-1117, issn 1061-4036, 5 p.Article

Epiblast Stem Cell-Based System Reveals Reprogramming Synergy of Germline FactorsGILLICH, Astrid; BAO, Siqin; GRABOLE, Nils et al.Cell stem cell. 2012, Vol 10, Num 4, pp 425-439, issn 1934-5909, 15 p.Article

Methods for making induced pluripotent stem cells: reprogramming a la carteGONZALEZ, Federico; BOUE, Stéphanie; LZPISUA BELMONTE, Juan Carlos et al.Nature reviews. Genetics (Print). 2011, Vol 12, Num 4, pp 231-242, issn 1471-0056, 12 p.Article

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