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Current Opinion in Genetics & Development|March 7, 2017
DNA methylation homeostasis in human and mouse developmentMario Iurlaro, Ferdinand von Meyenn, Wolf ReikCell|June 6, 2015
Forget the Parents: Epigenetic Reprogramming in Human Germ CellsFerdinand von Meyenn, Wolf ReikMethods in Molecular Biology (Clifton, N.J.)|December 6, 2021
Profiling DNA Methylation in Human Naïve Pluripotent Stem CellsFerdinand von MeyennStem Cell Reports|March 8, 2016
Naive Pluripotent Stem Cells Derived Directly from Isolated Cells of the Human Inner Cell MassGe Guo, Ferdinand von Meyenn, Fatima Santos, et al.Genome Biology|April 13, 2017
Multi-tissue DNA methylation age predictor in mouseThomas M Stubbs, Marc Jan Bonder, Anne-Katrien Stark, et al.Developmental Cell|June 18, 2024
Human trophectoderm becomes multi-layered by internalization at the polar regionElena Corujo-Simon, Lawrence Edward Bates, Ayaka Yanagida, et al.Cell Reports|January 24, 2019
Transcriptional Heterogeneity in Naive and Primed Human Pluripotent Stem Cells at Single-Cell ResolutionTobias Messmer, Ferdinand von Meyenn, Aurora Savino, et al.Proceedings of the National Academy of Sciences of the United States of America|October 13, 2016
Retinol and ascorbate drive erasure of epigenetic memory and enhance reprogramming to naïve pluripotency by complementary mechanismsTimothy Alexander Hore, Ferdinand von Meyenn, Mirunalini Ravichandran, et al.Molecular Cell|May 31, 2016
Impairment of DNA Methylation Maintenance Is the Main Cause of Global Demethylation in Naive Embryonic Stem CellsFerdinand von Meyenn, Mario Iurlaro, Ehsan Habibi, et al.Development (Cambridge, England)|August 3, 2017
Epigenetic resetting of human pluripotencyGe Guo, Ferdinand von Meyenn, Maria Rostovskaya, et al.Pageof 24