Showing results (1-10 of 11) with videos related to
Sort By:
Pageof 2
The Journal of Biological Chemistry|January 28, 2016
Megakaryocytic Maturation in Response to Shear Flow Is Mediated by the Activator Protein 1 (AP-1) Transcription Factor via Mitogen-activated Protein Kinase (MAPK) MechanotransductionStephanie A Luff, Eleftherios T PapoutsakisPlos One|September 20, 2018
Role of p53 and transcription-independent p53-induced apoptosis in shear-stimulated megakaryocytic maturation, particle generation, and platelet biogenesisStephanie A Luff, Chen-Yuan Kao, Eleftherios T PapoutsakisStem Cell Research|May 15, 2022
CD1d expression demarcates CDX4+ hemogenic mesoderm with definitive hematopoietic potentialJ Philip Creamer, Stephanie A Luff, Hao Yu, et al.Experimental Hematology|July 29, 2024
Generation of functionally distinct hemogenic endothelial cell populations from pluripotent stem cellsStephanie A Luff, Nestor A Fernandez, Christopher M Sturgeon, et al.Biorxiv : the Preprint Server for Biology|July 15, 2025
WNT signaling in human pluripotent stem cells promotes HDAC2-dependent epigenetic programs and development of retinoic acid-responsive mesodermBao Q Thai, Stephanie A Luff, Jared M Churko, et al.Nature Cell Biology|July 17, 2023
Haematopoietic stem and progenitor cell heterogeneity is inherited from the embryonic endotheliumJoey J Ghersi, Gabriel Baldissera, Jared Hintzen, et al.Stem Cell Reports|June 18, 2026
WNT signaling in human pluripotent stem cells promotes HDAC2-dependent epigenetic programs and development of retinoic acid-responsive mesodermBao Q Thai, Elizabeth J Sargent, Stephanie A Luff, et al.Nature Cell Biology|April 28, 2022
Identification of a retinoic acid-dependent haemogenic endothelial progenitor from human pluripotent stem cellsStephanie A Luff, J Philip Creamer, Sara Valsoni, et al.Developmental Cell|March 21, 2020
Potently Cytotoxic Natural Killer Cells Initially Emerge from Erythro-Myeloid Progenitors during Mammalian DevelopmentCarissa Dege, Katherine H Fegan, J Philip Creamer, et al.Development (Cambridge, England)|February 18, 2022
Derivation of extra-embryonic and intra-embryonic macrophage lineages from human pluripotent stem cellsAndrea L Bredemeyer, Junedh M Amrute, Andrew L Koenig, et al.Pageof 2