Leiden University Scholarly Publications

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Spatial dynamic metabolomics identifies metabolic cell fate trajectories in human kidney differentiation
Epiblast inducers capture mouse trophectoderm stem cells in vitro and pattern blastoids for implantation in utero
Stem cell-based islet replacement therapy in diabetes: A road trip that reached the clinic
Building consensus on definition and nomenclature of hepatic, pancreatic, and biliary organoids
Endothelium-derived stromal cells contribute to hematopoietic bone marrow niche formation
Introductions to the Community: Early-Career Researchers in the Time of COVID-19
Computational stem cell biology
Scientific collaboration and communication in the time of COVID-19: a chat with Christine Mummery
Human-iPSC-derived cardiac stromal cells enhance maturation in 3D cardiac microtissues and reveal non-cardiomyocyte contributions to heart disease
Human-iPSC-derived cardiac stromal cells enhance maturation in 3D cardiac microtissues and reveal non-cardiomyocyte contributions to heart disease
Cholesterol Metabolism Is a Druggable Axis that Independently Regulates Tau and Amyloid-beta in iPSC-Derived Alzheimer's Disease Neurons
Integrative Proteomic Profiling Reveals PRC2-Dependent Epigenetic Crosstalk Maintains Ground-State Pluripotency
3D Modeling of Esophageal Development using Human PSC-Derived Basal Progenitors Reveals a Critical Role for Notch Signaling
Autologous iPSC-Based Vaccines Elicit Anti-tumor Responses In Vivo
Ectopic miR-125a Expression Induces Long-Term Repopulating Stem Cell Capacity in Mouse and Human Hematopoietic Progenitors
De Novo Prediction of Stem Cell Identity using Single-Cell Transcriptome Data
Complex Tissue and Disease Modeling using hiPSCs
What Endothelial Cells from Patient iPSCs Can Tell Us about Aortic Valve Disease
Mesenchymal Stromal Cells: Sensors and Switchers of Inflammation
Canonical Wnt Signaling Regulates Hematopoiesis in a Dosage-Dependent Fashion
Canonical wnt signaling regulates hematopoiesis in a dosage-dependent fashion
Getting to the Heart of the Matter: Direct Reprogramming to Cardiomyocytes
Getting to the heart of the matter: direct reprogramming to cardiomyocytes