| Mesenchymal Stromal Cells: Clinical Challenges and Therapeutic Opportunities |
229 |
| Human Hippocampal Neurogenesis Persists throughout Aging |
170 |
| METTL14 Inhibits Hematopoietic Stem/Progenitor Differentiation and Promotes Leukemogenesis via mRNA m(6)A Modification |
114 |
| Human Adult Neurogenesis: Evidence and Remaining Questions |
109 |
| Human iPSC-Derived Natural Killer Cells Engineered with Chimeric Antigen Receptors Enhance Anti-tumor Activity |
102 |
| Complex Oscillatory Waves Emerging from Cortical Organoids Model Early Human Brain Network Development |
73 |
| Derivation of Human Trophoblast Stem Cells |
71 |
| Human Pancreatic Tumor Organoids Reveal Loss of Stem Cell Niche Factor Dependence during Disease Progression |
71 |
| Organs-on-a-Chip: A Fast Track for Engineered Human Tissues in Drug Development |
71 |
| Human Hippocampal Neurogenesis Persists in Aged Adults and Alzheimer's Disease Patients |
70 |
| Targeting Cancer Stemness in the Clinic: From Hype to Hope |
69 |
| Clonal Hematopoiesis and Evolution to Hematopoietic Malignancies |
67 |
| Cancer Stem Cells: The Architects of the Tumor Ecosystem |
66 |
| Comparative Analysis and Refinement of Human PSC-Derived Kidney Organoid Differentiation with Single-Cell Transcriptomics |
65 |
| Targeting the RNA m(6)A Reader YTHDF2 Selectively Compromises Cancer Stem Cells in Acute Myeloid Leukemia |
63 |
| Single-Cell Transcriptomics Meets Lineage Tracing |
63 |
| YAP/TAZ-Dependent Reprogramming of Colonic Epithelium Links ECM Remodeling to Tissue Regeneration |
63 |
| Phenotypic Plasticity: Driver of Cancer Initiation, Progression, and Therapy Resistance |
60 |
| Targeted Disruption of HLA Genes via CRISPR-Cas9 Generates iPSCs with Enhanced Immune Compatibility |
60 |
| A Comprehensive Human Gastric Cancer Organoid Biobank Captures Tumor Subtype Heterogeneity and Enables Therapeutic Screening |
57 |
| Human Intestinal Organoids Maintain Self-Renewal Capacity and Cellular Diversity in Niche-Inspired Culture Condition |
54 |
| PPM1D Mutations Drive Clonal Hematopoiesis in Response to Cytotoxic Chemotherapy |
51 |
| High-Throughput Screening Enhances Kidney Organoid Differentiation from Human Pluripotent Stem Cells and Enables Automated Multidimensional Phenotyping |
51 |
| Fasting Activates Fatty Acid Oxidation to Enhance Intestinal Stem Cell Function during Homeostasis and Aging |
49 |
| Vascular Tissue Engineering: Progress, Challenges, and Clinical Promise |
48 |
| Human iPSC-Derived Blood-Brain Barrier Chips Enable Disease Modeling and Personalized Medicine Applications |
46 |
| Engineering Stem Cell Self-organization to Build Better Organoids |
45 |
| Inhibition of Inflammatory Signaling in Tet2 Mutant Preleukemic Cells Mitigates Stress-Induced Abnormalities and Clonal Hematopoiesis |
43 |
| hESC-Derived Thalamic Organoids Form Reciprocal Projections When Fused with Cortical Organoids |
42 |
| Inhibition of Endosteal Vascular Niche Remodeling Rescues Hematopoietic Stem Cell Loss in AML |
41 |
| Cholesterol Metabolism Is a Druggable Axis that Independently Regulates Tau and Amyloid-beta in iPSC-Derived Alzheimer's Disease Neurons |
40 |
| Remodeling of Bone Marrow Hematopoietic Stem Cell Niches Promotes Myeloid Cell Expansion during Premature or Physiological Aging |
40 |
| Single-Cell Transcriptomic Analysis of Cardiac Differentiation from Human PSCs Reveals HOPX-Dependent Cardiomyocyte Maturation |
39 |
| Single-Cell RNA Sequencing Analysis Reveals Sequential Cell Fate Transition during Human Spermatogenesis |
38 |
| Causes and Consequences of Hematopoietic Stem Cell Heterogeneity |
38 |
| AMPK/FIS1-Mediated Mitophagy Is Required for Self-Renewal of Human AML Stem Cells |
38 |
| Macrophage-Derived Extracellular Succinate Licenses Neural Stem Cells to Suppress Chronic Neuroinflammation |
37 |
| Mesenchymal Precursor Cells in Adult Nerves Contribute to Mammalian Tissue Repair and Regeneration |
37 |
| Paneth Cell Multipotency Induced by Notch Activation following Injury |
37 |
| Blood Development: Hematopoietic Stem Cell Dependence and Independence |
36 |
| Phospholipid Remodeling and Cholesterol Availability Regulate Intestinal Stemness and Tumorigenesis |
36 |
| Metformin Restores CNS Remyelination Capacity by Rejuvenating Aged Stem Cells |
35 |
| Precise Gene Editing Preserves Hematopoietic Stem Cell Function following Transient p53-Mediated DNA Damage Response |
35 |
| Th17 Lymphocytes Induce Neuronal Cell Death in a Human iPSC-Based Model of Parkinson's Disease |
35 |
| Chronic Liver Injury Induces Conversion of Biliary Epithelial Cells into Hepatocytes |
35 |
| A First-in-Human, Phase I Study of Neural Stem Cell Transplantation for Chronic Spinal Cord Injury |
34 |
| The NAD-Booster Nicotinamide Riboside Potently Stimulates Hematopoiesis through Increased Mitochondrial Clearance |
34 |
| Engineering Stem and Stromal Cell Therapies for Musculoskeletal Tissue Repair |
31 |
| Stem Cell Quiescence: Dynamism, Restraint, and Cellular Idling |
31 |
| Adult Neurogenesis Is Sustained by Symmetric Self-Renewal and Differentiation |
31 |
| Stem Cell Therapies for Treating Diabetes: Progress and Remaining Challenges |
31 |
| Drug Screening in Human PSC-Cardiac Organoids Identifies Pro-proliferative Compounds Acting via the Mevalonate Pathway |
29 |
| Muscle Satellite Cell Cross-Talk with a Vascular Niche Maintains Quiescence via VEGF and Notch Signaling |
28 |
| In Vitro Expansion of Primary Human Hepatocytes with Efficient Liver Repopulation Capacity |
28 |
| TNF-alpha Coordinates Hematopoietic Stem Cell Survival and Myeloid Regeneration |
28 |
| CD157 Marks Tissue-Resident Endothelial Stem Cells with Homeostatic and Regenerative Properties |
28 |
| Homeostatic Epidermal Stem Cell Self-Renewal Is Driven by Local Differentiation |
28 |
| Reciprocal Signaling between Glioblastoma Stem Cells and Differentiated Tumor Cells Promotes Malignant Progression |
28 |
| Orienting Muscle Stem Cells for Regeneration in Homeostasis, Aging, and Disease |
27 |
| Regenerating Eye Tissues to Preserve and Restore Vision |
27 |
| Somatic Cell Nuclear Transfer Reprogramming: Mechanisms and Applications |
27 |
| Aging Disrupts Muscle Stem Cell Function by Impairing Matricellular WISP1 Secretion from Fibro-Adipogenic Progenitors |
27 |
| Generation of Hepatic Stellate Cells from Human Pluripotent Stem Cells Enables In Vitro Modeling of Liver Fibrosis |
27 |
| Endothelial Regeneration of Large Vessels Is a Biphasic Process Driven by Local Cells with Distinct Proliferative Capacities |
26 |
| Probing the Tumor Suppressor Function of BAP1 in CRISPR-Engineered Human Liver Organoids |
25 |
| CD150(high) Bone Marrow Tregs Maintain Hematopoietic Stem Cell Quiescence and Immune Privilege via Adenosine |
25 |
| CRISPR Activation Screens Systematically Identify Factors that Drive Neuronal Fate and Reprogramming |
25 |
| Large-Scale Clonal Analysis Resolves Aging of the Mouse Hematopoietic Stem Cell Compartment |
25 |
| Single-Cell Analysis of the Liver Epithelium Reveals Dynamic Heterogeneity and an Essential Role for YAP in Homeostasis and Regeneration |
25 |
| Esophageal Organoids from Human Pluripotent Stem Cells Delineate Sox2 Functions during Esophageal Specification |
25 |
| Generation of Human PSC-Derived Kidney Organoids with Patterned Nephron Segments and a De Novo Vascular Network |
24 |
| Single-Cell RNA-Seq Reveals Dynamic Early Embryonic-like Programs during Chemical Reprogramming |
24 |
| Hominoid-Specific Transposable Elements and KZFPs Facilitate Human Embryonic Genome Activation and Control Transcription in Naive Human ESCs |
24 |
| Reconstruction of the Human Colon Epithelium In Vivo |
24 |
| YAP, but Not RSPO-LGR4/ Signaling in Biliary Epithelial Cells Promotes a Ductular Reaction in Response to Liver Injury |
24 |
| A Linc1405/Eomes Complex Promotes Cardiac Mesoderm Specification and Cardiogenesis |
24 |
| Hypoxic Induction of Vasorin Regulates Notch1 Turnover to Maintain Glioma Stem-like Cells |
23 |
| Cyclosporine H Overcomes Innate Immune Restrictions to Improve Lentiviral Transduction and Gene Editing In Human Hematopoietic Stem Cells |
23 |
| Single-Cell Sequencing of iPSC-Dopamine Neurons Reconstructs Disease Progression and Identifies HDAC4 as a Regulator of Parkinson Cell Phenotypes |
23 |
| Efficient Generation of CA3 Neurons from Human Pluripotent Stem Cells Enables Modeling of Hippocampal Connectivity In Vitro |
23 |
| CRISPR-Based Chromatin Remodeling of the Endogenous Oct4 or Sox2 Locus Enables Reprogramming to Pluripotency |
22 |
| Defining Adult Stem Cell Function at Its Simplest: The Ability to Replace Lost Cells through Mitosis |
22 |
| Single-Cell Proteomics Reveal that Quantitative Changes in Co-expressed Lineage-Specific Transcription Factors Determine Cell Fate |
21 |
| Transcription Factors Drive Tet2-Mediated Enhancer Demethylation to Reprogram Cell Fate |
21 |
| Enhancing T Cell Receptor Stability in Rejuvenated iPSC-Derived T Cells Improves Their Use in Cancer Immunotherapy |
21 |
| Cellular Plasticity in Intestinal Homeostasis and Disease |
21 |
| Impaired Notch Signaling Leads to a Decrease in p53 Activity and Mitotic Catastrophe in Aged Muscle Stem Cells |
20 |
| Phase I Trial: Cirmtuzumab Inhibits ROR1 Signaling and Stemness Signatures in Patients with Chronic Lymphocytic Leukemia |
20 |
| Competition for Mitogens Regulates Spermatogenic Stem Cell Homeostasis in an Open Niche |
20 |
| Restricted Hematopoietic Progenitors and Erythropoiesis Require SCF from Leptin Receptor plus Niche Cells in the Bone Marrow |
20 |
| A Human iPSC Double-Reporter System Enables Purification of Cardiac Lineage Subpopulations with Distinct Function and Drug Response Profiles |
20 |
| Direct&IT In Vivo&IT Reprogramming with Sendai Virus Vectors Improves Cardiac Function after Myocardial Infarction |
20 |
| A Subset of TREM2(+) Dermal Macrophages Secretes Oncostatin M to Maintain Hair Follicle Stem Cell Quiescence and Inhibit Hair Growth |
20 |
| Functional Dissection of the Enhancer Repertoire in Human Embryonic Stem Cells |
20 |
| Single-Cell Transcriptomics Uncovers Glial Progenitor Diversity and Cell Fate Determinants during Development and Gliomagenesis |
19 |
| SUMO Safeguards Somatic and Pluripotent Cell Identities by Enforcing Distinct Chromatin States |
19 |
| An ERK-Dependent Feedback Mechanism Prevents Hematopoietic Stem Cell Exhaustion |
19 |
| Outcompeting p53-Mutant Cells in the Normal Esophagus by Redox Manipulation |
19 |
| Lysosomal Signaling Licenses Embryonic Stem Cell Differentiation via Inactivation of Tfe3 |
18 |
| Endogenous Reprogramming of Alpha Cells into Beta Cells, Induced by Viral Gene Therapy, Reverses Autoimmune Diabetes |
18 |
| Lipid Deprivation Induces a Stable, Naive-to-Primed Intermediate State of Pluripotency in Human PSCs |
18 |
| Temporal Layering of Signaling Effectors Drives Chromatin Remodeling during Hair Follicle Stem Cell Lineage Progression |
17 |
| Highly Efficient and Marker-free Genome Editing of Human Pluripotent Stem Cells by CRISPR-Cas9 RNP and AAV6 Donor-Mediated Homologous Recombination |
17 |
| Stress-Induced Changes in Bone Marrow Stromal Cell Populations Revealed through Single-Cell Protein Expression Mapping |
17 |
| GFAP Mutations in Astrocytes Impair Oligodendrocyte Progenitor Proliferation and Myelination in an hiPSC Model of Alexander Disease |
17 |
| Inhibition of Aberrant DNA Re-methylation Improves Post-implantation Development of Somatic Cell Nuclear Transfer Embryos |
17 |
| Myoepithelial Cells of Submucosal Glands Can Function as Reserve Stem Cells to Regenerate Airways after Injury |
17 |
| PRC1 Fine-tunes Gene Repression and Activation to Safeguard Skin Development and Stem Cell Specification |
17 |
| Fixation and Spread of Somatic Mutations in Adult Human Colonic Epithelium |
16 |
| Wnt4 from the Niche Controls the Mechano-Properties and Quiescent State of Muscle Stem Cells |
16 |
| Distinct Bone Marrow Sources of Pleiotrophin Control Hematopoietic Stem Cell Maintenance and Regeneration |
16 |
| Identification of Functionally Distinct Mx1+alpha SMA plus Periosteal Skeletal Stem Cells |
16 |
| The Dystrophin Glycoprotein Complex Regulates the Epigenetic Activation of Muscle Stem Cell Commitment |
16 |
| OLIG2 Drives Abnormal Neurodevelopmental Phenotypes in Human iPSC-Based Organoid and Chimeric Mouse Models of Down Syndrome |
16 |
| Mesenchymal Niche-Specific Expression of Cxcl12 Controls Quiescence of Treatment-Resistant Leukemia Stem Cells |
16 |
| Chronic Inflammation Directs an Olfactory Stem Cell Functional Switch from Neuroregeneration to Immune Defense |
16 |
| Autologous iPSC-Based Vaccines Elicit Anti-tumor Responses In Vivo |
16 |
| PGC-1 alpha Controls Skeletal Stem Cell Fate and Bone-Fat Balance in Osteoporosis and Skeletal Aging by Inducing TAZ |
16 |
| GRHL2-Dependent Enhancer Switching Maintains a Pluripotent Stem Cell Transcriptional Subnetwork after Exit from Naive Pluripotency |
16 |
| Neocortical Expansion Due to Increased Proliferation of Basal Progenitors Is Linked to Changes in Their Morphology |
15 |
| MAP4K4 Inhibition Promotes Survival of Human Stem Cell-Derived Cardiomyocytes and Reduces Infarct Size In Vivo |
15 |
| Epithelial Sodium Channel Regulates Adult Neural Stem Cell Proliferation in a Flow-Dependent Manner |
15 |
| Daily Onset of Light and Darkness Differentially Controls Hematopoietic Stem Cell Differentiation and Maintenance |
15 |
| Autocrine Mfge8 Signaling Prevents Developmental Exhaustion of the Adult Neural Stem Cell Pool |
15 |
| Phospho-regulation of ATOH1 Is Required for Plasticity of Secretory Progenitors and Tissue Regeneration |
15 |
| Hic1 Defines Quiescent Mesenchymal Progenitor Subpopulations with Distinct Functions and Fates in Skeletal Muscle Regeneration |
15 |
| Defining the Identity and Dynamics of Adult Gastric Isthmus Stem Cells |
15 |
| 3D Modeling of Esophageal Development using Human PSC-Derived Basal Progenitors Reveals a Critical Role for Notch Signaling |
14 |
| Notch-Induced miR-708 Antagonizes Satellite Cell Migration and Maintains Quiescence |
14 |
| Loss of H3K27me3 Imprinting in Somatic Cell Nuclear Transfer Embryos Disrupts Post-Implantation Development |
14 |
| Cohesin Members Stag1 and Stag2 Display Distinct Roles in Chromatin Accessibility and Topological Control of HSC Self-Renewal and Differentiation |
14 |
| Organoid-Induced Differentiation of Conventional T Cells from Human Pluripotent Stem Cells |
14 |
| FOXO3-Engineered Human ESC-Derived Vascular Cells Promote Vascular Protection and Regeneration |
14 |
| Vangl2/RhoA Signaling Pathway Regulates Stem Cell Self-Renewal Programs and Growth in Rhabdomyosarcoma |
14 |
| Oligodendrocyte Death in Pelizaeus-Merzbacher Disease Is Rescued by Iron Chelation |
14 |
| Muscle Stem Cells Exhibit Distinct Clonal Dynamics in Response to Tissue Repair and Homeostatic Aging |
14 |
| Defining Human Pluripotency |
14 |
| Adult Neurogenesis, Glia, and the Extracellular Matrix |
13 |
| Spatially Restricted Stromal Wnt Signaling Restrains Prostate Epithelial Progenitor Growth through Direct and Indirect Mechanisms |
13 |
| Modeling the Pathological Long-Range Regulatory Effects of Human Structural Variation with Patient-Specific hiPSCs |
13 |
| A Non-canonical BCOR-PRC1.1 Complex Represses Differentiation Programs in Human ESCs |
13 |
| Capturing Totipotent Stem Cells |
13 |
| Prospective Isolation of Poised iPSC Intermediates Reveals Principles of Cellular Reprogramming |
13 |
| Id1 Ablation Protects Hematopoietic Stem Cells from Stress-Induced Exhaustion and Aging |
13 |
| The Adult Adrenal Cortex Undergoes Rapid Tissue Renewal in a Sex-Specific Manner |
13 |
| Dppa2/4 Facilitate Epigenetic Remodeling during Reprogramming to Pluripotency |
13 |
| Human Pluripotent Stem Cell-Derived Cardiovascular Cells: From Developmental Biology to Therapeutic Applications |
13 |
| Integrative Proteomic Profiling Reveals PRC2-Dependent Epigenetic Crosstalk Maintains Ground-State Pluripotency |
12 |
| SIRT1 Activation Disrupts Maintenance of Myelodysplastic Syndrome Stem and Progenitor Cells by Restoring TET2 Function |
12 |
| Tbx6 Induces Nascent Mesoderm from Pluripotent Stem Cells and Temporally Controls Cardiac versus Somite Lineage Diversification |
12 |
| EGFR-Aurka Signaling Rescues Polarity and Regeneration Defects in Dystrophin-Deficient Muscle Stem Cells by Increasing Asymmetric Divisions |
12 |
| Mapping the Global Chromatin Connectivity Network for Sox2 Function in Neural Stem Cell Maintenance |
12 |
| Engineering Genetic Predisposition in Human Neuroepithelial Stem Cells Recapitulates Medulloblastoma Tumorigenesis |
12 |
| Polycomb/Trithorax Antagonism: Cellular Memory in Stem Cell Fate and Function |
12 |
| Coordinated Control of mRNA and rRNA Processing Controls Embryonic Stem Cell Pluripotency and Differentiation |
12 |
| Harnessing Hematopoietic Stem Cell Low Intracellular Calcium Improves Their Maintenance In Vitro |
12 |
| yylncT Defines a Class of Divergently Transcribed lncRNAs and Safeguards the T-mediated Mesodermal Commitment of Human PSCs |
11 |
| Generation of Bimaternal and Bipaternal Mice from Hypomethylated Haploid ESCs with Imprinting Region Deletions |
11 |
| Radial Glial Fibers Promote Neuronal Migration and Functional Recovery after Neonatal Brain Injury |
11 |
| Cardiac Reprogramming Factors Synergistically Activate Genome-wide Cardiogenic Stage-Specific Enhancers |
11 |
| Hoxc-Dependent Mesenchymal Niche Heterogeneity Drives Regional Hair Follicle Regeneration |
11 |
| NHEJ-Mediated Repair of CRISPR-Cas9-Induced DNA Breaks Efficiently Corrects Mutations in HSPCs from Patients with Fanconi Anemia |
11 |
| Apelin(+) Endothelial Niche Cells Control Hematopoiesis and Mediate Vascular Regeneration after Myeloablative Injury |
11 |
| GPD1 Specifically Marks Dormant Glioma Stem Cells with a Distinct Metabolic Profile |
10 |
| Constructing and Deconstructing Cancers using Human Pluripotent Stem Cells and Organoids |
10 |
| The RNA Helicase DDX6 Controls Cellular Plasticity by Modulating P-Body Homeostasis |
10 |
| Sphingolipid Modulation Activates Proteostasis Programs to Govern Human Hematopoietic Stem Cell Self-Renewal |
10 |
| Human ESC-Derived Chimeric Mouse Models of Huntington's Disease Reveal Cell-Intrinsic Defects in Glial Progenitor Cell Differentiation |
10 |
| Excluding Oct4 from Yamanaka Cocktail Unleashes the Developmental Potential of iPSCs |
10 |
| Complementary Activity of ETV RBPJ, and TCF3 Drives Formative Transition from Naive Pluripotency |
10 |
| Loss of SATB1 Induces p21-Dependent Cellular Senescence in Post-mitotic Dopaminergic Neurons |
10 |
| Chromatin Accessibility Dynamics during Chemical Induction of Pluripotency |
10 |
| Esrrb Unlocks Silenced Enhancers for Reprogramming to Naive Pluripotency |
10 |
| A Homeostatic Arid1a-Dependent Permissive Chromatin State Licenses Hepatocyte Responsiveness to Liver-Injury-Associated YAP Signaling |
10 |
| Single-Cell Transcriptomic Analyses of Cell Fate Transitions during Human Cardiac Reprogramming |
10 |
| TFAP2C-and p63-Dependent Networks Sequentially Rearrange Chromatin Landscapes to Drive Human Epidermal Lineage Commitment |
9 |
| Combined Single-Cell Profiling of lncRNAs and Functional Screening Reveals that H19 Is Pivotal for Embryonic Hematopoietic Stem Cell Development |
9 |
| Epidermal Tissue Adapts to Restrain Progenitors Carrying Clonal p53 Mutations |
9 |
| Interconversion between Tumorigenic and Differentiated States in Acute Myeloid Leukemia |
9 |
| An Intermediate Pluripotent State Controlled by MicroRNAs Is Required for the Naive-to-Primed Stem Cell Transition |
9 |
| Clinical Translation of Pluripotent Stem Cell Therapies: Challenges and Considerations |
9 |
| Lineage Tracing Reveals a Subset of Reserve Muscle Stem Cells Capable of Clonal Expansion under Stress |
9 |
| Submucosal Gland Myoepithelial Cells Are Reserve Stem Cells That Can Regenerate Mouse Tracheal Epithelium |
9 |
| hPSC Modeling Reveals that Fate Selection of Cortical Deep Projection Neurons Occurs in the Subplate |
9 |
| Modeling Monogenic Diabetes using Human ESCs Reveals Developmental and Metabolic Deficiencies Caused by Mutations in HNF1A |
8 |
| Identification of Embryonic Neural Plate Border Stem Cells and Their Generation by Direct Reprogramming from Adult Human Blood Cells |
8 |
| Neutralizing Gatad2a-Chd4-Mbd3/NuRD Complex Facilitates Deterministic Induction of Naive Pluripotency |
8 |
| Identification and Massively Parallel Characterization of Regulatory Elements Driving Neural Induction |
8 |
| Direct Induction of the Three Pre-implantation Blastocyst Cell Types from Fibroblasts |
8 |
| Skeletal Muscle Stem Cells from PSC-Derived Teratomas Have Functional Regenerative Capacity |
8 |
| Lentiviral Gene Therapy in HSCs Restores Lineage-Specific Foxp3 Expression and Suppresses Autoimmunity in a Mouse Model of IPEX Syndrome |
8 |
| Inhibition of Methyltransferase Setd7 Allows the In Vitro Expansion of Myogenic Stem Cells with Improved Therapeutic Potential |
8 |
| In Vivo Labeling by CD73 Marks Multipotent Stromal Cells and Highlights Endothelial Heterogeneity in the Bone Marrow Niche |
8 |
| Human Pluripotent Stem Cell-Derived Endoderm for Modeling Development and Clinical Applications |
8 |
| Ptpn21 Controls Hematopoietic Stem Cell Homeostasis and Biomechanics |
8 |
| Context-Specific Transcription Factor Functions Regulate Epigenomic and Transcriptional Dynamics during Cardiac Reprogramming |
8 |
| Antibody Conditioning Enables MHC-Mismatched Hematopoietic Stem Cell Transplants and Organ Graft Tolerance |
7 |
| RAL GTPases Drive Intestinal Stem Cell Function and Regeneration through Internalization of WNT Signalosomes |
7 |
| A CLK3-HMGA2 Alternative Splicing Axis Impacts Human Hematopoietic Stem Cell Molecular Identity throughout Development |
7 |
| Mitigating Antagonism between Transcription and Proliferation Allows Near-Deterministic Cellular Reprogramming |
7 |