Single-Cell Transcriptome Profiling Reveals β Cell Maturation in Stem Cell-Derived Islets after Transplantation is a research paper published in Cell Reports (2020). On theSindex it has a DataRank of 0. It has been cited 199 times.
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Foundation for Barnes-Jewish Hospital
Grant: UL1TR000448
Foundation for Barnes-Jewish Hospital
Grant: P30CA91842
Foundation for Barnes-Jewish Hospital
Grant: T32DK108742
Juvenile Diabetes Research Foundation International
Grant: 5-CDA-2017-391-A-N
National Institutes of Health
Grant: 5R01DK114233
NIDDK NIH HHS
Grant: R01 DK114233
NCI NIH HHS
Grant: P30 CA091842
NCATS NIH HHS
Grant: UL1 TR002345
National Institutes of Health
Grant: 5R01DK114233-05
STUDYING THE ROLE OF THE MICROENVIRONMENT ON DIFFERENTIATION AND MATURATION OF BETA CELLS
National Institutes of Health
Grant: 5T32DK108742-05
Imaging, Modeling and Engineering of Diabetic Tissues
National Institutes of Health
Grant: 4UL1TR000448-10
Washington University Institute of Clinical and Translational Sciences
National Institutes of Health
Grant: 5P30CA091842-05
Core--Pharmacology Facility
Juvenile Diabetes Research Foundation United States of America
University of Washington
Fields of Study
MeSH Terms
Keywords
Additional file 1 of Single-nucleus RNA sequencing of human pancreatic islets identifies novel gene sets and distinguishes β-cell subpopulations with dynamic transcriptome profiles
Additional file 1 of Single-nucleus RNA sequencing of human pancreatic islets identifies novel gene sets and distinguishes β-cell subpopulations with dynamic transcriptome profiles
Additional file 1 of Comparative and integrative single cell analysis reveals new insights into the transcriptional immaturity of stem cell-derived β cells
Additional file 1 of Comparative and integrative single cell analysis reveals new insights into the transcriptional immaturity of stem cell-derived β cells
Additional file 4 of Comparative and integrative single cell analysis reveals new insights into the transcriptional immaturity of stem cell-derived β cells
Additional file 7 of Comparative and integrative single cell analysis reveals new insights into the transcriptional immaturity of stem cell-derived β cells
Additional file 4 of Comparative and integrative single cell analysis reveals new insights into the transcriptional immaturity of stem cell-derived β cells
Additional file 6 of Comparative and integrative single cell analysis reveals new insights into the transcriptional immaturity of stem cell-derived β cells
Additional file 5 of Comparative and integrative single cell analysis reveals new insights into the transcriptional immaturity of stem cell-derived β cells
Additional file 5 of Comparative and integrative single cell analysis reveals new insights into the transcriptional immaturity of stem cell-derived β cells
Additional file 7 of Comparative and integrative single cell analysis reveals new insights into the transcriptional immaturity of stem cell-derived β cells
Additional file 6 of Comparative and integrative single cell analysis reveals new insights into the transcriptional immaturity of stem cell-derived β cells
Additional file 3 of Comparative and integrative single cell analysis reveals new insights into the transcriptional immaturity of stem cell-derived β cells
Additional file 2 of Comparative and integrative single cell analysis reveals new insights into the transcriptional immaturity of stem cell-derived β cells
Additional file 2 of Comparative and integrative single cell analysis reveals new insights into the transcriptional immaturity of stem cell-derived β cells
Additional file 3 of Comparative and integrative single cell analysis reveals new insights into the transcriptional immaturity of stem cell-derived β cells