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Epigenetic Memory: Lessons From iPS Cells Derived From Human β Cells
Shimon Efrat
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Corresponding author for this work
Human Molecular Genetics Biochemistry
Research output
:
Contribution to journal
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Review article
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peer-review
19
Scopus citations
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Dive into the research topics of 'Epigenetic Memory: Lessons From iPS Cells Derived From Human β Cells'. Together they form a unique fingerprint.
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Keyphrases
Human Cells
100%
Cell-derived
100%
Induced Pluripotent Stem Cells (iPSCs)
100%
Epigenetic Memory
100%
Open Chromatin
66%
Fibroblasts
22%
Binding Site
11%
Differentiation Process
11%
Cell Function
11%
Pluripotent Stem Cells
11%
Genome-wide Analysis
11%
Isogenic
11%
Cell Source
11%
Human Donor
11%
Somatic Cells
11%
Induced Differentiation
11%
Stem Cell-derived
11%
Pancreas Development
11%
Multiple Persons
11%
Spontaneous Differentiation
11%
Stem Cell Lines
11%
Differentiation Capacity
11%
Differentiation Protocol
11%
FOXA2
11%
Cell of Origin
11%
Pancreatic Islet Cells
11%
Insulin-producing Cells
11%
Human Pancreatic Islets
11%
Weak Enhancers
11%
Origin Variation
11%
Immunology and Microbiology
Epigenetics
100%
Human Cell
100%
Induced Pluripotent Stem Cell
100%
Fibroblast
28%
Binding Site
14%
Cell Function
14%
Pancreas
14%
Somatic Cell
14%
Enhancer Region
14%
Pluripotent Stem Cell Line
14%
Pluripotent Stem Cell
14%
Biochemistry, Genetics and Molecular Biology
Epigenetics
100%
Induced Pluripotent Stem Cell
100%
Fibroblast
28%
Reprogramming
28%
Binding Site
14%
Genetics
14%
Cell Function
14%
Stem Cell
14%
Genome Wide Association Study
14%
Enhancer Region
14%
Somatic Cell
14%
Stem Cell Line
14%
FOXA2
14%
Medicine and Dentistry
Induced Pluripotent Stem Cell
100%
Fibroblast
28%
Genome Wide Association Study
14%
Cell Function
14%
Reproducibility
14%
Enhancer Region
14%
Binding Site
14%
Pluripotent Stem Cell Line
14%
Pluripotent Stem Cell
14%
Pancreatic Islet
14%
Somatic Cell
14%