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Ex vivo
Organoid Cultures from Intestinal Stem Cells
Karissa LeHew
,
Sadie Lincoln
,
Senait Assefa
,
Delores Vazquez-Sanroman
,
Gerwald Köhler
COM Entering Class of 2021
Biochemistry & Microbiology
Research Opportunities
Anatomy and Cell Biology
Research output
:
Contribution to conference
›
Poster
›
peer-review
Overview
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Ex vivo
Organoid Cultures from Intestinal Stem Cells'. Together they form a unique fingerprint.
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Keyphrases
Intestinal Stem Cells
100%
Organoids
100%
Organoid Culture
100%
Intestinal Organoids
57%
Immunocytochemistry
28%
Quantitative PCR
28%
Therapeutic Intervention
28%
Cell Differentiation
28%
Intestinal Crypts
28%
Differentiation Markers
28%
Matrigel
28%
Growing Media
14%
Growth Factors
14%
Protein Expression
14%
Cell Wall Proteins
14%
Cell Proliferation
14%
Stem Cells
14%
MRNA Expression
14%
Poster Presentation
14%
Potential Therapeutics
14%
Light Microscopy
14%
Male Mice
14%
Intestinal Epithelium
14%
Continued Growth
14%
Regenerative Medicine
14%
3D Culture
14%
Total RNA
14%
Expression Analysis
14%
Intestinal Disorders
14%
Cellular Diversity
14%
Organ Culture
14%
In Vivo Conditions
14%
Specific Growth
14%
Standardized Methodology
14%
In Vivo Environment
14%
Crypt Stem Cells
14%
Protein Markers
14%
Culture Protocol
14%
Disease Modeling
14%
Personalized Therapy
14%
Emulation
14%
Evolving Landscape
14%
Intestinal Epithelial Organoids
14%
Crypt
14%
Growth Morphology
14%
Medicine and Dentistry
Ex Vivo
100%
Organoid
100%
Intestinal Stem Cell
100%
Cell Differentiation
15%
Quantitative Reverse Transcription Polymerase Chain Reaction
15%
Immunocytochemistry
15%
Matrigel
15%
Disease
7%
Protein Expression
7%
Medicine
7%
Microscopy
7%
Intestinal Epithelium
7%
Cell Proliferation
7%
Growth Factor
7%
Personalized Medicine
7%
Organ Culture
7%
Cell Protein
7%
Enteropathy
7%
Expression Analysis
7%
Recreation
7%
Stem Cell
7%
Messenger RNA
7%
Neuroscience
Stem Cell
100%
In Vivo
33%
Immunocytochemistry
33%
Cellular Differentiation
33%
Real-Time Polymerase Chain Reaction
33%
Reverse Transcription
33%
Matrigel
33%
Cell Protein
16%
Staining Technique
16%
Cell Proliferation
16%
Protein Expression
16%
Growth Factor
16%
Disease Modeling
16%
Expression Analysis
16%
Messenger RNA
16%
Pharmacology, Toxicology and Pharmaceutical Science
Matrigel
100%
Disease
50%
Cell Protein
50%
Growth Factor
50%
Enteropathy
50%
Messenger RNA
50%
Immunology and Microbiology
Intestinal Stem Cell
100%
Organoid
100%
Quantitative Reverse Transcription Polymerase Chain Reaction
15%
Immunocytochemistry
15%
Cell Differentiation
15%
Protein Expression
7%
Cell Proliferation
7%
Expression Analysis
7%
Stem Cell
7%
Growth Factor
7%
Light Microscopy
7%
Organ Culture
7%
Food Science
Quantitative Reverse Transcription Polymerase Chain Reaction
100%