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Muscle Stem Cells

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Cover of 'Muscle Stem Cells'

Table of Contents

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    Book Overview
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    Chapter 1 Muscle Stem Cells: A Model System for Adult Stem Cell Biology
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    Chapter 2 Isolation of Muscle Stem Cells from Mouse Skeletal Muscle
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    Chapter 3 Primary Mouse Myoblast Purification using Magnetic Cell Separation
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    Chapter 4 Isolation, Culture, and Immunostaining of Skeletal Muscle Myofibers from Wildtype and Nestin-GFP Mice as a Means to Analyze Satellite Cell
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    Chapter 5 Characterization of Drosophila Muscle Stem Cell-Like Adult Muscle Precursors
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    Chapter 6 Using Transgenic Zebrafish to Study Muscle Stem/Progenitor Cells
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    Chapter 7 Muscle Interstitial Cells: A Brief Field Guide to Non-satellite Cell Populations in Skeletal Muscle
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    Chapter 8 Isolation and Characterization of Vessel-Associated Stem/Progenitor Cells from Skeletal Muscle
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    Chapter 9 Fibro/Adipogenic Progenitors (FAPs): Isolation by FACS and Culture
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    Chapter 10 Single Cell Gene Expression Profiling of Skeletal Muscle-Derived Cells
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    Chapter 11 Engraftment of FACS Isolated Muscle Stem Cells into Injured Skeletal Muscle
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    Chapter 12 Transplantation of Skeletal Muscle Stem Cells
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    Chapter 13 Simultaneous Measurement of Mitochondrial and Glycolytic Activity in Quiescent Muscle Stem Cells
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    Chapter 14 Monitoring Autophagy in Muscle Stem Cells
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    Chapter 15 Mimicking Muscle Stem Cell Quiescence in Culture: Methods for Synchronization in Reversible Arrest
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    Chapter 16 Methods for Observing and Quantifying Muscle Satellite Cell Motility and Invasion In Vitro
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    Chapter 17 Effects of Macrophage Conditioned-Medium on Murine and Human Muscle Cells: Analysis of Proliferation, Differentiation, and Fusion
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    Chapter 18 Optimization of Satellite Cell Culture Through Biomaterials
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    Chapter 19 Systematic Identification of Genes Regulating Muscle Stem Cell Self-Renewal and Differentiation
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    Chapter 20 Bioinformatics for Novel Long Intergenic Noncoding RNA (lincRNA) Identification in Skeletal Muscle Cells
Attention for Chapter 19: Systematic Identification of Genes Regulating Muscle Stem Cell Self-Renewal and Differentiation
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Chapter title
Systematic Identification of Genes Regulating Muscle Stem Cell Self-Renewal and Differentiation
Chapter number 19
Book title
Muscle Stem Cells
Published in
Methods in molecular biology, March 2017
DOI 10.1007/978-1-4939-6771-1_19
Pubmed ID
Book ISBNs
978-1-4939-6769-8, 978-1-4939-6771-1
Authors

Krishnamoorthy Sreenivasan, Thomas Braun, Johnny Kim

Editors

Eusebio Perdiguero, DDW Cornelison

Abstract

The hallmark of stem cells is their capability to either self-renew or to differentiate into a different cell type. Adult skeletal muscle contains a resident muscle stem cell population (MuSCs) known as satellite cells, which enables regeneration of damaged muscle tissue throughout most of adult life. During skeletal muscle regeneration, few MuSCs self-renew to maintain the muscle stem cell pool while others expand rapidly and subsequently undergo myogenic differentiation to form new myofibers. However, like for other stem cell types, the molecular networks that govern self-renewal and/or differentiation of MuSCs remain largely elusive. We recently reported a method to isolate sufficient amounts of purified MuSCs from skeletal muscle which enables us to study their cell autonomous properties. Here, we describe a lentiviral, image-based loss-of function screening pipeline on primary MuSCs that enables systematic identification of genes that regulate muscle stem cell function.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 8 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United States 1 13%
Unknown 7 88%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 4 50%
Student > Master 2 25%
Lecturer > Senior Lecturer 1 13%
Student > Bachelor 1 13%
Readers by discipline Count As %
Agricultural and Biological Sciences 3 38%
Medicine and Dentistry 2 25%
Biochemistry, Genetics and Molecular Biology 1 13%
Sports and Recreations 1 13%
Engineering 1 13%
Other 0 0%