Muscle Progenitor Cells

Muscle progenitor cells are precursor cells that contribute to the formation, growth, and repair of skeletal muscle, making them central to tissue maintenance and regeneration. In response to muscle damage or developmental signals, these cells become activated, proliferate, and differentiate into muscle-forming cells that align and fuse to build or restore multinucleated muscle fibers; some remain in a less differentiated state to support future repair. Studying muscle progenitor cells helps explain muscle development, regeneration, and disease, while providing a foundation for research on muscular disorders, tissue engineering, and regenerative medicine.

Muscle Progenitor Cells - Related Videos

Research

JoVE Journal - Biology
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Purification of Progenitors from Skeletal Muscle

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Cited by 31 •

2011

Method for the enzymatic dissociation, surface labeling and purification by flow cytometry of fibro/adipogenic and myogenic progenitors from murine skeletal muscle.

Research

JoVE Journal - Medicine

Molecular Imaging to Target Transplanted Muscle Progenitor Cells

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Cited by 3 •

2013

A non-invasive means to evaluate the success of myoblast transplantation is described. The method takes advantage of a unified fusion reporter gene composed of genes whose expression can be imaged with different imaging modalities. Here, we make use of a fluc reporter gene sequence to target cells via bioluminescence imaging.

Ex Vivo Culture of Pharyngeal Arches to Study Heart and Muscle Progenitors and Their Niche

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Cited by 5 •

2015

Here, we present a protocol to culture pharyngeal arches to study the biology of heart and muscle progenitor cells and their microenvironment.

Transplantation of Induced Pluripotent Stem Cell-derived Mesoangioblast-like Myogenic Progenitors in Mouse Models of Muscle Regeneration

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Cited by 30 •

2014

Induced pluripotent stem cell (iPSC)-derived myogenic progenitors are promising candidates for cell therapy strategies to treat muscular dystrophies. This protocol describes transplantation and functional measurements required to evaluate the engraftment and differentiation of iPSC-derived mesoangioblasts (a type of muscle progenitors) in mouse models of acute and chronic muscle regeneration.

Engineering Skeletal Muscle Tissues from Murine Myoblast Progenitor Cells and Application of Electrical Stimulation

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Cited by 40 •

2013

Engineered muscle tissue has great potential in regenerative medicine, as disease model and also as an alternative source for meat. Here we describe the engineering of a muscle construct, in this case from mouse myoblast progenitor cells, and the stimulation by electrical pulses.

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