Muscle Cell Differentiation

Muscle cell differentiation is the biological process through which precursor cells acquire the specialized structure and function of muscle fibers, enabling movement and force generation. In skeletal muscle, signals activate regulatory proteins such as MyoD and myogenin, directing myoblasts to exit the cell cycle, align, and fuse into multinucleated myotubes that mature into contractile fibers. Studying this process helps explain muscle development, growth, repair, and regeneration, while revealing how disruptions in gene regulation contribute to muscular disorders. Experimental models of muscle differentiation also support research on stem cells, tissue engineering, drug responses, and potential regenerative therapies.

Muscle Cell Differentiation - Related Videos

Research

JoVE Journal - Developmental Biology

Isolation, Culture, Characterization, and Differentiation of Human Muscle Progenitor Cells from the Skeletal Muscle Biopsy Procedure

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Cited by 16 •

2019

We present techniques for isolating, culturing, characterizing, and differentiating human primary muscle progenitor cells (hMPCs) obtained from skeletal muscle biopsy tissue. hMPCs obtained and characterized through these methods can be used to subsequently address research questions related to human myogenesis and skeletal muscle regeneration.

Isolation and Differentiation of Stromal Vascular Cells to Beige/Brite Cells

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Cited by 151 •

2013

Primary white preadipocytes isolated from white adipose tissues in mice can be differentiated into beige/brite cells. Presented here is a reliable cellular model system to study the molecular regulation of "browning" of white fat.

Research

JoVE Journal - Biology
Free Sample

Fluorescence-based Measurement of Store-operated Calcium Entry in Live Cells: from Cultured Cancer Cell to Skeletal Muscle Fiber

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Cited by 19 •

2012

The extent of store-operated Ca2+ entry (SOCE) can be monitored using fluorescent Ca2+ indicators. Mn2+ quenching of such indicators assays SOCE in cultured cells and skeletal muscle fibers. A technique allowing spatial and temporal resolution of SOCE by confocal imaging of mechanically skinned muscle fibers is also described.

Education

JoVE Science Education - Advanced Biology

Embryonic Stem Cell Culture and Differentiation

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2023

Culturing embryonic stem (ES) cells requires conditions that maintain these cells in an undifferentiated state to preserve their capacity for self-renewal and pluripotency. Stem cell biologists are continuously optimizing methods to improve the efficiency of ES cell culture, and are simultaneously trying to direct the differentiation of ES cells into specific cell types that could be used in regenerative medicine. This video describes the basic principles of ES cell culture, and demonstrates a...

Isolation of Intact Mitochondria from Skeletal Muscle by Differential Centrifugation for High-resolution Respirometry Measurements

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Cited by 26 •

2017

Here, a quadriceps muscle specimen is taken from an anaesthetized pig and mitochondria are isolated by differential centrifugation. Then, the respiratory rates of mitochondrial respiratory chain complexes I, II and IV are determined using high-resolution respirometry.

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