Zebrafish Muscle

Zebrafish muscle is the contractile tissue that drives swimming and provides a tractable model for studying vertebrate muscle biology. During development, somitic mesoderm forms segmented myotomes containing aligned muscle fibers, whose sarcomeres generate force when actin and myosin filaments slide in response to calcium-regulated contraction. Transparent embryos, rapid development, and conserved molecular pathways allow researchers to visualize muscle formation, fiber organization, and repair in living animals. Zebrafish muscle models support studies of muscular dystrophies, neuromuscular disorders, regeneration, gene function, and drug responses, linking cellular mechanisms to whole-organism movement and disease outcomes.

Zebrafish Muscle - Related Videos

Research

JoVE EoE - Danio rerio (zebrafish)

Intramuscular (IM) Injection: Compound Delivery into the Dorsal Muscle of an Adult Zebrafish

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2023

This video describes the technique of intramuscular injection for delivering compounds into the dorsal muscles of an adult zebrafish.

Research

JoVE Journal - Biology
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Force Measurement During Contraction to Assess Muscle Function in Zebrafish Larvae

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Cited by 15 •

2013

Force measurements can be used to demonstrate changes in muscle function due to development, injury, disease, treatment or chemical toxicity. In this video, we demonstrate a method to measure force during a maximal contraction of zebrafish larval trunk muscle.

Analysis of Zebrafish Larvae Skeletal Muscle Integrity with Evans Blue Dye

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Cited by 22 •

2015

In this study, we describe a straightforward method to perform Evans Blue Dye (EBD) analysis on zebrafish larvae. This technique is a powerful tool for the characterization of skeletal muscle integrity and delineation of zebrafish models of muscular dystrophy, and is a valuable method for the development of novel therapeutics.

Laser-inflicted Injury of Zebrafish Embryonic Skeletal Muscle

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Cited by 14 •

2013

The method presented here comprises the precise injury of live zebrafish embryos with high-energy laser pulses and the subsequent analysis of these injuries and their recovery with time. We also show how genetically labeled single or groups of skeletal muscle cells can be tracked during and after laser light induced damage.

Normal and Malignant Muscle Cell Transplantation into Immune Compromised Adult Zebrafish

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Cited by 16 •

2014

Here, we present a protocol for cell transplantation of zebrafish skeletal muscle and embryonal rhabdomyosarcoma (ERMS) into adult immune compromised rag2E450fs homozygous mutant zebrafish. This protocol allows for the efficient analysis of regeneration and malignant transformation of muscle cells.

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