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Updated: Jul 17, 2025

Isolation and Characterization of Exosomes from Skeletal Muscle Fibroblasts
Published on: May 16, 2020
Differences between migrasome, a 'new organelle', and exosome
Xuebing Xu1, Tong Wu1, Renjie Lin1
1Department of Gastroenterology, Affiliated Hospital of Nantong University, Medical School of Nantong University, Nantong, China.
Abstract:
The migrasome is a new organelle discovered by Professor Yu Li in 2015. When cells migrate, the membranous organelles that appear at the end of the retraction fibres are migrasomes. With the migration of cells, the retraction fibres which connect migrasomes and cells finally break. The migrasomes detach from the cell and are released into the extracellular space or directly absorbed by the recipient cell. The cytoplasmic contents are first transported to the migrasome and then released from the cell through the migrasome. This release mechanism, which depends on cell migration, is named 'migracytosis'. The main components of the migrasome are extracellular vesicles after they leave the cell, which are easy to remind people of the current hot topic of exosomes. Exosomes are extracellular vesicles wrapped by the lipid bimolecular layer. With extensive research, exosomes have solved many disease problems. This review summarizes the differences between migrasomes and exosomes in size, composition, property and function, extraction method and regulation mechanism for generation and release. At the same time, it also prospects for the current hotspot of migrasomes, hoping to provide literature support for further research on the generation and release mechanism of migrasomes and their clinical application in the future.
Insights
Migrasomes are novel organelles released during cell migration via migraytosis. This review differentiates migrasomes from exosomes, highlighting their unique characteristics and potential clinical applications.
Area of Science:
- Cell Biology
- Organelle Discovery
- Extracellular Vesicles
Background:
- Migrasomes are newly identified organelles observed at the terminus of retraction fibers during cell migration.
- They are released from cells through a process termed 'migracytosis', detaching into the extracellular environment or being absorbed by other cells.
- Migrasomes share characteristics with exosomes, prompting a need for clear differentiation.
Purpose of the Study:
- To provide a comprehensive review of migrasomes, a recently discovered organelle.
- To elucidate the distinctions between migrasomes and exosomes regarding their properties and functions.
- To explore the mechanisms governing migrasome generation and release and their future clinical potential.
Main Methods:
- Literature review and comparative analysis of migrasomes and exosomes.
- Examination of existing research on organelle biogenesis and extracellular vesicle biology.
- Synthesis of data on migrasome characteristics, including size, composition, and function.
Main Results:
- Migrasomes are characterized by their unique size, composition, and properties distinct from exosomes.
- Migracytosis represents a novel mechanism for cytoplasmic content release dependent on cell migration.
- Key differences in extraction methods and regulatory mechanisms for generation and release are identified.
Conclusions:
- Migrasomes represent a distinct class of extracellular vesicles with unique biological roles.
- Understanding migrasome biology is crucial for differentiating them from exosomes and exploring their therapeutic potential.
- Further research into migrasome generation, release, and clinical applications is warranted.
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