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Updated: Jan 20, 2026

Enzymatic Isolation of Skeletal Muscle Interstitial Extracellular Vesicles
Published on: February 7, 2025
Skeletal Muscle-Released Extracellular Vesicles: State of the Art
Sophie Rome1, Alexis Forterre1,2, Maria Luisa Mizgier3
1CarMeN Laboratory (UMR INSERM 1060/INRA 1397, Lyon 1), Lyon-Sud Faculty of Medicine, University of Lyon, Pierre-Bénite, France.
Abstract:
All cells export part of their intracellular content into the extracellular space through the release of various types of extracellular vesicles (EVs). They are synthetized either from the budding of the plasma membrane [i.e., microparticles (MPs, 150-300 nm size)] or from the late endosomes in which intraluminal vesicles progressively (ILVs) accumulate during their maturation into multivesicular bodies (MVBs). ILVs are then released into the extracellular space through MVB fusion with the plasma membrane [i.e., exosomes (50-100 nm size)]. In the context of metabolic diseases, recent data have highlighted the role of EVs in inflammation associated with pancreas dysfunction, adipose tissue homeostasis, liver steatosis, inflammation, and skeletal muscle (SkM) insulin resistance (IR). Among these insulin-sensitive tissues, SkM is the largest organ in human and is responsible for whole-body glucose disposal and locomotion. Therefore, understanding the contribution of SkM-EVs in the development of diabetes/obesity/dystrophy/,-related diseases is a hot topic. In this review, we have summarized the role of SkM-EVs in muscle physiology and in the development of metabolic diseases and identify important gaps that have to be filled in order to have more precise information on SkM-EVs biological actions and to understand the functions of the different subpopulations of SkM-EVs on the whole-body homeostasis.
Insights
Skeletal muscle extracellular vesicles (SkM-EVs) play a key role in metabolic diseases like diabetes and obesity. This review summarizes SkM-EV functions in muscle health and disease, highlighting knowledge gaps for future research.
Area of Science:
- Cell Biology
- Metabolic Diseases
- Extracellular Vesicles
Background:
- Cells release extracellular vesicles (EVs) like microparticles and exosomes.
- EVs are implicated in metabolic diseases affecting the pancreas, liver, and adipose tissue.
- Skeletal muscle (SkM) is crucial for glucose disposal and locomotion, making SkM-EVs a focus in metabolic research.
Purpose of the Study:
- To review the role of SkM-EVs in muscle physiology.
- To summarize the involvement of SkM-EVs in metabolic diseases.
- To identify research gaps concerning SkM-EVs' biological actions and whole-body homeostasis functions.
Main Methods:
- Literature review of studies on SkM-EVs.
- Analysis of EV biogenesis and release mechanisms.
- Synthesis of current knowledge on SkM-EVs in metabolic context.
Main Results:
- SkM-EVs are involved in inflammation related to metabolic dysfunction.
- SkM-EVs influence adipose tissue homeostasis and liver steatosis.
- SkM-EVs contribute to skeletal muscle insulin resistance.
Conclusions:
- SkM-EVs are critical mediators in muscle physiology and metabolic diseases.
- Further research is needed to elucidate specific SkM-EV subpopulations and their systemic effects.
- Understanding SkM-EVs is vital for addressing diabetes, obesity, and related conditions.
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