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Updated: May 4, 2026

Isolation, Characterization, and Therapeutic Application of Extracellular Vesicles from Cultured Human Mesenchymal Stem Cells
Published on: September 23, 2022
Therapeutic MSC exosomes are derived from lipid raft microdomains in the plasma membrane
Soon Sim Tan1, Yijun Yin1, Tricia Lee1
1Institute of Medical Biology, ASTAR, Singapore.
Background:
Mesenchymal stem cell (MSC) was previously shown to secrete lipid vesicles that when purified by high performance liquid chromatography as a population of homogenously sized particles with a hydrodynamic radius of 55-65 nm reduce infarct size in a mouse model of myocardial ischemia/reperfusion injury. As these vesicles exhibit many biophysical and biochemical properties of exosomes, they were identified as exosomes. Here we investigated if these lipid vesicles were indeed exosomes that have an endosomal biogenesis.
Method:
In most cells, endocytosis is thought to occur at specialized microdomains known as lipid rafts. To demonstrate an endosomal origin for MSC exosomes, MSCs were pulsed with ligands e.g. transferrin (Tfs) and Cholera Toxin B (CTB) that bind receptors in lipid rafts. The endocytosed ligands were then chased to determine if they were incorporated into the exosomes.
Results:
A fraction of exogenous Tfs was found to recycle into MSC exosomes. When MSCs were pulsed with labelled Tfs in the presence of chlorpromazine, an inhibitor of clathrin-mediated endocytosis, Tf incorporation in CD81-immunoprecipitate was reduced during the chase. CTB which binds GM1 gangliosides that are enriched in lipid rafts extracted exosome-associated proteins, CD81, CD9, Alix and Tsg101 from MSC-conditioned medium. Exogenous CTBs were pulse-chased into secreted vesicles. Extraction of Tf- or CTB-binding vesicles in an exosome preparation mutually depleted each other. Inhibition of sphingomyelinases reduced CTB-binding vesicles.
Conclusion:
Together, our data demonstrated that MSC exosomes are derived from endocytosed lipid rafts and that their protein cargo includes exosome-associated proteins CD81, CD9, Alix and Tsg101.
Insights
Mesenchymal stem cell (MSC) exosomes, previously shown to reduce heart injury, are confirmed to originate from endocytosed lipid rafts. Their protein cargo includes key exosome markers like CD81 and Tsg101.
Area of Science:
- Cell Biology
- Biochemistry
- Nanomedicine
Background:
- Mesenchymal stem cell (MSC)-derived lipid vesicles, 55-65 nm in size, reduce myocardial infarct size.
- These vesicles share properties with exosomes and were identified as such.
- This study investigates the endosomal biogenesis of these MSC-derived exosomes.
Purpose of the Study:
- To confirm the endosomal origin of MSC-derived exosomes.
- To investigate the biogenesis pathway of MSC exosomes.
- To identify the protein cargo of MSC exosomes.
Main Methods:
- MSCs were pulsed with transferrin (Tfs) and Cholera Toxin B (CTB) ligands that bind to lipid rafts.
- Ligand incorporation into exosomes was tracked using pulse-chase experiments.
- Inhibitors like chlorpromazine and sphingomyelinase inhibitors were used to probe endocytosis pathways.
Main Results:
- Exogenous Tfs were found to recycle into MSC exosomes.
- Tf incorporation into CD81-immunoprecipitated exosomes was reduced by chlorpromazine, indicating involvement of clathrin-mediated endocytosis.
- CTB binding to GM1 gangliosides in lipid rafts facilitated the extraction of exosome-associated proteins (CD81, CD9, Alix, Tsg101).
- Pulse-chase experiments confirmed CTB's presence in secreted vesicles, and mutual depletion of Tf- or CTB-binding vesicles suggested a common origin.
Conclusions:
- MSC exosomes are derived from endocytosed lipid rafts.
- The protein cargo of MSC exosomes includes established exosome markers: CD81, CD9, Alix, and Tsg101.
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