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Purification and microRNA Profiling of Exosomes Derived from Blood and Culture Media
Published on: June 14, 2013
Investigation of Content, Stoichiometry and Transfer of miRNA from Human Neural Stem Cell Line Derived Exosomes
Lara Stevanato1, Lavaniya Thanabalasundaram1, Nickolai Vysokov1,2
1Stem Cell Discovery, ReNeuron, Guildford, United Kingdom.
Abstract:
Exosomes are small (30-100 nm) membrane vesicles secreted by a variety of cell types and only recently have emerged as a new avenue for cell-to-cell communication. They are natural shuttles of RNA and protein cargo, making them attractive as potential therapeutic delivery vehicles. MicroRNAs (miRNAs) are short non-coding RNAs which regulate biological processes and can be found in exosomes. Here we characterized the miRNA contents of exosomes derived from human neural stem cells (hNSCs). Our investigated hNSC line is a clonal, conditionally immortalized cell line, compliant with good manufacturing practice (GMP), and in clinical trials for stroke and critical limb ischemia in the UK (clinicaltrials.gov: NCT01151124, NCT02117635, and NCT01916369). By using next generation sequencing (NGS) technology we identified the presence of a variety of miRNAs in both exosomal and cellular preparations. Many of these miRNAs were enriched in exosomes indicating that cells specifically sort them for extracellular release. Although exosomes have been proven to contain miRNAs, the copy number quantification per exosome of a given miRNA remains unclear. Herein we quantified by real-time PCR a highly shuttled exosomal miRNA subtype (hsa-miR-1246) in order to assess its stoichiometry per exosome. Furthermore, we utilized an in vitro system to confirm its functional transfer by measuring the reduction in luciferase expression using a 3' untranslated region dual luciferase reporter assay. In summary, NGS analysis allowed the identification of a unique set of hNSC derived exosomal miRNAs. Stoichiometry and functional transfer analysis of one of the most abundant identified miRNA, hsa-miR-1246, were measured to support biological relevance of exosomal miRNA delivery.
Insights
Human neural stem cell (hNSC) exosomes carry specific microRNAs (miRNAs) for cell communication. Researchers quantified these exosomal miRNAs, confirming their functional transfer and potential as therapeutic delivery vehicles.
Area of Science:
- Biochemistry
- Cell Biology
- Molecular Biology
Background:
- Exosomes are nanoscale extracellular vesicles involved in intercellular communication.
- Exosomes naturally transport RNA and proteins, showing promise for therapeutic delivery.
- MicroRNAs (miRNAs) within exosomes regulate biological processes.
Purpose of the Study:
- To characterize the miRNA cargo of exosomes derived from human neural stem cells (hNSCs).
- To quantify the abundance of specific miRNAs within exosomes.
- To confirm the functional transfer and biological relevance of exosomal miRNAs.
Main Methods:
- Next-generation sequencing (NGS) to identify exosomal and cellular miRNAs.
- Real-time PCR to quantify the stoichiometry of a specific miRNA (hsa-miR-1246) per exosome.
- In vitro dual luciferase reporter assay to assess functional miRNA transfer.
Main Results:
- NGS identified a distinct set of miRNAs within hNSC-derived exosomes, with many specifically sorted for release.
- Stoichiometry analysis revealed the copy number of hsa-miR-1246 per exosome.
- Functional assays confirmed that hsa-miR-1246 delivered via exosomes can reduce target gene expression.
Conclusions:
- hNSC-derived exosomes contain a unique repertoire of miRNAs.
- Quantification and functional studies support the role of exosomal miRNAs in intercellular signaling.
- These findings highlight the potential of hNSC exosomes as miRNA delivery vehicles for therapeutic applications.

