Related Experiment Video
Updated: Jul 29, 2025

Purification and microRNA Profiling of Exosomes Derived from Blood and Culture Media
Published on: June 14, 2013
The miRNA Content of Bone Marrow-Derived Extracellular Vesicles Contributes to Protein Pathway Alterations Involved
Ilona Barbara Csordás1,2, Eric Andreas Rutten3, Tünde Szatmári1
1Unit of Radiation Medicine, Department of Radiobiology and Radiohygiene, National Public Health Centre, 1097 Budapest, Hungary.
Abstract:
Extracellular vesicles (EVs), through their cargo, are important mediators of bystander responses in the irradiated bone marrow (BM). MiRNAs carried by EVs can potentially alter cellular pathways in EV-recipient cells by regulating their protein content. Using the CBA/Ca mouse model, we characterised the miRNA content of BM-derived EVs from mice irradiated with 0.1 Gy or 3 Gy using an nCounter analysis system. We also analysed proteomic changes in BM cells either directly irradiated or treated with EVs derived from the BM of irradiated mice. Our aim was to identify key cellular processes in the EV-acceptor cells regulated by miRNAs. The irradiation of BM cells with 0.1 Gy led to protein alterations involved in oxidative stress and immune and inflammatory processes. Oxidative stress-related pathways were also present in BM cells treated with EVs isolated from 0.1 Gy-irradiated mice, indicating the propagation of oxidative stress in a bystander manner. The irradiation of BM cells with 3 Gy led to protein pathway alterations involved in the DNA damage response, metabolism, cell death and immune and inflammatory processes. The majority of these pathways were also altered in BM cells treated with EVs from mice irradiated with 3 Gy. Certain pathways (cell cycle, acute and chronic myeloid leukaemia) regulated by miRNAs differentially expressed in EVs isolated from mice irradiated with 3 Gy overlapped with protein pathway alterations in BM cells treated with 3 Gy EVs. Six miRNAs were involved in these common pathways interacting with 11 proteins, suggesting the involvement of miRNAs in the EV-mediated bystander processes. In conclusion, we characterised proteomic changes in directly irradiated and EV-treated BM cells, identified processes transmitted in a bystander manner and suggested miRNA and protein candidates potentially involved in the regulation of these bystander processes.
Insights
Extracellular vesicles (EVs) from irradiated bone marrow transmit oxidative stress and alter cellular pathways in recipient cells. MicroRNAs within EVs mediate these bystander effects, impacting processes like DNA damage response and immune responses.
Area of Science:
- Cellular and Molecular Biology
- Radiation Biology
- Biochemistry
Background:
- Extracellular vesicles (EVs) mediate intercellular communication, particularly in response to radiation.
- MicroRNAs (miRNAs) within EVs can regulate gene expression in recipient cells.
- Bone marrow (BM) cells are susceptible to radiation-induced bystander effects.
Purpose of the Study:
- To characterize miRNA cargo in bone marrow-derived EVs after irradiation.
- To analyze proteomic changes in directly irradiated and EV-treated BM cells.
- To identify miRNA-regulated cellular processes involved in EV-mediated bystander effects.
Main Methods:
- CBA/Ca mouse model for irradiation studies.
- nCounter analysis system for miRNA profiling of EVs.
- Proteomic analysis of bone marrow cells and derived EVs.
- Bioinformatic analysis to identify miRNA-protein interactions.
Main Results:
- Low-dose (0.1 Gy) irradiation induced oxidative stress and immune/inflammatory alterations in BM cells and EV-treated cells.
- High-dose (3 Gy) irradiation affected DNA damage response, metabolism, cell death, and immune pathways.
- EVs from irradiated mice transmitted these pathway alterations to recipient BM cells.
- Six specific miRNAs and 11 proteins were identified as potentially mediating common pathways in EV-treated cells.
Conclusions:
- EVs are key mediators of bystander responses in irradiated bone marrow.
- miRNAs carried by EVs play a significant role in regulating recipient cell pathways.
- Specific miRNA-protein interactions are implicated in EV-mediated bystander effects following irradiation.
More Related Videos
06:59Isolation and Profiling of MicroRNA-containing Exosomes from Human Bile
Published on: June 13, 2016
11:06Genome-wide Analysis of HDAC Inhibitor-mediated Modulation of microRNAs and mRNAs in B Cells Induced to Undergo Class-switch DNA Recombination and Plasma Cell Differentiation
Published on: September 20, 2017
Related Concept Videos
MicroRNAs
Biological Effects of Radiation