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Characterization of Functionally Associated miRNAs in Glioblastoma and their Engineering into Artificial Clusters for Gene Therapy
Published on: October 4, 2019
Microglial Exosome miR-7239-3p Promotes Glioma Progression by Regulating Circadian Genes
Xuepei Li1,2, Junwen Guan3, Zhou Jiang1
1Ministry of Health Key Laboratory of Chronobiology, College of Basic Medicine and Forensic Medicine, Sichuan University, Chengdu, 610041, China.
Abstract:
Glioma-associated microglial cells, a key component of the tumor microenvironment, play an important role in glioma progression. In this study, the mouse glioma cell line GL261 and the mouse microglia cell line BV2 were chosen. First, circadian gene expression in glioma cells co-cultured with either M1 or M2 microglia was assessed and the exosomes of M2-polarized and unpolarized BV-2 microglia were extracted. Subsequently, we labeled the exosomes with PKH67 and treated GL261 cells with them to investigate the exosome distribution. GL261 cell phenotypes and related protein expression were used to explore the role of M2 microglial exosomes in gliomas. Then a specific miR-7239-3p inhibitor was added to verify miR-7239-3p functions. Finally, the mouse subcutaneous tumorigenic model was used to verify the tumorigenic effect of M2 microglial exosomes in vivo. Our results showed that in gliomas co-cultured with M2 microglia, the expression of the BMAL1 protein was decreased (P < 0.01), while the expression of the CLOCK protein was increased (P < 0.05); opposite results were obtained in gliomas co-cultured with M1 microglia. After treatment with M2 microglial exosomes, the apoptosis of GL261 cells decreased (P < 0.001), while the viability, proliferation, and migration of GL261 cells increased. Increased expression of N-cadherin and Vimentin, and decreased E-cadherin expression occurred upon treatment with M2 microglial exosomes. Addition of an miR-7239-3p inhibitor to M2 microglial exosomes reversed these results. In summary, we found that miR-7239-3p in the glioma microenvironment is recruited to glioma cells by exosomes and inhibits Bmal1 expression. M2 microglial exosomes promote the proliferation and migration of gliomas by regulating tumor-related protein expression and reducing apoptosis.
Insights
M2 microglial exosomes promote glioma progression by delivering miR-7239-3p, which inhibits Bmal1 expression and enhances tumor cell viability, proliferation, and migration. This highlights a novel mechanism in the glioma microenvironment.
Area of Science:
- Neuroscience
- Oncology
- Cell Biology
Background:
- Microglia are crucial components of the glioma microenvironment, influencing tumor progression.
- Microglial polarization (M1/M2) significantly impacts tumor-associated immune responses and cancer cell behavior.
Purpose of the Study:
- To investigate the role of M2 microglial exosomes in glioma progression.
- To elucidate the molecular mechanisms by which M2 microglial exosomes affect glioma cells, focusing on circadian gene expression and microRNA involvement.
Main Methods:
- Co-culture of GL261 glioma cells with M1 or M2 polarized BV-2 microglia.
- Extraction and PKH67 labeling of exosomes from M2-polarized BV-2 microglia.
- Treatment of GL261 cells with labeled exosomes to assess distribution and cellular effects.
- Analysis of GL261 cell phenotypes, protein expression (N-cadherin, Vimentin, E-cadherin), and apoptosis.
- Inhibition of miR-7239-3p to verify its functional role.
- Validation in a mouse subcutaneous tumorigenic model.
Main Results:
- M2 microglia co-culture decreased BMAL1 and increased CLOCK protein expression in glioma cells.
- M2 microglial exosomes treatment reduced GL261 cell apoptosis and increased viability, proliferation, and migration.
- Exosome treatment altered expression of tumor-related proteins: increased N-cadherin and Vimentin, decreased E-cadherin.
- Inhibition of miR-7239-3p reversed the effects of M2 microglial exosomes on GL261 cells.
- M2 microglial exosomes promoted tumor growth in vivo.
Conclusions:
- M2 microglial exosomes deliver miR-7239-3p to glioma cells, inhibiting Bmal1 expression.
- M2 microglial exosomes promote glioma proliferation and migration by modulating tumor-related protein expression and reducing apoptosis.
- miR-7239-3p acts as a key mediator in M2 microglia-glioma cell communication, driving tumor progression.
Related Concept Videos
MicroRNAs
The Tumor Microenvironment

