Related Experiment Video
Updated: Mar 7, 2026

Co-culture of Glutamatergic Neurons and Pediatric High-Grade Glioma Cells Into Microfluidic Devices to Assess Electrical Interactions
Published on: November 17, 2021
Probing the Bi-directional Interaction Between Microglia and Gliomas in a Tumor Microenvironment on a Microdevice
Rui Gu1,2, Xu Zhang3,4, Ge Zhang5
1Department of Physiology, Dalian Medical University, 9 West Section, Lvshun South Road, Dalian, 116044, China.
Abstract:
It has been proven that microglia are involved in both early and late stages of glioma progression and contribute substantially to the tumor mass of gliomas. Because no appropriate in vitro or in vivo investigative approach is available, the dynamic interaction between microglia and gliomas during tumor formation remains unclear. In this study, three types of microfluidic assay were developed to examine the outcomes of the dynamic interaction between microglia and gliomas. Co-migration assay and two-dimensional cell co-culture assay have been used to show that microglial BV-2 cells migrate toward C6 glioma cells and inhibit tumor growth during the early stage of tumorigenesis. However, in three-dimensional cell spheres (three-dimensional cell co-culture assay) that contain a large amount of glioma cells, mimicking the late stage of glioma growth, the phagocytosis of microglia was suppressed, which suggests that glioma cells could reeducate classically activated microglia into a tumor-promoting state at some point during tumor progression. Notably, we found that microglia could contribute to tumor invasion and acquisition of the epithelial-mesenchymal transition phenotype in the glioma microenvironment during the early stage and the late stage of tumor progression. In conclusion, we have developed a potential quantitative method for in vitro study of glioma immunity and provided evidence for the duality of glioma-associated microglia.
Insights
Microglia play a dual role in glioma progression. Novel microfluidic assays reveal microglia can inhibit early tumor growth but promote invasion and epithelial-mesenchymal transition in later stages.
Area of Science:
- Neuroscience
- Cancer Biology
- Immunology
Background:
- Microglia are implicated in glioma progression, influencing tumor mass.
- The dynamic interaction between microglia and gliomas is not well understood due to limited investigative models.
Purpose of the Study:
- To investigate the dynamic interactions between microglia and gliomas using novel microfluidic assays.
- To elucidate the dual role of microglia in early and late stages of glioma development.
Main Methods:
- Development of three microfluidic assay types: co-migration, 2D co-culture, and 3D co-culture.
- Utilizing BV-2 microglial cells and C6 glioma cells for in vitro studies.
Main Results:
- Microglial BV-2 cells migrated towards C6 glioma cells, inhibiting tumor growth in early stages.
- Microglial phagocytosis was suppressed in 3D cultures, suggesting glioma cells reeducate microglia to a tumor-promoting state.
- Microglia were found to contribute to tumor invasion and epithelial-mesenchymal transition in both early and late glioma stages.
Conclusions:
- A quantitative in vitro method for studying glioma immunity was developed.
- Evidence supports a dual role for glioma-associated microglia, acting as both inhibitors and promoters of tumor progression.

