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Updated: Jul 12, 2025

In vitro Quantitative Imaging Assay for Phagocytosis of Dead Neuroblastoma Cells by iPSC-Macrophages
Published on: February 14, 2021
Intercellular contact and cargo transfer between Müller glia and to microglia precede apoptotic cell clearance in the
Michael Morales1, Anna P Findley1, Diana M Mitchell1
1Biological Sciences, University of Idaho, Moscow, ID 83844.
Abstract:
To clarify our understanding of glial phagocytosis in retinal development, we used real time imaging of larval zebrafish to provide cell-type specific resolution of this process. We show that radial Müller glia frequently participate in microglial phagocytosis while also completing a subset of phagocytic events. Müller glia (MG) actively engage with dying cells through initial target cell contact and phagocytic cup formation after which an exchange of the dying cell from MG to microglia often takes place. Additionally, we find evidence that Müller glia cellular material, possibly from the initial Müller cell's phagocytic cup, is internalized into microglial compartments. Previously undescribed Müller cell behaviors were seen, including cargo splitting, wrestling for targets, lateral passing of cargo to neighbors, and engulfment of what is possibly synaptic puncta. Collectively, our work provides new insight into glial functions and intercellular interactions, which will allow future work to understand these behaviors on a molecular level.
Insights
Radial Müller glia (MG) in zebrafish actively engage in phagocytosis, often transferring dying cells to microglia. New behaviors like cargo splitting and lateral passing were observed, offering insights into glial cell interactions.
Area of Science:
- Neuroscience
- Developmental Biology
- Cell Biology
Background:
- Glial cells, particularly microglia and Müller glia, play critical roles in retinal development and homeostasis.
- Phagocytosis by glial cells is essential for clearing cellular debris and apoptotic cells during development.
- The specific contributions and interactions of different glial cell types in retinal phagocytosis remain incompletely understood.
Conclusions:
- Müller glia (MG) are active participants in retinal phagocytosis, collaborating with microglia and exhibiting unique behaviors.
- These findings reveal complex intercellular interactions among glial cells during retinal development.
- This study provides a foundation for future molecular investigations into glial phagocytosis and cell-cell communication in the retina.
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