Microglial Depletion

Microglial depletion is the experimental removal or substantial reduction of microglia, the resident immune cells of the central nervous system, to investigate their roles in brain function and disease. Researchers commonly achieve it by inhibiting colony-stimulating factor 1 receptor (CSF1R), a survival-signaling pathway required by microglia, or through targeted genetic approaches; removing the treatment can allow repopulation from surviving precursor cells. In neuroscience, this method helps distinguish microglial contributions to neuroinflammation, synaptic remodeling, neurodegeneration, and neural injury. Comparing depleted and repopulated brains can reveal microglial functions and identify potential therapeutic strategies while highlighting effects caused by depletion itself.

Microglial Depletion - Related Videos

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JoVE Journal - Immunology and Infection
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Depletion of Specific Cell Populations by Complement Depletion

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Cited by 15 •

2010

To effectively study the function of immune cell populations their purification is often required. Complement depletion is a fast and inexpensive technique for the isolation of immune cell populations with high purity.

Research

JoVE Journal - Immunology and Infection

Depletion and Reconstitution of Macrophages in Mice

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Cited by 118 •

2012

Macrophages play a central role in homeostasis and pathology in many tissues. The protocol presented here describes methods for depleting macrophages in vivo, deriving polarized macrophages from bone marrow aspirates, and adoptively transferring macrophages into mice. These techniques allow determination of the role that polarized macrophages play in health and disease.

Selective Depletion of Microglia from Cerebellar Granule Cell Cultures Using L-leucine Methyl Ester

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Cited by 10 •

2015

Microglia can influence neurons and other glia in culture by various non-cell autonomous mechanisms. Here, we present a protocol to selectively deplete microglia from primary neuronal cultures. This method has the potential to elucidate the role of microglial-neuronal interactions, with implications for neurodegenerative conditions where neuroinflammation is a hallmark feature.

In Vivo Two-Photon Imaging of Microglial Dynamics in the Mouse Hippocampus

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2025

Source: Kamei, R., et. al., In Vivo Chronic Two-Photon Imaging of Microglia in the Mouse Hippocampus. J. Vis. Exp. (2022)The video demonstrates the setup and imaging process for in vivo two-photon microscopy of microglial dynamics in the hippocampal CA1 (Cornu ammonis 1) and dentate gyrus, ensuring optimal optical alignment and structural integrity assessment.

Magnetic Hyperthermia-Induced Cell Damage in Murine Microglial Cells

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2025

Take adhered murine microglial cells in a multiwell plate.Add polyacrylic acid-coated magnetic nanoparticles (MNPs) to the test well, leaving another well untreated as a control.Incubate the cells to allow MNP uptake via endocytosis, enabling their internalization.Wash with buffer to remove unbound MNPs.Add an enzyme solution to detach the cells.Transfer the detached cells to tubes and centrifuge to pellet them.Discard the supernatant, resuspend the pellet in basal media, and transfer the...

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