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August 11, 2003Glia614 citations

High‐yield isolation of murine microglia by mild trypsinization

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JSJosep SauraJTJosep Maria TusellJSJoan Serratosa

Key Points

  • To establish a reproducible and high-yield isolation protocol for obtaining pure populations of viable microglia from rodent mixed glial cultures.
  • Subjected confluent mixed glial cultures from mouse pups to mild trypsinization (0.05–0.12% trypsin with 0.2–0.5 mM EDTA and 0.5–0.8 mM Ca²⁺) to selectively detach the astrocyte layer.
  • Assessed microglial purity, culture longevity, phagocytic capacity, and functional responses following stimulation with M-CSF, lipopolysaccharide, and interferon gamma.
  • Achieved an average yield close to 2,000,000 microglial cells per mouse pup (>5-fold higher than conventional shaking methods) with >98% microglial purity.
  • Preserved cell viability for weeks and demonstrated intact inflammatory responsiveness, including NF-κB translocation, phagocytosis, and release of nitric oxide and TNF-alpha upon activation.

Abstract

Microglia can be isolated with high purity but low yield by shaking off loosely adherent cells from mixed glial cultures. Here we describe a new technique for isolating microglia with an average yield close to 2,000,000 microglial cells/mouse pup, more than five times higher than that of the shaking method. Confluent mixed glial cultures are subjected to mild trypsinization (0.05-0.12%) in the presence of 0.2-0.5 mM EDTA and 0.5-0.8 mM Ca2+. This results in the detachment of an intact layer of cells containing virtually all the astrocytes, leaving undisturbed a population of firmly attached cells identified as >98% microglia. These almost pure microglial preparations can be kept in culture for weeks and show proliferation and phagocytosis. Treatment with macrophage colony-stimulating factor and lipopolysaccharide, alone or in the presence of interferon gamma, induces typical microglial responses in terms of proliferation, morphological changes, nuclear factor-kappaB translocation, NO, and tumor necrosis alpha release and phagocytosis. This method allows for the preparation of highly enriched mouse or rat microglial cultures with ease and reproducibility. Because of its high yield, it can be especially convenient when high amounts of microglial protein/mRNA are required or in cases in which the starting material is limited, such as microglial cultures from transgenic animals.

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Cite This Study

Saura et al. (2003) studied this question.

synapsesocial.com/papers/69d9a63c8988aeabbe685e44https://doi.org/10.1002/glia.10274
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