4.4 Article

Rapid isolation of highly enriched and quiescent microglia from adult rat hippocampus: Immunophenotypic and functional characteristics

Journal

JOURNAL OF NEUROSCIENCE METHODS
Volume 151, Issue 2, Pages 121-130

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jneumeth.2005.06.026

Keywords

microglia; isolation; density gradient; Percoll; immunophenotype; in situ; CD11b; MHC II

Funding

  1. NIDA NIH HHS [F32 DA015591-03] Funding Source: Medline

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Isolation of microglia from CNS tissue provides a powerful too] to study basic microglia biology and examine the effects of in vivo treatments on microglia immunophenotype and function. Previous microglia isolation methodologies utilized whole brain. However, microglia immunophenotype varies across CNS anatomical loci, thus isolation of microglia from whole brain may obscure regional brain variations in microglia immunophenotype and function. In addition, it is unknown to what extent microglia isolation procedures alter the ill situ immunophenotype and function of microglia. The present report details a procedure for the rapid isolation of microglia from discrete CNS anatomical loci and addresses the issue of whether the in situ microglia immunophenotype is significantly altered by the isolation procedure. The present microglia isolation method yielded highly enriched hippocampal microglia, which were devoid of other CNS macrophage subtypes and exhibited attributes reflecting a quiescent phenotype characteristic of microglia observed in situ under non-pathological conditions. Further, isolated microglia exhibited functional responsiveness to immunogenic stimuli ex vivo. The immunophenotypic and functional attributes of isolated microglia suggest that the isolation procedure preserves the in vivo phenotype of microglia, thus providing an experimental method with minimal procedural confounds for examining in vivo treatments on microglia ex vivo. (c) 2005 Elsevier B.V. All rights reserved.

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