4.5 Article

Ion channel expression in resting and activated microglia of hippocampal slices from juvenile mice

Journal

BRAIN RESEARCH
Volume 1186, Issue -, Pages 21-28

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.brainres.2007.10.027

Keywords

potassium channels; proton channels; brain macrophages; hippocampus; mouse

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Ion channels have frequently been studied in isolated cultured microglia, whereas only little is known about the physiological properties of microglia in situ. In this study, expression of voltage-gated and Ca2+-activated ion channels was investigated in microglial cells of acutely prepared and briefly cultured hippocampal slices from juvenile mice. In contrast to microglia of adult brain slices, microglia of slices from juvenile mice exhibited a complex ion channel pattern. Resting microglial cells of acute slices expressed inward rectifier and outward rectifier K+ channels as well as Zn2+ sensitive voltage-activated H+ channels. In activated microglia of briefly Cultured slices, expression levels of both K+ channel types were upregulated, while H+ channel expression remained unchanged. In addition, microglia of cultured slices exhibited Ca2+-activated K+ currents, which were not seen in microglia of acute slices, and differed from those expressed in isolated cultured murine microglia. in situ, microglial Ca2+-activated K+ channels were voltage- and Ca2+-dependent, had a large single-channel conductance and were inhibited by tetraethyl ammonium. In summary, our data indicate that the physiological properties of microglia in acute and cultured hippocampal slices from juvenile mice differ markedly from those of microglia cultured in vitro and from those of microglia in adult brain slices. (c) 2007 Elsevier B.V. All rights reserved.

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