SOD1
细胞外
脊髓
生物
神经科学
肌萎缩侧索硬化
神经胶质
解剖
小胶质细胞
中枢神经系统
细胞生物学
化学
病理
医学
免疫学
炎症
疾病
作者
Melanie Kaiser,Iris Maletzki,Swen Hülsmann,Bettina Holtmann,Walter Schulz‐Schaeffer,Frank Kirchhoff,Mathias Bähr,Clemens Neusch
标识
DOI:10.1111/j.1471-4159.2006.04131.x
摘要
Abstract Transgenic mice expressing the superoxide dismutase G93A mutation (SOD1 G93A ) were used to investigate the role of glial inwardly rectifying K + (Kir)4.1 channels, which buffer extracellular K + increases in response to neuronal excitation. A progressive decrease in Kir4.1 immunoreactivity was observed predominantly in the ventral horn of SOD1 G93A mutants. Immunoblotting of spinal cord extracts mirrored these changes by showing a loss of Kir4.1 channels from presymptomatic stages onwards. Kir4.1 channels were found to be expressed in the spinal cord grey matter, targetting astrocytes and clustering around capillaries, supporting their role in clearance of extracellular K + . To understand the functional implications of extracellular K + increases, we challenged the NSC34 motor neurone cell line with increasing extracellular K + concentrations. Exposure to high extracellular K + induced progressive motor neurone cell death. We suggest that loss of Kir4.1 impairs perineural K + homeostasis and may contribute to motor neurone degeneration in SOD1 G93A mutants by K + excitotoxic mechanisms.
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