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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Calbindin-D28k fails to protect hippocampal neurons against ischemia in spite of its cytoplasmic calcium buffering properties: evidence from calbindin-D28k knockout mice.
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Calbindin-D28k fails to protect hippocampal neurons against ischemia in spite of its cytoplasmic calcium buffering properties: evidence from calbindin-D28k knockout mice.

机译:尽管Calbindin-D28k具有细胞质钙缓冲特性,但它仍不能保护海马神经元免受局部缺血:来自calbindin-D28k敲除小鼠的证据。

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摘要

Cytoplasmic calcium-binding proteins are thought to shield neurons against damage induced by excessive Ca2+ elevations. Yet, in theory, a mobile cellular Ca2+ buffer could just as well promote neuronal injury by facilitating the rapid dispersion of Ca2+ throughout the cytoplasm. In sharp contrast to controls, in mice lacking the gene for calbindin-D28k, synaptic responses of hippocampal CA1 pyramidal neurons which are normally extremely vulnerable to ischemia, recovered significantly faster and more completely after a transient oxygen-glucose deprivation in vitro, and sustained less cellular damage following a 12 min carotid artery occlusion in vivo. Other cellular and synaptic properties such as the altered adaptation of action potential firing, and altered paired-pulse and frequency potentiation at affected synapses in calbindin-D28k-deficient mice were consistent with a missing intraneuronal Ca2+ buffer. Our findings provide direct experimental evidence against a neuroprotective role for calbindin-D28k.
机译:细胞质钙结合蛋白被认为可以保护神经元免受过度的Ca2 +升高引起的损害。然而,从理论上讲,移动细胞Ca2 +缓冲液也可以通过促进Ca2 +在整个细胞质中的快速分散来促进神经元损伤。与对照组形成鲜明对比的是,在缺乏calbindin-D28k基因的小鼠中,海马CA1锥体神经元的突触反应通常对缺血极为脆弱,在短暂的体外氧-葡萄糖剥夺后,其恢复速度更快,更完全,并且持续时间更长。在体内颈动脉闭塞12分钟后细胞受损。在calbindin-D28k缺陷小鼠中,其他细胞和突触特性(如动作电位触发的适应性改变,成对突触和频率增强的改变)均与缺失的神经内Ca2 +缓冲液一致。我们的发现为针对钙结合蛋白-D28k的神经保护作用提供了直接的实验证据。

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