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Cav2.1 通道 α1 亚基突变小鼠的缺血性神经元损伤分析。

Analysis of ischemic neuronal injury in Cav2.1 channel α1 subunit mutant mice.

机构信息

Division of Pulmonary and Critical Care Medicine, David Geffen School of Medicine, University of California, Los Angeles, CA 90095-1690, USA.

出版信息

Biochem Biophys Res Commun. 2013 Apr 26;434(1):60-4. doi: 10.1016/j.bbrc.2013.03.066. Epub 2013 Mar 29.

Abstract

One of the main instigators leading to cell death and brain damage following ischemia is Ca(2+) dysregulation. Neuronal membrane depolarization results in the activation of voltage-gated Ca(2+) (CaV) channels and intracellular Ca(2+) influx. We investigated the physiological role of the CaV2.1 (P/Q-type) channel in ischemic neuronal injury using CaV2.1 channel α1 subunit mutant mice, rolling Nagoya and leaner mice. The in vivo ischemia model with a complete occlusion of the middle cerebral artery showed that the infarct area at 24h was significantly smaller in rolling Nagoya (27.1±3.5% of total brain volume) and leaner (20.1±3.5%) mice compared to wild-type (42.9±4.5%) mice. In an in vitro Ca(2+) imaging study, oxygen-glucose deprivation using a hippocampal slice induced a significantly slower rate of increase in intracellular Ca(2+) concentration ([Ca(2+)]i) in rolling Nagoya (0.083±0.007/min) and leaner (0.062±0.006/min) mice compared to wild-type (0.105±0.008/min) mice. These results demonstrate that the mutant CaV2.1 channel in rolling Nagoya and leaner mice plays a different protective role in a ([Ca(2+)]i)-dependent manner in ischemic models and indicate that CaV2.1 channel blockers may be used preventively against ischemic injury.

摘要

钙(Ca(2+))稳态失调是缺血后细胞死亡和脑损伤的主要诱因之一。神经元膜去极化导致电压门控 Ca(2+)(CaV)通道的激活和细胞内 Ca(2+)内流。我们使用 CaV2.1 通道 α1 亚基突变小鼠(滚动 Nagoya 和 leaner 小鼠)研究了 CaV2.1 通道在缺血性神经元损伤中的生理作用。大脑中动脉完全闭塞的体内缺血模型显示,与野生型(42.9±4.5%)小鼠相比,滚动 Nagoya(27.1±3.5%)和 leaner(20.1±3.5%)小鼠的梗死面积在 24 小时时明显更小。在体外 Ca(2+)成像研究中,使用海马切片进行氧葡萄糖剥夺诱导的细胞内 Ca(2+)浓度 ([Ca(2+)]i) 增加率在滚动 Nagoya(0.083±0.007/min)和 leaner(0.062±0.006/min)小鼠中明显低于野生型(0.105±0.008/min)小鼠。这些结果表明,在缺血模型中,滚动 Nagoya 和 leaner 小鼠中的突变 CaV2.1 通道以依赖于 ([Ca(2+)]i) 的方式发挥不同的保护作用,并表明 CaV2.1 通道阻滞剂可能被预防性地用于预防缺血性损伤。

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