Department of Neurology, the First Affiliated Hospital of Nanjing Medical University, Nanjing- 210 029, China.
Neurol India. 2010 Jul-Aug;58(4):530-6. doi: 10.4103/0028-3886.68665.
Neural damage can be mitigated by calcium-channel blockers (CCBs). However, the mechanism of action of CCBs is not yet fully understood. Objective : To investigate the mechanism of action and efficacy of CCB, flunarizine in restoring neural function after crush injury to the nerves.
The sciatic nerves of rats were crushed using pincers to establish the model for crush injury. Two hundred and eighty-eight Sprague-Dawley (SD) rats were randomly divided into sham-operated, saline, and low-dose flunarizine and high-dose flunarizine (FI and FII) groups. The expression of the protein c-fos in the dorsal root ganglia (DRG) after crush injury to the sciatic nerves was investigated by using reverse transcription-polymerase chain reaction (RT-PCR) and Western blot. The effect of flunarizine on c-fos expression and its efficacy in restoring neural function was evaluated.
The c-fos messenger ribonucleic acid (mRNA) and protein expression in FI and FII groups was significantly lower than in the saline group and was the least in the FII group. Nerve-conduction velocity was increased in the order of: saline < FI< FII< sham-operated. There was no significant difference in the nerve-conduction velocity in the sham-operated and FII groups (P>.05).
When administered after crush injury to peripheral nerves, flunarizine may protect neurons with lesions from further damage and improve neural function by downregulating c-fos expression.
钙通道阻滞剂 (CCB) 可减轻神经损伤。然而,CCB 的作用机制尚不完全清楚。目的:研究 CCB 氟桂利嗪在修复神经挤压伤后神经功能中的作用机制和疗效。
使用钳子夹伤大鼠坐骨神经建立挤压伤模型。将 288 只 Sprague-Dawley (SD) 大鼠随机分为假手术组、盐水组、低剂量氟桂利嗪组和高剂量氟桂利嗪组 (FI 和 FII 组)。采用逆转录-聚合酶链反应 (RT-PCR) 和 Western blot 检测坐骨神经挤压伤后背根神经节 (DRG) 中 c-fos 蛋白的表达。评价氟桂利嗪对 c-fos 表达的影响及其对神经功能的恢复作用。
FI 和 FII 组 c-fos 信使核糖核酸 (mRNA) 和蛋白表达均明显低于盐水组,FII 组最低。神经传导速度的顺序为:盐水组<FI 组<FII 组<假手术组。假手术组和 FII 组的神经传导速度无显著性差异 (P>.05)。
氟桂利嗪在周围神经挤压伤后给药,可能通过下调 c-fos 表达来保护受损神经元免受进一步损伤,改善神经功能。