Optimizing Nicorandil for Spinal Cord Protection in a Murine Model of Complex Aortic Intervention

尼可地尔 医学 神经保护 麻醉 药理学 钾通道开放器 缺血 ATP敏感性钾离子通道 脊髓 再灌注损伤 脊髓损伤 钾通道 内科学 格列本脲 内分泌学 糖尿病 精神科
作者
Yuki Ikeno,Christian V. Ghincea,Gavriel Roda,Linling Cheng,Muhammad Aftab,Xianzhong Meng,Michael J. Weyant,Joseph C. Cleveland,David A. Fullerton,T. Brett Reece
出处
期刊:Seminars in Thoracic and Cardiovascular Surgery [Elsevier BV]
卷期号:34 (1): 28-38 被引量:5
标识
DOI:10.1053/j.semtcvs.2021.01.003
摘要

There are currently no clinically utilized pharmacological agents for the induction of metabolic tolerance to spinal cord ischemia-reperfusion injury in the setting of complex aortic intervention. Nicorandil, a nitric oxide donor and ATP-sensitive potassium (KATP) channel opener, has shown promise in neuroprotection. However, the optimized clinical application of the drug and its mechanism of neuroprotection remains unclear. We hypothesized that 3-days pretreatment would confer the most effective neuroprotection, mediated by mitochondrial KATP channel activation. Spinal cord injury was induced by 7 minutes of thoracic aortic cross-clamping in adult male C57BL/6 mice. Time course: mice received 0.1 mg/kg nicorandil for 10 min, 4 hours, and 3 consecutive days prior to ischemia compared with control. Dose challenge: mice received 3-days nicorandil pretreatment comparing 0.1 mg/kg, 1.0 mg/kg, 5.0 mg/kg, and saline administration. Mitochondrial KATP channel blocker 5-hydroxy-decanoate (5HD) was co-administered to elucidate mechanism. Limb motor function was evaluated, and viable anterior horn neurons quantified. Nicorandil pretreatment at 4 hours and 3 days before ischemia demonstrated significant motor function preservation; administration 10 minutes before ischemia showed no neuroprotection. All nicorandil doses showed significant motor function preservation. Three days administration of Nicorandil 1.0 mg/kg was most potent. Neuroprotection was completely abolished by 5HD co-administration. Histological analysis showed significant neuron preservation with nicorandil pretreatment, which was attenuated by 5HD co-administration. Three days administration of Nicorandil 1.0 mg/kg showed near-total motor function preservation in a murine spinal cord ischemia-reperfusion model, mediated by the mitochondrial KATP channel.
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