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Isoflurane Preconditioning Induces Neuroprotection by Up-Regulation of TREK1 in a Rat Model of Spinal Cord Ischemic Injury

机译:异氟烷预处理通过上调TREK1诱导大鼠脊髓缺血性损伤的神经保护作用。

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摘要

This study aimed to explore the neuroprotection and mechanism of isoflurane on rats with spinal cord ischemic injury. Total 40 adult male Sprague-Dawley rats were divided into the four groups (n=10). Group A was sham-operation group; group B was ischemia group; group C was isoflurane preconditioning group; group D was isoflurane preconditioning followed by ischemia treatment group. Then the expressions of TWIK-related K+ channel 1 (TREK1) in the four groups were detected by immunofluorescent assay, real time-polymerase chain reactions (RT-PCR) and western blot. The primary neurons of rats were isolated and cultured under normal and hypoxic conditions. Besides, the neurons under two conditions were transfected with green fluorescent protein (GFP)-TREK1 and lentivirual to overexpress and silence TREK1. Additionally, the neurons were treated with isoflurane or not. Then caspase-3 activity and cell cycle of neurons under normal and hypoxic conditions were detected. Furthermore, nicotinamide adenine dinucleotide hydrate (NADH) was detected using NAD+/NADH quantification colorimetric kit. Results showed that the mRNA and protein expressions of TREK1 increased significantly in group C and D. In neurons, when TREK1 silenced, isoflurane treatment improved the caspase-3 activity. In hypoxic condition, the caspase-3 activity and sub-G1 cell percentage significantly increased, however, when TREK1 overexpressed the caspase-3 activity and sub-G1 cell percentage decreased significantly. Furthermore, both isoflurane treatment and overexpression of TREK1 significantly decreased NADH. In conclusion, isoflurane-induced neuroprotection in spinal cord ischemic injury may be associated with the up-regulation of TREK1.
机译:本研究旨在探讨异氟烷对大鼠脊髓缺血性损伤的神经保护作用及其机制。将总共​​40只成年雄性Sprague-Dawley大鼠分成四组(n = 10)。 A组为假手术组; B组为缺血组; C组为异氟烷预处理组; D组为异氟烷预处理,然后缺血治疗组。通过免疫荧光法,实时聚合酶链反应(RT-PCR)和western blot检测4组中TWIK相关的K + 通道1(TREK1)的表达。分离大鼠的原代神经元并在正常和低氧条件下培养。此外,将两种条件下的神经元分别转染绿色荧光蛋白(GFP)-TREK1和慢病毒,以过度表达和沉默TREK1。另外,是否用异氟烷治疗神经元。然后检测正常和低氧条件下神经元的caspase-3活性和细胞周期。此外,使用NAD + / NADH定量比色试剂盒检测烟酰胺腺嘌呤二核苷酸水合物(NADH)。结果显示,C组和D组TREK1的mRNA和蛋白表达显着增加。在神经元中,当TREK1沉默时,异氟烷处理可提高caspase-3活性。在低氧条件下,caspase-3活性和sub-G1细胞百分比显着增加,但是,当TREK1过表达caspase-3活性和sub-G1细胞百分比显着降低时。此外,异氟烷处理和TREK1的过表达均显着降低NADH。总之,异氟烷诱导的脊髓缺血性损伤中的神经保护作用可能与TREK1的上调有关。

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