大鼠短暂局灶性脑缺血再灌注后肿瘤坏死因子-α的变化及其与氧化应激的关系

Hiba A Awooda, Gihan M. Sharara, S. A. Mahmoud
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摘要

背景:TNF-α在缺血/再灌注(I/R)中的作用仍有争议。本研究的目的是评估遭受短暂性脑I/R的大鼠的TNF-α,并将其水平与由此产生的神经功能缺损和氧化应激生物标志物丙二醛和总抗氧化能力(TAC)联系起来。材料与方法:以30只成年雄性Wistar大鼠为实验对象。将大鼠分为两组,每组15只,试验组左颈总动脉(CCA)闭塞30分钟后再灌注24小时,给予短暂性局灶性脑I/R。对照组在同一颈部区域进行手术,无CCA闭塞。进行神经行为评估。ELISA法检测TNF-α。用比色法测定丙二醛和TAC。结果:试验组大鼠血清及脑组织中TNF-α、丙二醛浓度均显著高于对照组(P =0.000)。实验组大鼠血清和脑组织TAC水平明显低于假手术大鼠(P = 0.000)。脑组织和血清TNF-α水平与神经功能缺损和TAC呈负相关,与丙二醛呈正相关(P = 0.000)。结论:本研究揭示了TNF-α在脑I/R大鼠中的潜在损伤作用,并证明了TNF-α与氧化应激生物标志物和随之而来的神经功能障碍之间的直接关系。
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Tumor Necrosis Factor-α in Rats Following Transient Focal Cerebral Ischemia Reperfusion and Its Relation to Oxidative Stress
Background: The role of TNF-α in ischemic/reperfusion (I/R) is still controversial. The aim of this study was to assess TNF-α in rats subjected to transient cerebral I/R and to correlate their levels with the resulting neurological deficits and oxidative stress biomarkers malondialdehyde and total antioxidant capacity (TAC). Material and Method: Experimental procedures were performed on 30 adult male Wistar rats. Divided into two groups fifteen rats in each, test group subjected to transient focal cerebral I/R by occlusion of the left common carotid artery (CCA) for 30 minutes followed by reperfusion for 24-hours. A control group underwent the surgery at the same neck region without occlusion of the CCA. Neurobehavioral assessments were evaluated. TNF-α was measured using ELISA method. Malondialdehyde and TAC were estimated colorimetry. Results: In the test group TNF-α and Malondialdehyde concentration in both serum and brain tissue were significantly higher than control group (P =0.000). In contrast, the serum and brain tissue levels of TAC in the test group was significantly lower compared to the sham operated rats (P = 0.000). The brain tissue and serum level of TNF-α were correlated negatively with neurological deficit and TAC and positively with Malondialdehyde (P = 0.000). Conclusion: the present study revealed a potential injurious role of TNF-α in rats subjected to cerebral I/R and demonstrated a direct relationship between TNF-α and oxidative stress biomarkers and the consequent neurological deficits.
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