Manda Kailash, Ueno Megumi, Moritake Takashi, Anzai Kazunori
National Institute of Radiological Sciences, Chiba-shi-263-8555, Japan.
Behav Brain Res. 2007 Feb 12;177(1):7-14. doi: 10.1016/j.bbr.2006.11.013. Epub 2006 Dec 4.
Reactive oxygen species are implicated in neurodegeneration and cognitive disorders due to higher vulnerability of neuronal tissues. The cerebellum is recently reported to be involved in cognitive function. Therefore, present study aimed at investigating the role alpha-lipoic acid against radiation-induced oxidative stress and antioxidant status in cerebellum and its correlation with cognitive dysfunction. We observed spontaneous motor activities and spatial memory task of mice using pyroelectric infrared sensor and programmed video tracking system, respectively. Whole body X-irradiation (6 Gy) of mice substantially impaired the reference memory and motor activities of mice. However, acute intraperitoneal treatment of mice with alpha-lipoic acid prior to irradiation significantly attenuated such cognitive dysfunction. Alpha-lipoic acid pretreatment exerted a very high magnitude of protection against radiation-induced augmentation of protein carbonyls and thiobarbituric acid reactive substance (TBARS) in mice cerebellum. Further, radiation-induced deficit of total, nonprotein and protein-bound sulfhydryl (T-SH, NP-SH, PB-SH) contents of cerebellum and plasma ferric reducing power (FRAP) was also inhibited by alpha-lipoic acid pre-treatment. Moreover, alpha-lipoic acid treated mice showed an intact cytoarchitecture of cerebellum, higher counts of intact Purkinje cells and granular cells in comparison to untreated irradiated mice. Results clearly indicate that alpha-lipoic acid is potent neuroprotective antioxidant.
由于神经组织的更高易损性,活性氧与神经退行性变和认知障碍有关。最近有报道称小脑参与认知功能。因此,本研究旨在探讨α-硫辛酸对辐射诱导的小脑氧化应激和抗氧化状态的作用及其与认知功能障碍的相关性。我们分别使用热释电红外传感器和程序视频跟踪系统观察了小鼠的自发运动活动和空间记忆任务。对小鼠进行全身X射线照射(6 Gy)会显著损害小鼠的参考记忆和运动活动。然而,在照射前对小鼠进行α-硫辛酸急性腹腔注射治疗可显著减轻这种认知功能障碍。α-硫辛酸预处理对辐射诱导的小鼠小脑蛋白质羰基和硫代巴比妥酸反应性物质(TBARS)增加具有很高程度的保护作用。此外,α-硫辛酸预处理还抑制了辐射诱导的小脑总巯基、非蛋白质结合巯基和蛋白质结合巯基(T-SH、NP-SH、PB-SH)含量以及血浆铁还原能力(FRAP)的降低。此外,与未治疗的照射小鼠相比,α-硫辛酸处理的小鼠小脑细胞结构完整,浦肯野细胞和颗粒细胞的完整计数更高。结果清楚地表明,α-硫辛酸是一种有效的神经保护抗氧化剂。