Neuroprotective Effects of Kukoamine a against Radiation-induced Rat Brain Injury through Inhibition of Oxidative Stress and Neuronal Apoptosis

被引:0
作者
Yaqiong Zhang
Zhihua Cheng
Changli Wang
Hongda Ma
Weihong Meng
Qingchun Zhao
机构
[1] Shenyang Pharmaceutical University,School of Life Sciences and Biopharmaceutis
[2] General Hospital of Shenyang Military Area Command,Department of Pharmacy
[3] Shenyang,Department of Radiation Oncology
[4] General Hospital of Shenyang Military Area Command,undefined
来源
Neurochemical Research | 2016年 / 41卷
关键词
Ionizing radiation; Radiation-induced brain injury; Kukoamine A; Oxidative stress; Apoptosis;
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摘要
Radiation-induced brain injury (RIBI) is a prominent side effect of radiotherapy for cranial tumors. Kukoamine A (KuA) has the ability of anti-oxidative stress and anti-apoptosis in vitro. The aim of this study was to investigate whether KuA would prevent the detrimental effect of ionizing radiation on hippocampal neurons. For this study, male Wistar rats were received either sham irradiation or whole brain irradiation (30 Gy single dose of X-rays) followed by the immediate injection of either KuA or vehicle intravenously. The dose of KuA was 5, 10 and 20 mg/kg respectively. The protective effects of KuA were assessed by Nissl staining. The levels of oxidative stress marker and antioxidants activities were assayed by kits. TUNEL staining was performed to detect the level of apoptosis in hippocampal neurons. The expression of apoptosis-related proteins as well as the brain-derived neurophic factor (BDNF) was evaluated by western blot. Whole brain irradiation led to the neuronal abnormality and it was alleviated by KuA. KuA decreased malondialdehyde (MDA) level, increased glutathione (GSH) level, superoxide dismutase (SOD) and catalase (CAT) activities, as well as alleviated neuronal apoptosis by regulating the expression of cleaved caspase-3, cytochrome C, Bax and Bcl-2. Additionally, KuA increased the expression of BDNF. These data indicate that KuA has neuroprotective effects against RIBI through inhibiting neuronal oxidative stress and apoptosis.
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页码:2549 / 2558
页数:9
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共 189 条
[1]  
Tofilon PJ(2000)The radioresponse of the central nervous system: a dynamic process Radiat Res 153 357-370
[2]  
Fike JR(1994)Neurobehavioral sequelae of cranial irradiation in adults: a review of radiation-induced encephalopathy J Clin Oncol 12 627-642
[3]  
Crossen JR(2010)Neurotoxicity of radiation therapy Neurol Clin 28 217-234
[4]  
Garwood D(2002)DNA damage response pathway in radioadaptive response Mutat Res 504 101-118
[5]  
Glatstein E(2012)Imaging radiotherapy-induced apoptosis Radiat Res 177 467-482
[6]  
Neuwelt EA(2009)Lovastatin attenuates ionizing radiation-induced normal tissue damage in vivo Radiother Oncol 92 492-499
[7]  
Dropcho EJ(1999)Molecular mechanisms of ionizing radiation-induced apoptosis Immunol Cell Biol 77 263-271
[8]  
Sasaki MS(2008)Never-in-mitosis related kinase 1 functions in DNA damage response and checkpoint control Cell Cycle 7 3194-3201
[9]  
Ejima Y(2008)Apoptosis is induced by radiofrequency fields through the caspase-independent mitochondrial pathway in cortical neurons Radiat Res 169 38-45
[10]  
Tachibana A(2015)Silencing Egr1 attenuates radiation-induced apoptosis in normal tissues while killing cancer cells and delaying tumor growth Mol Cancer Ther 14 2343-2352