Distinct proteins in cortex of rats with closed traumatic brain injury detected by a WCX-2 protein c

来源 :Neural Regeneration Research | 被引量 : 0次 | 上传用户:repopw
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
BACKGROUND: Mechanical injury can cause the changes of polygene expression spectrum in rat cerebral cortical nerve cells,and then result in the changes of intracellular protein expression. At present,dielectrophoresis is combined with mass spectrum technique to detect the expression of different proteins in rat cortex after brain injury,but the protein chip technique requires further investigation. OBJECTIVE: To analyze the differences of protein expression spectrum in rat cerebral cortex before and after closed traumatic brain injury using WCX-2 protein chip technique. DESIGN: A randomized controlled animal experiment. SETTING: Training Division of the Medical College of Chinese People’s Armed Police Force. MATERIALS: Seventy-two male SD rats of clean degree,350-450 g,were provided by the Experimental Animal Center,Academy of Military Medical Sciences of Chinese PLA. Urea,trifluoroacetic acid,CHAPS and Tris (Sigma,USA); WCX-2 (Ciphergen,USA). Ultra-high speed hypothermia centrifuger (Bechman,USA); Rotary tissue microtome (Keuca,Germany); Biochip processor and PBSⅡ-C protein chip reader (Ciphergen,USA). METHODS: The experiments were carried out in the Institute of Molecular Pathology,Central Laboratory,and Department of Pathology,Medical College of Chinese People’s Armed Police Force from June 2005 to March 2006. ① Grouping and treatment: The experiments were completed in molecular pathological institute,central laboratory and pathological department. ① The rats were randomly divided into control group (n =12) and brain injury group (n =60). Marmarou’s weight-dropping models were duplicated at different time points in the brain injury group. In the control group,the rats were only treated by incising the skin of head top,without fixing the stainless steel hitting backup plate at the vault of skull,and obtain brain cortex for pathological and protein chip research,and they were killed after 24 hours. The rats in the brain injury group were killed at 4,8,12,24 and 48 hours after model establishment. ② Pathological observation: Longitudinal section was made on cerebral cortex,and sections of 5 μm were prepared,then stained with hematoxylin and eosin (HE). ③ Protein chip analysis: 100 mg cerebral cortex was collected from each rat,and the protein content in sample was detected with Bradford method,meanwhile,WCX-2 protein chip was used to analyze the protein spectrum. The data were automatically collected with Ciphergen proteinchip 3.0 software,and the results were analyzed using Biomarker Wizard software to compare the differences of protein spectrum in rat cortex between the groups. MAIN OUTCOME MEASURES: Results of the pathological observation of cerebral cortex and the protein spectrum analysis. RESULTS: ① Pathological changes of cerebral cortex: In the control group,no necrosis and edema was observed. In the brain injury group,injures of different severity occurred at different time points; After 4 hours,focal or scattered red nerve cells could be observed,the size of some cells was increased,cytoplasm was lightly stained,and only nuclear fragments were seen; After 8 hours,the necrotic nerve cells were increased,and the number of nerve cells was reduced,astrocytes (neuronophagia) could be seen in partial cytoplasm; there was small vascular dilatation,and endothelial cell proliferation; interstitial edema,regional rarefaction lightly stained. After 12-48 hours,the necrotic nerve cells were reduced,and astrocytes proliferated. ② Results of protein spectrum analysis: The WCX-2 experiment found that the expressions of 5 639,3 212 and 7 536 u proteins in cerebral cortex changed after injury in the brain injury group. The peak intensity of 5 639 u protein in the brain injury group at 8 hours after injury was higher than that in the control group (P < 0.05); The peak intensity of 3 212 u protein in the brain injury group at 48 hours after injury was higher than that in the control group (P < 0.05); The peak intensity of 7 536 u protein at 24 hours after injury was higher than that in the control group (P < 0.05). CONCLUSION: Brain injury can cause the changes of protein expression spectrum in cerebral cortex,it is suggested that brain injury can induce the expression of protein. BACKGROUND: Mechanical injury can cause the changes of polygene expression spectrum in rat cerebral cortical nerve cells, and then result in the changes of intracellular protein expression. At present, dielectrophoresis is combined with mass spectrum technique to detect the expression of different proteins in rat cortex after brain injury, but the protein chip technique requires further investigation. OBJECTIVE: To analyze the differences of protein expression spectrum in rat cerebral cortex before and after closed traumatic brain injury using WCX-2 protein chip technique. DESIGN: A randomized controlled animal experiment. SETTING: Training Division of the Medical College of Chinese People’s Armed Police Force. MATERIALS: Seventy-two male SD rats of clean degree, 350-450 g, were provided by the Experimental Animal Center, Academy of Military Medical Sciences of Chinese PLA. Urea , trifluoroacetic acid, CHAPS and Tris (Sigma, USA); WCX-2 (Ciphergen, USA). Ultra-high speed hypothermia centrifuger ( Bechman, USA); Rotary tissue microtome (Keuca, Germany); Biochip processor and PBS II-C protein chip reader (Ciphergen, USA). METHODS: The experiments were carried out in the Institute of Molecular Pathology, Central Laboratory, and Department of Pathology , Medical College of Chinese People’s Armed Police Force from June 2005 to March 2006. ① Grouping and treatment: The experiments were completed in molecular pathological institute, central laboratory and pathological department. ① The rats were randomly divided into control group (n = 12) and the brain injury group (n = 60). Marmarou’s weight-dropping models were duplicated at different time points in the brain injury group. In the control group, the rats were only treated by incising the skin of head top, without fixing the stainless steel hitting backup plate at the vault of skull, and obtainable brain cortex for pathological and protein chip research, and they were killed after 24 hours. The rats in the brain injury group were killed at 4,8,12,24 a nd 48hours after model establishment. ② Pathological observation: Longitudinal section was made on cerebral cortex, and sections of 5 μm were prepared, then stained with hematoxylin and eosin (HE). ③ Protein chip analysis: 100 mg cerebral cortex was collected from each rat, and the protein content was detected with Bradford method, meanwhile, WCX-2 protein chip was used to analyze the protein spectrum. The data were automatically collected with Ciphergen proteinchip 3.0 software, and the results were analyzed using Biomarker Wizard software to compare the differences of protein spectrum in rat cortex between the groups. MAIN OUTCOME MEASURES: Results of the pathological observation of cerebral cortex and the protein spectrum analysis. RESULTS: ① Pathological changes of cerebral cortex: In the control group, no necrosis and edema was observed. In the brain injury group, injures of different severity occurred at different time points; After 4 hours, focal or scattered red nerve cells After 8 hours, the necrotic nerve cells were increased, and the number of nerve cells was reduced, astrocytes (neuronophagia) could be seen in partial cytoplasm; there was small vascular dilatation, and endothelial cell proliferation; interstitial edema, regional rarefaction lightly stained. After 12-48 hours, the necrotic nerve cells were reduced, and astrocytes proliferated. -2 experiment found that the expressions of 5 639,3 212 and 7 536 u proteins in cerebral cortex changed after injury in the brain injury group. The peak intensity of 5 639 u protein in the brain injury group at 8 hours after injury was higher (P <0.05); The peak intensity of 3 212 u protein in the brain injury group at 48 hours after injury was higher than that in the control group (P <0.05); The peak intensity of 7 53 6 u proteat at 24 hours after injury was higher than that in the control group (P <0.05). CONCLUSION: Brain injury can cause the changes of protein expression spectrum in cerebral cortex, it is suggested that brain injury can induce the expression of protein.
其他文献
鸡西矿业集团公司张辰煤矿西三采区3
众所周知,物理学科是一门以物理实验为基础的学科,学生通过物理实验,可以得到感性直观的直接知识。并且在实验过程中,学生可以纠正自己对知识的思维偏差。化学实验也充分体现
BACKGROUND:Some experiments have demonstrated that injecting orphanin FQ (OFQ) into lateral ventricle, which can obviously decrease the pain threshold. It is in
没有规矩不成方圆教育孩子过分严厉或过分随意都不好。严厉是家长对孩子的过度控制,它会让孩子感到挫折,认为自己毫无能力,造成孩子消极、被动、依赖的心理;父母如果对孩子过
1周年桃花开了又谢了,杨柳青了又枯了,燕子来了又去了。周边的景物更替真真切切地提醒着整日埋头、整日行军在办刊路上的我们:新年已变旧年,新人已成旧人,而由此催生促长的
一、关于2007年度工作的总结1、召开全国农村成人教育为新农村建设服务研讨会。研讨会2007年8月在四川省成都市召开,主题是“农村成人教育如何更好地为建设社会主义新农村服
请下载后查看,本文暂不支持在线获取查看简介。 Please download to view, this article does not support online access to view profile.
请下载后查看,本文暂不支持在线获取查看简介。 Please download to view, this article does not support online access to view profile.
期刊
为使广大市民了解信息化、共享信息化发展成果、共建数字化无锡,让信息化走近市民、服务市民,“世界电信和信息社会日”当天,大型广场咨询活动在无锡市崇安寺二泉广场举行。
合肥30个邮政点售汽车票本报讯6月底,安徽合肥30个邮政网点就可实现汽车票销售。合肥市区设10个网点,肥西、肥东和长丰三县以及乡镇共设置20个邮政网点。合肥的8大客运站之间