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Animal model of repetitive mild traumatic brain injury for human traumatic axonal injury and chronic traumatic encephalopathy
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作者 Leyan Xu 《Neural Regeneration Research》 SCIE CAS CSCD 2015年第11期1731-1732,共2页
Chronic traumatic encephalopathy(CTE)is a chronic neurodegenerative disease featured with tauopathy.CTE is tightly related with repetitive mild traumatic brain injury(m TBI),which is interchangeably known as concu... Chronic traumatic encephalopathy(CTE)is a chronic neurodegenerative disease featured with tauopathy.CTE is tightly related with repetitive mild traumatic brain injury(m TBI),which is interchangeably known as concussion(Mc Kee et al.,2009,2013).This disease is differentiated by neuropathological features from other neurological diseases that involve tau protein aggregation and tangle formation abnormalities like Alzheimer's disease (AD), frontotemporal dementia, and Parkinson- ism linked to chromosome 17 (FTDP-17). 展开更多
关键词 TBI animal model of repetitive mild traumatic brain injury for human traumatic axonal injury and chronic traumatic encephalopathy
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Stability of rat models of fluid percussion-induced traumatic brain injury: comparison of three different impact forces 被引量:1
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作者 Yun-peng Lin Rong-cai Jiang Jian-ning Zhang 《Neural Regeneration Research》 SCIE CAS CSCD 2015年第7期1088-1094,共7页
Fluid percussion-induced traumatic brain injury models have been widely used in experimental research for years. In an experiment, the stability of impaction is inevitably affected by factors such as the appearance of... Fluid percussion-induced traumatic brain injury models have been widely used in experimental research for years. In an experiment, the stability of impaction is inevitably affected by factors such as the appearance of liquid spikes. Management of impact pressure is a crucial factor that determines the stability of these models, and direction of impact control is another basic element. To improve experimental stability, we calculated a pressure curve by generating repeated impacts using a fluid percussion device at different pendulum angles. A stereotactic frame was used to control the direction of impact. We produced stable and reproducible models, including mild, moderate, and severe traumatic brain injury, using the MODEL01-B device at pendulum angles of 6°, 11° and 13°, with corresponding impact force values of 1.0 ± 0.11 atm(101.32 ± 11.16 k Pa), 2.6 ± 0.16 atm(263.44 ± 16.21 k Pa), and 3.6 ± 0.16 atm(364.77 ± 16.21 k Pa), respectively. Behavioral tests, hematoxylin-eosin staining, and magnetic resonance imaging revealed that models for different degrees of injury were consistent with the clinical properties of mild, moderate, and severe craniocerebral injuries. Using this method, we established fluid percussion models for different degrees of injury and stabilized pathological features based on precise power and direction control. 展开更多
关键词 nerve regeneration traumatic brain injury fluid percussion impact force pressure curve head fixed impact peak animal models neural regeneration
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Microglia and astrocytes mediate synapse engulfment in a MER tyrosine kinase-dependent manner after traumatic brain injury 被引量:3
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作者 Hui Shen Xiao-Jing Shi +6 位作者 Lin Qi Cheng Wang Muyassar Mamtilahun Zhi-Jun Zhang Won-Suk Chung Guo-Yuan Yang Yao-Hui Tang 《Neural Regeneration Research》 SCIE CAS CSCD 2023年第8期1770-1776,共7页
Recent studies have shown that microglia/macrophages and astrocytes can mediate synaptic phagocytosis through the MER proto-oncokinase in developmental or stroke models,but it is unclear whether the same mechanism is ... Recent studies have shown that microglia/macrophages and astrocytes can mediate synaptic phagocytosis through the MER proto-oncokinase in developmental or stroke models,but it is unclear whether the same mechanism is also active in traumatic brain injury.In this study,we established a mouse model of traumatic brain injury and found that both microglia/macrophages and astrocytes phagocytosed synapses and expression of the MER proto-oncokinase increased 14 days after injury.Specific knockout of MER in microglia/macrophages or astrocytes markedly reduced injury volume and greatly improved neurobehavioral function.In addition,in both microglia/macrophages-specific and astrocytes-specific MER knock-out mice,the number of microglia/macrophage and astrocyte phagocytosing synapses was markedly decreased,and the total number of dendritic spines was increased.Our study suggested that MER proto-oncokinase expression in microglia/macrophages and astrocytes may play an important role in synaptic phagocytosis,and inhibiting this process could be a new strategy for treating traumatic brain injury. 展开更多
关键词 animal model astrocyte dendritic spines LYSOSOME macrophage MER proto-oncokinase MICROGLIA neurologic function phagocytosis synapse engulfment traumatic brain injury
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The pig as a preclinical traumatic brain injury model:current models,functional outcome measures,and translational detection strategies 被引量:8
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作者 Holly A.Kinder Emily W.Baker Franklin D.West 《Neural Regeneration Research》 SCIE CAS CSCD 2019年第3期413-424,共12页
Traumatic brain injury(TBI) is a major contributor of long-term disability and a leading cause of death worldwide. A series of secondary injury cascades can contribute to cell death, tissue loss, and ultimately to the... Traumatic brain injury(TBI) is a major contributor of long-term disability and a leading cause of death worldwide. A series of secondary injury cascades can contribute to cell death, tissue loss, and ultimately to the development of functional impairments. However, there are currently no effective therapeutic interventions that improve brain outcomes following TBI. As a result, a number of experimental TBI models have been developed to recapitulate TBI injury mechanisms and to test the efficacy of potential therapeutics. The pig model has recently come to the forefront as the pig brain is closer in size, structure, and composition to the human brain compared to traditional rodent models, making it an ideal large animal model to study TBI pathophysiology and functional outcomes. This review will focus on the shared characteristics between humans and pigs that make them ideal for modeling TBI and will review the three most common pig TBI models–the diffuse axonal injury, the controlled cortical impact, and the fluid percussion models. It will also review current advances in functional outcome assessment measures and other non-invasive, translational TBI detection and measurement tools like biomarker analysis and magnetic resonance imaging. The use of pigs as TBI models and the continued development and improvement of translational assessment modalities have made significant contributions to unraveling the complex cascade of TBI sequela and provide an important means to study potential clinically relevant therapeutic interventions. 展开更多
关键词 traumatic brain injury large animal model PIG model diffuse AXONAL injury FUNCTIONAL outcome assessment measures controlled cortical impact model fluid percussion injury model magnetic resonance imaging biomarkers
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Differences in pathological changes between two rat models of severe traumatic brain injury 被引量:5
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作者 Yi-Ming Song Yu Qian +6 位作者 Wan-Qiang Su Xuan-Hui Liu Jin-Hao Huang Zhi-Tao Gong Hong-Liang Luo Chuang Gao Rong-Cai Jiang 《Neural Regeneration Research》 SCIE CAS CSCD 2019年第10期1796-1804,共9页
The rat high-impact free weight drop model mimics the diffuse axonal injury caused by severe traumatic brain injury in humans,while severe controlled cortical impact can produce a severe traumatic brain injury model u... The rat high-impact free weight drop model mimics the diffuse axonal injury caused by severe traumatic brain injury in humans,while severe controlled cortical impact can produce a severe traumatic brain injury model using precise strike parameters.In this study,we compare the pathological mechanisms and pathological changes between two rat severe brain injury models to identify the similarities and differences.The severe controlled cortical impact model was produced by an electronic controlled cortical impact device,while the severe free weight drop model was produced by dropping a 500 g free weight from a height of 1.8 m through a plastic tube.Body temperature and mortality were recorded,and neurological deficits were assessed with the modified neurological severity score.Brain edema and bloodbrain barrier damage were evaluated by assessing brain water content and Evans blue extravasation.In addition,a cytokine array kit was used to detect inflammatory cytokines.Neuronal apoptosis in the brain and brainstem was quantified by immunofluorescence staining.Both the severe controlled cortical impact and severe free weight drop models exhibited significant neurological impairments and body temperature fluctuations.More severe motor dysfunction was observed in the severe controlled cortical impact model,while more severe cognitive dysfunction was observed in the severe free weight drop model.Brain edema,inflammatory cytokine changes and cortical neuronal apoptosis were more substantial and blood-brain barrier damage was more focal in the severe controlled cortical impact group compared with the severe free weight drop group.The severe free weight drop model presented with more significant apoptosis in the brainstem and diffused blood-brain barrier damage,with higher mortality and lower repeatability compared with the severe controlled cortical impact group.Severe brainstem damage was not found in the severe controlled cortical impact model.These results indicate that the severe controlled cortical impact model is relatively more stable,more reproducible,and shows obvious cerebral pathological changes at an earlier stage.Therefore,the severe controlled cortical impact model is likely more suitable for studies on severe focal traumatic brain injury,while the severe free weight drop model may be more apt for studies on diffuse axonal injury.All experimental procedures were approved by the Ethics Committee of Animal Experiments of Tianjin Medical University,China(approval No.IRB2012-028-02)in Febru ary 2012. 展开更多
关键词 nerve REGENERATION severe traumatic brain injury animal model comparison free weight drop controlled cortical impact NEUROLOGICAL impairment NEUROINFLAMMATION blood-brain barrier damage neuronal apoptosis diffuse AXONAL injury brainSTEM injury neural REGENERATION
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MicroRNAs as diagnostic markers and therapeutic targets for traumatic brain injury 被引量:7
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作者 Bridget Martinez Philip V.Peplow 《Neural Regeneration Research》 SCIE CAS CSCD 2017年第11期1749-1761,共13页
Traumatic brain injury (TBI) is characterized by primary damage to the brain from the external mechanical force and by subsequent secondary injury due to various molecular and pathophysiological responses that event... Traumatic brain injury (TBI) is characterized by primary damage to the brain from the external mechanical force and by subsequent secondary injury due to various molecular and pathophysiological responses that eventually lead to neuronal cell death. Secondary brain injury events may occur minutes, hours, or even days after the trauma, and provide valuable therapeutic targets to prevent further neuronal degeneration. At the present time, there is no effective treatment for TBI due, in part, to the widespread impact of numerous complex secondary biochemical and pathophysiological events occurring at different time points following the initial injury. MicroRNAs control a range of physiological and pathological functions such as develop- ment, differentiation, apoptosis and metabolism, and may serve as potential targets for progress assessment and intervention against TBI to mitigate secondary damage to the brain. This has implications regarding improving the diagnostic accuracy of brain impairment and long-term outcomes as well as potential novel treatments. Recent human studies have identified specific microRNAs in serum/plasma (miR-425-p, -21, -93, -191 and -499) and cerebro-spinal fluid (CSF) (miR-328, -362-3p, -451, -486a) as possible indicators of the diagnosis, severity, and prognosis of TBI. Experimental animal studies have examined specific microRNAs as biomarkers and therapeutic targets for moderate and mild TBI (e.g., miR-21, miR-23b). MicroRNA profil- ing was altered by voluntary exercise. Differences in basal microRNA expression in the brain of adult and aged animals and alterations in response to TBI (e.g., miR-21) have also been reported. Further large-scale studies with TBI patients are needed to provide more information on the changes in microRNA profiles in different age groups (children, adults, and elderly). 展开更多
关键词 traumatic brain injury MICRORNAS diagnostic markers therapeutic targets: humans animal models
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Gliosis after traumatic brain injury in conditional ephrinB2-knockout mice 被引量:3
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作者 LIU Ling CHEN Xiao-lin +2 位作者 YANG Jian-kai REN Ze-guang WANG Shuo 《Chinese Medical Journal》 SCIE CAS CSCD 2012年第21期3831-3835,共5页
Background In response to the injury of the central nervous system (CNS), the astrocytes upregulate the expression of glial fibrillary acidic protein (GFAP), which largely contributes to the reactive gliosis after... Background In response to the injury of the central nervous system (CNS), the astrocytes upregulate the expression of glial fibrillary acidic protein (GFAP), which largely contributes to the reactive gliosis after brain injury. The regulatory mechanism of this process is still not clear. In this study, we aimed to compare the ephrin-B2 deficient mice with the wild type ones with regard to qliosis after traumatic brain injury 展开更多
关键词 traumatic brain injury animal models ephrin-b2 gene knockout gliosis
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改良Feeney自由落体法建立大鼠创伤性脑损伤模型 被引量:1
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作者 高思淼 吴晓光 +3 位作者 韩雪 许士奇 李葵花 彭勇 《中国组织工程研究》 CAS 北大核心 2024年第26期4164-4169,共6页
背景:目前关于Feeney自由落体创伤性脑损伤模型,探讨减轻开颅过程中持续磨骨损伤因素的文献较少。目的:通过改变开颅骨窗方式改良创伤性脑损伤大鼠模型。方法:将36只SD大鼠随机平均分成假手术组、模型组和改良模型组。改良模型组造模过... 背景:目前关于Feeney自由落体创伤性脑损伤模型,探讨减轻开颅过程中持续磨骨损伤因素的文献较少。目的:通过改变开颅骨窗方式改良创伤性脑损伤大鼠模型。方法:将36只SD大鼠随机平均分成假手术组、模型组和改良模型组。改良模型组造模过程中改良了开骨窗的方式,用小钻头磨骨钻低速2 m/s,在打击的损伤区域边缘打6-8个小孔,每圆孔直径为0.3-0.5 mm,感到空腔而不触及脑实质后立即抽出。改良模型组和假手术组采用改良后的方法开骨窗,模型组按常规开骨窗方法,实施的打击参数相同改良模型组;假手术组不实施打击。造模后第1天对大鼠进行mNSS评分;造模后第1,7天扫描T2WI磁共振成像,测量T2值;造模后第7天,苏木精-伊红染色病理切片观察脑组织形态学,并检测血液黏度和炎症因子白细胞介素6、白细胞介素1β、肿瘤坏死因子α水平。结果与结论:①造模后第1天,模型组、改良模型组大鼠mNSS评分均高于假手术组(P<0.0001),改良模型组评分低于模型组(P<0.0001);②造模后第1,7天,模型组、改良模型组T2值均高于假手术组(P<0.05),改良模型组T2值低于模型组(P<0.05);③造模后第7天,模型组和改良模型组的血液黏度值、白细胞介素6、白细胞介素1β、肿瘤坏死因子α水平均高于假手术组(P<0.05),改良模型组白细胞介素6水平低于模型组(P<0.05);④基于Feeney自由落体法的创伤性脑损伤大鼠改良模型较好地控制了创伤性脑损伤大鼠造模中开颅骨的损伤因素。 展开更多
关键词 创伤性脑损伤 动物模型改良 行为学 炎症因子 大鼠
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创伤性脑损伤及其治疗药物 被引量:1
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作者 张怡之 宋兴爽 +2 位作者 李祺 黄欣 杜丽娜 《沈阳药科大学学报》 CAS CSCD 2024年第3期397-408,共12页
创伤性脑损伤(traumatic brain injury,TBI)是一种威胁人类生命安全的常见损伤。由于其损伤机制复杂,目前外科手术是临床首选治疗手段,但针对手术后继发性TBI的预防与治疗尚没有有效治疗药物。研究TBI损伤机制、寻找有效治疗药物以减轻... 创伤性脑损伤(traumatic brain injury,TBI)是一种威胁人类生命安全的常见损伤。由于其损伤机制复杂,目前外科手术是临床首选治疗手段,但针对手术后继发性TBI的预防与治疗尚没有有效治疗药物。研究TBI损伤机制、寻找有效治疗药物以减轻患者痛苦、提高生活质量,成为目前的研究热点。本综述概括了近几年有关TBI治疗的最新进展,包括TBI损伤机制、TBI动物模型建立和评价指标、治疗药物及其新型递送系统,其中新型药物递送系统概括了聚合物纳米粒、水凝胶、树枝状聚合物、脂质体、胶束和细胞外囊泡作为新型药物载体在TBI治疗中的应用,希望为安全、有效地治疗TBI提供新思路。 展开更多
关键词 创伤性脑损伤 损伤机制 药物递送系统 动物模型
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基于多模态影像学的轻度创伤性脑损伤脑功能评估的研究进展
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作者 倪立桐 齐琦 +14 位作者 马珩钞 曹征涛 张玉艳 牛田力 官志强 胡坚兴 宁亚蕾 王卫东 马林 李小俚 雍政 罗勇军 李平 张军 李世俊 《解放军医学院学报》 CAS 2024年第7期805-810,F0003,共7页
轻度创伤性脑损伤(mild traumatic brain injury,mTBI)具有病理生理复杂、早期诊断难、伴有不同程度脑功能障碍等特点,需早期干预才能有效恢复如注意力不集中、记忆力减退等脑功能障碍。上述功能障碍与大脑默认网络、海马、基底节等脑... 轻度创伤性脑损伤(mild traumatic brain injury,mTBI)具有病理生理复杂、早期诊断难、伴有不同程度脑功能障碍等特点,需早期干预才能有效恢复如注意力不集中、记忆力减退等脑功能障碍。上述功能障碍与大脑默认网络、海马、基底节等脑区功能异常密切关联,而影像学可以准确量化评估这些脑功能区的改变。高场强磁共振成像技术的出现,使得影像学成为mTBI临床早期诊断与临床治疗评估的关键技术。基于mTBI动物模型及临床患者,本文从磁共振成像中反映工作记忆的动脉自旋回波、反映认知缺陷的弥散张量成像、反映淋巴转运异常的超高场强磁共振增强成像以及反映颅脑冲击伤损伤程度的正电子发射计算机断层扫描术与脑电图等方面作一综述,旨在为mTBI军事医学研究提供参考。 展开更多
关键词 多模态影像学 轻度创伤性脑损伤 磁共振成像 mTBI动物模型 脑功能成像
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骨窗封闭对中重型颅脑创伤小鼠模型的影响
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作者 赵明宇 杨晨 +3 位作者 刘宇恒 李景 于明圣 王增光 《中国现代神经疾病杂志》 CAS 北大核心 2024年第6期425-434,共10页
目的探讨骨窗封闭对中重型颅脑创伤小鼠模型的影响。方法采用控制性皮质撞击法分别构建中型和重型颅脑创伤小鼠模型,随机分为中型颅脑创伤骨窗封闭组(中型骨窗封闭组,50只)、中型颅脑创伤骨窗未封闭组(中型骨窗未封闭组,50只)、重型颅... 目的探讨骨窗封闭对中重型颅脑创伤小鼠模型的影响。方法采用控制性皮质撞击法分别构建中型和重型颅脑创伤小鼠模型,随机分为中型颅脑创伤骨窗封闭组(中型骨窗封闭组,50只)、中型颅脑创伤骨窗未封闭组(中型骨窗未封闭组,50只)、重型颅脑创伤骨窗封闭组(重型骨窗封闭组,50只)、重型颅脑创伤骨窗未封闭组(重型骨窗未封闭组,50只),监测颅内压,测定脑组织含水量和脑水肿体积,采用改良神经功能缺损评分(mNSS)评估神经功能缺损程度,Morris水迷宫实验评估空间学习能力和记忆力,Nissl染色评估大脑皮质和海马CA1区神经元损伤程度。结果颅内压监测,无论中型还是重型颅脑创伤模型小鼠骨窗封闭组与骨窗未封闭组颅内压差异均有统计学意义(P=0.007,0.000),模型制备后不同观察时间点颅内压差异亦有统计学意义(P=0.000,0.000),其中,中型骨窗封闭组模型制备后第1天颅内压高于中型骨窗未封闭组(P=0.009),重型骨窗封闭组第1天(P=0.000)和第3天(P=0.038)颅内压高于重型骨窗未封闭组;模型制备后第7天中型骨窗封闭组(P=0.000,0.000)和重型骨窗封闭组(P=0.000,0.008)颅内压均低于第1天和第3天,第3天亦低于第1天(P=0.000,0.000),仅第7天中型骨窗未封闭组颅内压低于第1天(P=0.031)。脑组织含水量测定显示,重型骨窗封闭组模型制备后第1天(P=0.028)、第3天(P=0.023)和第7天(P=0.023)脑组织含水量均低于重型骨窗未封闭组。脑水肿体积测定,无论中型还是重型颅脑创伤模型小鼠骨窗封闭组脑水肿体积均小于骨窗未封闭组(P=0.021,0.037)。神经功能缺损程度评估,无论中型还是重型颅脑创伤模型小鼠骨窗封闭组与骨窗未封闭组模型制备后不同观察时间点mNSS评分差异均具有统计学意义(P=0.000,0.001),其中,模型制备后第7天中型骨窗封闭组(P=0.002)、中型骨窗未封闭组(P=0.013)、重型骨窗封闭组(P=0.009)mNSS评分均低于第1天,重型骨窗封闭组(P=0.006)和重型骨窗未封闭组(P=0.002)mNSS评分低于第3天。Morris水迷宫实验,重型骨窗封闭组小鼠平台潜伏期长于(P=0.045)、目标象限停留时间短于(P=0.025)重型骨窗未封闭组。Nissl染色显示,对于中型颅脑创伤模型小鼠,骨窗封闭组大脑皮质神经元Nissl小体密度减少,染色变浅;海马CA1区神经元Nissl小体密度减少,染色变浅,形态模糊。对于重型颅脑创伤模型小鼠,骨窗封闭组大脑皮质神经元Nissl小体染色变浅,染色模糊,可见较多异染颗粒;海马CA1区神经元胞体水肿,Nissl小体染色模糊。结论中型颅脑创伤模型小鼠,骨窗封闭虽在急性期增高颅内压,但对脑水肿程度、神经功能和认知功能无明显影响;重型颅脑创伤模型小鼠,骨窗封闭可导致颅内压升高、空间学习能力和记忆力减退,但可减轻脑水肿程度,应根据研究目的选择是否进行骨窗封闭。 展开更多
关键词 脑损伤 创伤性 减压颅骨切除术 颅内压 脑水肿 Morris水迷宫试验 虎斑小体 疾病模型 动物
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氯胺酮对缺血再灌注脑损伤小鼠海马Bcl-2、Bax的影响 被引量:7
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作者 肖峰 王清秀 +2 位作者 周青山 周龙 熊良志 《陕西医学杂志》 CAS 2009年第5期518-521,共4页
目的:研究氯胺酮对缺血再灌注脑损伤小鼠海马Bcl-2、Bax蛋白及大脑梗死体积的影响。方法:昆明纯种小白鼠共30只,随机分为4组,S组(n=7)为假手术组,C组(n=8)为缺血再灌注损伤对照组,I组(n=8)为线栓缺血梗死后氯胺酮治疗组,R组(n=7)为线栓... 目的:研究氯胺酮对缺血再灌注脑损伤小鼠海马Bcl-2、Bax蛋白及大脑梗死体积的影响。方法:昆明纯种小白鼠共30只,随机分为4组,S组(n=7)为假手术组,C组(n=8)为缺血再灌注损伤对照组,I组(n=8)为线栓缺血梗死后氯胺酮治疗组,R组(n=7)为线栓缺血梗死再灌注后氯胺酮治疗组。结果:C组海马Bax蛋白表达明显高于其他3组(P<0.05),C组海马Bcl-2蛋白表达低于I组和R组(P<0.05)。C组脑梗死体积明显高于I组和R(P<0.05)组。C组、I组、R组的神经功能缺失体征评分无显著性差异(P>0.05)。结论:氯胺酮可降低缺血再灌注脑损伤小鼠海马凋亡基因Bax的蛋白表达和大脑梗死体积,提高抑制凋亡基因Bcl-2的蛋白表达。 展开更多
关键词 脑缺血/并发症 再灌注损伤/药物疗法 氯胺酮/治疗应用 基因 bcl-2/代谢 基因/代谢 细胞凋亡 模型 动物 小鼠
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Nanometer ultrastructural brain damage following low intensity primary blast wave exposure
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作者 Hailong Song Landry M. Konan +4 位作者 Jiankun Cui Catherine E. Johnson Graham K. Hubler Ralph G. DePalma Zezong Gu 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第9期1516-1519,共4页
Blast-induced mild traumatic brain injury(m TBI) is of particular concern among military personnel due to exposure to blast energy during military training and combat.The impact of primary low-intensity blast mediat... Blast-induced mild traumatic brain injury(m TBI) is of particular concern among military personnel due to exposure to blast energy during military training and combat.The impact of primary low-intensity blast mediated pathophysiology upon later neurobehavioral disorders has been controversial.Developing a military preclinical blast model to simulate the pathophysiology of human blast injury is an important first step.This article provides an overview of primary blast effects and perspectives of our recent studies demonstrating ultrastructural changes in the brain and behavioral disorders resulting from open-field blast exposures up to 46.6 k Pa using a murine model.The model is scalable and permits exposure to varying magnitudes of primary blast injuries by placing animals at different distances from the blast center or by changing the amount of C4 charge.We here review the implications and future applications and directions of using this animal model to uncover the underlying mechanisms related to primary blast injury.Overall,these studies offer the prospect of enhanced understanding of the pathogenesis of primary low-intensity blast-induced TBI and insights for prevention,diagnosis and treatment of blast induced TBI,particularly m TBI/concussion related to current combat exposures. 展开更多
关键词 mild traumatic brain injury openfield blast primary blast wave blast physics animal model altrastructural abnormalities behavior
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Hydrogen sulfide intervention in focal cerebral ischemia/reperfusion injury in rats 被引量:6
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作者 Xin-juan Li Chao-kun Li +4 位作者 Lin-yu Wei Na Lu Guo-hong Wang Hong-gang Zhao Dong-liang Li 《Neural Regeneration Research》 SCIE CAS CSCD 2015年第6期932-937,共6页
The present study aimed to explore the mechanism underlying the protective effects of hydrogen sulfide against neuronal damage caused by cerebral ischemia/reperfusion. We established the middle cerebral artery occlusi... The present study aimed to explore the mechanism underlying the protective effects of hydrogen sulfide against neuronal damage caused by cerebral ischemia/reperfusion. We established the middle cerebral artery occlusion model in rats via the suture method. Ten minutes after middle cerebral artery occlusion, the animals were intraperitoneally injected with hydrogen sulfide donor compound sodium hydrosulfide. Immunofluorescence revealed that the immunoreactivity of P2X7 in the cerebral cortex and hippocampal CA1 region in rats with cerebral ischemia/reperfusion injury decreased with hydrogen sulfide treatment. Furthermore, treatment of these rats with hydrogen sulfide significantly lowered mortality, the Longa neurological deficit scores, and infarct volume. These results indicate that hydrogen sulfide may be protective in rats with local cerebral ischemia/reperfusion injury by down-regulating the expression of P2X7 receptors. 展开更多
关键词 nerve regeneration brain injury hydrogen sulfide cerebral ischemia/reperfusion injury P2X7 receptor 2 3 5-triphenyl-2H-tetrazolium chloride staining animal model protection sodiumhydrosulfide immunofiuorescence middle cerebral artery occlusion NSFC grant neural regeneration
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m^(6)A RNA甲基化修饰在颅脑损伤模型大鼠坏死性凋亡中的作用 被引量:2
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作者 林树楷 刘仲海 +2 位作者 刘珍 蔡金城 魏入廷 《中国组织工程研究》 CAS 北大核心 2023年第20期3167-3172,共6页
背景:哺乳动物中枢神经系统损伤依赖N6-甲基腺苷(m^(6)A)的调节,并与坏死性凋亡密切相关。目前在大鼠创伤性颅脑损伤中,m^(6)A RNA甲基化修饰与创伤性颅脑损伤坏死性凋亡的关系尚未被研究。目的:探讨m^(6)A RNA甲基化修饰与创伤性颅脑... 背景:哺乳动物中枢神经系统损伤依赖N6-甲基腺苷(m^(6)A)的调节,并与坏死性凋亡密切相关。目前在大鼠创伤性颅脑损伤中,m^(6)A RNA甲基化修饰与创伤性颅脑损伤坏死性凋亡的关系尚未被研究。目的:探讨m^(6)A RNA甲基化修饰与创伤性颅脑损伤大鼠坏死性凋亡的关系,为颅脑损伤坏死性凋亡的发生发展及预后的分子机制提供实验依据。方法:选取SPF级SD雄性大鼠30只,随机分为假手术组、创伤性颅脑损伤组和NSC118218(STAT1抑制剂)组,各10只。后2组通过改良Feeney法建立颅脑损伤模型,假手术组仅暴露脑硬膜,不进行颅脑打击。颅脑损伤6 h后检测各组大鼠大脑皮质炎症因子肿瘤坏死因子ɑ、白细胞介素6、白细胞介素1β、白细胞介素10和高迁移率族蛋白B1表达水平以及脑含水量,检测YTH结构域家族蛋白2、总m^(6)A RNA甲基化修饰水平、STAT1和JAK1的表达水平。结果与结论:①创伤性颅脑损伤组和NSC118218组炎症因子水平和脑含水量明显高于假手术组,m^(6)A RNA甲基化修饰比例和YTHDF2表达水平明显低于假手术组,JAK1和STAT1的表达水平明显高于假手术组(P<0.05);②与创伤性颅脑损伤组相比,NSC118218组炎症因子水平和脑含水量明显降低,m^(6)A RNA甲基化修饰比例和YTH结构域家族蛋白2表达水平明显升高,JAK1和STAT1的mRNA及蛋白表达水平明显降低(P<0.05);③提示颅脑损伤后m^(6)A RNA甲基化修饰比例降低,YTH结构域家族蛋白2表达水平下降,激活JAK/STAT信号通路,增加JAK1和STAT1的表达,促进细胞坏死性凋亡。 展开更多
关键词 创伤性颅脑损伤 m^(6)A RNA甲基化 坏死性凋亡 JAK/STAT 动物模型
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创伤性颅脑损伤动物模型研究概况 被引量:1
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作者 鲁菁 屈媛媛 +6 位作者 邵玉莹 郭述豪 冯楚文 孙维伯 李彬彬 孙冬玮 杨添淞 《神经损伤与功能重建》 2023年第9期534-538,542,共6页
创伤性颅脑损伤(TBI)是世界上青年人致残、致死的主要原因,动物模型作为TBI损伤机制的研究载体,对研究TBI发生发展和具体损伤机制具有重要作用。由于TBI病理机制复杂,目前关于TBI动物模型的建造方案较多,大多从损伤病因及损伤性质进行区... 创伤性颅脑损伤(TBI)是世界上青年人致残、致死的主要原因,动物模型作为TBI损伤机制的研究载体,对研究TBI发生发展和具体损伤机制具有重要作用。由于TBI病理机制复杂,目前关于TBI动物模型的建造方案较多,大多从损伤病因及损伤性质进行区别,但尚无统一的TBI模型制备标准,且仍处于不断开发、补充和完善中。本文总结了国内外TBI模型常用的实验动物,并根据局灶性损伤、弥漫性损伤和混合性损伤三种TBI不同损伤性质对常见TBI的造模方法进行综述,以期为TBI的基础研究和临床治疗提供思路和帮助。 展开更多
关键词 创伤性颅脑损伤 动物模型 综述
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大鼠自由落体创伤性脑损伤动物模型的建立
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作者 杨家发 朱义通 +4 位作者 陆兆丰 王亚琼 陆若玉 李海荣 刘梦佳 《河南外科学杂志》 2023年第5期5-9,共5页
目的将实验与临床相结合,探索建立稳定可靠、简便易行、可重复性的创伤性脑损伤动物模型,为临床研究奠定基础。方法40只雄性Sprague Dawley大鼠,分为假手术组与轻、中、重度组(A、B、C组)各10只。参照Feeney损伤模型,轻、中、重度组分... 目的将实验与临床相结合,探索建立稳定可靠、简便易行、可重复性的创伤性脑损伤动物模型,为临床研究奠定基础。方法40只雄性Sprague Dawley大鼠,分为假手术组与轻、中、重度组(A、B、C组)各10只。参照Feeney损伤模型,轻、中、重度组分别按打击高度(50、75、100 cm)使重量为4.5 g的钢棒自由下落打击大鼠硬脑膜建立动物模型,观察各组大鼠伤后神经行为学、脑组织形态学、病理学、免疫学改变。结果损伤后改良的神经损伤评分(modified neurological severity score,mNSS)随打击高度增加而升高(P<0.05),均高于假手术组,差异均具有统计学意义(P<0.05)。HE染色结果提示与假手术组比较,随着打击高度的增加,光镜下可见神经基质紊乱、神经元肿胀、细胞周围间隙和血管间隙红细胞渗出,神经元细胞及胶质肿胀变性,细胞核肿大变形。免疫组织化学染色结果提示,与假手术组比较,轻、中、重度组大脑皮质β-APP、GFAP阳性表达程度增强。3组大鼠损伤后改良的神经损伤评分(mNSS)随打击高度增加而升高,均高于假手术组。差异均有统计学意义(P<0.05)。HE染色结果提示,与假手术组比较,随着打击高度的增加,光镜下可见神经基质紊乱、神经元肿胀、细胞周围间隙和血管间隙红细胞渗出,神经元细胞及胶质肿胀变性,细胞核肿大变形。免疫组织化学染色结果提示,与假手术组比较,A、B、C组大脑皮质β-APP、GFAP阳性表达程度增强。结论自由落体打击大鼠硬脑膜,可成功建立创伤性颅脑损伤动物模型,其病理学特征明显,重复性和稳定性好。 展开更多
关键词 动物模型 创伤性脑损伤 大鼠
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创伤性脑损伤动物模型及其实验治疗学应用 被引量:8
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作者 顾兵 金建波 +2 位作者 孟玮 李玉萍 余日跃 《中国药理学通报》 CAS CSCD 北大核心 2010年第3期285-289,共5页
创伤性脑损伤(traumatic brain injury,TBI),亦称颅脑损伤或头部外伤,专指由外伤引起的脑组织损害。TBI发生机制以及神经损伤后的修复治疗是当前脑研究的热点问题。动物模型的复制对开展TBI的实验治疗学研究起了巨大的推动作用。该文就... 创伤性脑损伤(traumatic brain injury,TBI),亦称颅脑损伤或头部外伤,专指由外伤引起的脑组织损害。TBI发生机制以及神经损伤后的修复治疗是当前脑研究的热点问题。动物模型的复制对开展TBI的实验治疗学研究起了巨大的推动作用。该文就国内外已经建立的撞击脑损伤、非撞击加速脑损伤和爆炸冲击波致脑外伤三类动物模型的进展作系统综述,同时列举这些模型在实验治疗学上的应用,为神经保护药物的药效学筛选提供科学指导。 展开更多
关键词 创伤性脑损伤 动物模型 撞击脑损伤模型 非撞击加速脑损伤模型 爆炸冲击波致脑外伤模型 实验治疗学
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创伤性脑损伤大鼠动物模型及其评价体系的建立 被引量:10
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作者 宋扬 韩一生 +4 位作者 毕龙 王树森 张振宇 侯巍 黄兆松 《中华神经外科疾病研究杂志》 CAS 2009年第6期521-524,共4页
目的建立一种创伤性脑损伤动物模型及相关评价体系。方法应用自行设计制造的自由落体撞击装置建立大鼠创伤性脑损伤模型,观察大鼠脑损伤后生命体征和病理学改变,并通过自行设计的神经功能量表进行功能评分。结果撞击后,动物均出现明显... 目的建立一种创伤性脑损伤动物模型及相关评价体系。方法应用自行设计制造的自由落体撞击装置建立大鼠创伤性脑损伤模型,观察大鼠脑损伤后生命体征和病理学改变,并通过自行设计的神经功能量表进行功能评分。结果撞击后,动物均出现明显的生命体征改变,包括伤后血压立即骤降后恢复平稳、呼吸暂停与呼吸变深快等。伤后6 h,出现明显的脑损伤病理学改变。伤后12h,神经功能量表分析显示大脑皮质、脑干和小脑功能受到明显影响。结论本体系可用于建立和量化评价大鼠创伤性脑损伤情况,并可用于建立和评价其他中小型动物模型。 展开更多
关键词 创伤性脑损伤 动物模型 评价 装置
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大鼠自由落体脑外伤模型的制作 被引量:18
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作者 高燕 孙骏谟 +1 位作者 田志雄 吴光耀 《浙江创伤外科》 2004年第5期283-285,共3页
目的改进Feeney‘s自由落体模型装置并制作大鼠脑外伤模型,探讨该模型的病理学特点及对临床实验的价值。方法采用电磁铁释控开关自由落体模型,以不同冲击力(200g×cm、600g×cm、1000g×cm)致大鼠轻、中、重度脑损伤,并进... 目的改进Feeney‘s自由落体模型装置并制作大鼠脑外伤模型,探讨该模型的病理学特点及对临床实验的价值。方法采用电磁铁释控开关自由落体模型,以不同冲击力(200g×cm、600g×cm、1000g×cm)致大鼠轻、中、重度脑损伤,并进行一系列病理学观察。结果病理学证实脑组织出现不同程度的改变,与致力伤大小成正比。结论本模型对脑外伤实验和临床研究有实用价值。 展开更多
关键词 大鼠 脑外伤 模型制作 动物模型 损伤程度 病理学观察
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