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首页> 外文期刊>Journal of neurotrauma >A Clinically Relevant Closed-Head Model of Single and Repeat Concussive Injury in the Adult Rat Using a Controlled Cortical Impact Device
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A Clinically Relevant Closed-Head Model of Single and Repeat Concussive Injury in the Adult Rat Using a Controlled Cortical Impact Device

机译:一种临床相关的闭头模型,使用受控皮质冲击装置在成人大鼠中对成年大鼠重复响声损伤

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Repeat concussions (RC) can result in significant long-term neurological consequences and increased risk for neurodegenerative disease compared with single concussion (SC). Mechanisms underlying this difference are poorly understood and best elucidated using an animal model. To the best of our knowledge, there is no closed-head model in the adult rat using a commercially available device. We developed a novel and clinically relevant closed-head injury (CHI) model of both SC and RC in the adult rat using a controlled cortical impact (CCI) device. Adult rats received either a single or repeat CHI (three injuries, 48 h apart), and acute deficits in sensorimotor and locomotor function (foot fau open field), memory (novel object), and anxiety (open field; corticosterone [CORT]) were measured. Assessment of cellular pathology was also conducted. Within the first week post-CHI, rats with SC or RC showed similar deficits in motor coordination, decreased locomotion, and higher resting CORT levels. Rats with an SC had memory deficits post-injury day (PID) 3 that recovered to sham levels by PID 7; however, rats with RC continued to show memory deficits. No obvious gross pathology was observed on the cortical surface or in coronal sections. Further examination showed thinning of the cortex and corpus callosum in RC animals compared with shams and increased axonal pathology in the corpus callosum of both SC and RC animals. Our data present a model of CHI that results in clinically relevant markers of concussion and an early differentiation between SC and RC.
机译:与单一脑震荡(SC)相比,重复脑震荡(RC)可导致显著的长期神经后果,并增加神经退行性疾病的风险。这种差异背后的机制尚不清楚,最好用动物模型来阐明。据我们所知,在使用商用设备的成年大鼠中不存在闭头模型。我们使用受控皮质撞击(CCI)装置在成年大鼠中建立了一种新型的、与临床相关的闭合性头部损伤(CHI)模型,包括SC和RC。成年大鼠接受一次或多次CHI(三次受伤,相隔48小时),并测量感觉运动和运动功能的急性缺陷(足部故障;旷场)、记忆(新物体)和焦虑(旷场;皮质酮[CORT])。还进行了细胞病理学评估。在CHI后的第一周内,患有SC或RC的大鼠在运动协调方面表现出类似的缺陷,运动减少,静息CORT水平升高。患有SC的大鼠在伤后第3天(PID)出现记忆缺陷,到PID第7天恢复到假水平;然而,患有RC的大鼠仍然表现出记忆障碍。皮质表面或冠状切片未见明显病理改变。进一步检查显示,与SHAM相比,RC动物的皮层和胼胝体变薄,SC和RC动物胼胝体的轴突病理学增加。我们的数据展示了一个CHI模型,该模型可以产生与临床相关的脑震荡标志物,并可早期区分SC和RC。

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