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在小鼠中进行中风模型构建:光血栓形成致皮质局灶性损伤。

Modeling Stroke in Mice: Focal Cortical Lesions by Photothrombosis.

机构信息

Institute for Stroke and Dementia Research, LMU Munich;

Institute for Stroke and Dementia Research, LMU Munich.

出版信息

J Vis Exp. 2021 May 6(171). doi: 10.3791/62536.

Abstract

Stroke is a leading cause of death and acquired adult disability in developed countries. Despite extensive investigation for novel therapeutic strategies, there remain limited therapeutic options for stroke patients. Therefore, more research is needed for pathophysiological pathways such as post-stroke inflammation, angiogenesis, neuronal plasticity, and regeneration. Given the inability of in vitro models to reproduce the complexity of the brain, experimental stroke models are essential for the analysis and subsequent evaluation of novel drug targets for these mechanisms. In addition, detailed standardized models for all procedures are urgently needed to overcome the so-called replication crisis. As an effort within the ImmunoStroke research consortium, a standardized photothrombotic mouse model using an intraperitoneal injection of Rose Bengal and the illumination of the intact skull with a 561 nm laser is described. This model allows the performance of stroke in mice with allocation to any cortical region of the brain without invasive surgery; thus, enabling the study of stroke in various areas of the brain. In this video, the surgical methods of stroke induction in the photothrombotic model along with histological analysis are demonstrated.

摘要

中风是发达国家死亡和成年获得性残疾的主要原因。尽管针对新的治疗策略进行了广泛的研究,但中风患者的治疗选择仍然有限。因此,需要对中风后的炎症、血管生成、神经元可塑性和再生等病理生理途径进行更多的研究。由于体外模型无法再现大脑的复杂性,因此实验性中风模型对于分析和随后评估这些机制的新型药物靶点至关重要。此外,还迫切需要针对所有程序的详细标准化模型,以克服所谓的复制危机。作为 ImmunoStroke 研究联盟的一项努力,本文描述了一种使用腹腔内注射 Rose Bengal 和用 561nm 激光照射完整颅骨的光血栓形成小鼠模型。该模型允许在不进行侵入性手术的情况下将中风分配到大脑的任何皮质区域,从而能够研究大脑的各个区域的中风。在本视频中,演示了光血栓形成模型中中风诱导的手术方法以及组织学分析。

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