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Relevance of Porcine Stroke Models to Bridge the Gap from Pre-Clinical Findings to Clinical Implementation

机译:猪中风模型与临床前调查结果弥补临床实施的差距

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摘要

In the search of animal stroke models providing translational advantages for biomedical research, pigs are large mammals with interesting brain characteristics and wide social acceptance. Compared to rodents, pigs have human-like highly gyrencephalic brains. In addition, increasingly through phylogeny, animals have more sophisticated white matter connectivity; thus, ratios of white-to-gray matter in humans and pigs are higher than in rodents. Swine models provide the opportunity to study the effect of stroke with emphasis on white matter damage and neuroanatomical changes in connectivity, and their pathophysiological correlate. In addition, the subarachnoid space surrounding the swine brain resembles that of humans. This allows the accumulation of blood and clots in subarachnoid hemorrhage models mimicking the clinical condition. The clot accumulation has been reported to mediate pathological mechanisms known to contribute to infarct progression and final damage in stroke patients. Importantly, swine allows trustworthy tracking of brain damage evolution using the same non-invasive multimodal imaging sequences used in the clinical practice. Moreover, several models of comorbidities and pathologies usually found in stroke patients have recently been established in swine. We review here ischemic and hemorrhagic stroke models reported so far in pigs. The advantages and limitations of each model are also discussed.
机译:在寻找提供生物医学研究的平移优势的动物行程模型中,猪是大型大脑特征和广泛的社会验收的大型哺乳动物。与啮齿动物相比,猪具有人类的高度翘曲脑。另外,通过系统发育越来越多,动物具有更复杂的白质连接;因此,人类和猪中白灰质物质的比率高于啮齿动物。猪模型提供了研究中风效果的机会,重点是性能损伤和连续性的神经杀菌变化以及它们的病理生理学相关性。此外,猪大脑周围的蛛网膜下腔空间类似于人类。这允许在临床状况模仿蛛网膜下腔出血模型中积累血液和凝块。据报道,凝块积累促使已知有助于梗死患者的梗死进展和最终损害的病理机制。重要的是,猪允许使用临床实践中使用的相同的非侵入式多模式成像序列来追踪脑损伤演化。此外,最近在猪中建立了几种通常在中风患者中发现的型合并症和病理学模型。我们审查了缺血和出血性脑卒中模型到目前为止的猪。还讨论了每个模型的优点和局限。

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