Comparison of Large Animal Models for Acute Ischemic Stroke: Which Model to Use?

医学 冲程(发动机) 缺血 重症监护医学 缺血性中风 转化研究 脑缺血 组织纤溶酶原激活剂 临床试验 动物模型 神经科学
作者
Aladdin Taha,Joaquim Bobi,Ruben Dammers,Rick M. Dijkhuizen,Antje Y Dreyer,Adriaan C.G.M. van Es,Fabienne Ferrara,Matthew J. Gounis,Björn Nitzsche,Simon Platt,Michael Hubert Stoffel,Victor Volovici,Gregory J Del Zoppo,Dirk J. Duncker,Diederik W.J. Dippel,Johannes Boltze,Heleen M.M. van Beusekom
出处
期刊:Stroke [Lippincott Williams & Wilkins]
被引量:1
标识
DOI:10.1161/strokeaha.121.036050
摘要

Translation of acute ischemic stroke research to the clinical setting remains limited over the last few decades with only one drug, recombinant tissue-type plasminogen activator, successfully completing the path from experimental study to clinical practice. To improve the selection of experimental treatments before testing in clinical studies, the use of large gyrencephalic animal models of acute ischemic stroke has been recommended. Currently, these models include, among others, dogs, swine, sheep, and nonhuman primates that closely emulate aspects of the human setting of brain ischemia and reperfusion. Species-specific characteristics, such as the cerebrovascular architecture or pathophysiology of thrombotic/ischemic processes, significantly influence the suitability of a model to address specific research questions. In this article, we review key characteristics of the main large animal models used in translational studies of acute ischemic stroke, regarding (1) anatomy and physiology of the cerebral vasculature, including brain morphology, coagulation characteristics, and immune function; (2) ischemic stroke modeling, including vessel occlusion approaches, reproducibility of infarct size, procedural complications, and functional outcome assessment; and (3) implementation aspects, including ethics, logistics, and costs. This review specifically aims to facilitate the selection of the appropriate large animal model for studies on acute ischemic stroke, based on specific research questions and large animal model characteristics.

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