Department of Anatomy, Cell Biology, and Physiology, Indiana University School of Medicine, Indianapolis, Indiana 46202-5120, USA; email:
Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana 46907, USA.
Annu Rev Biomed Eng. 2020 Jun 4;22:25-49. doi: 10.1146/annurev-bioeng-082919-053009. Epub 2020 Mar 2.
Swine disease models are essential for mimicry of human metabolic and vascular pathophysiology, thereby enabling high-fidelity translation to human medicine. The worldwide epidemic of obesity, metabolic disease, and diabetes has prompted the focus on these diseases in this review. We highlight the remarkable similarity between Ossabaw miniature swine and humans with metabolic syndrome and atherosclerosis. Although the evidence is strongest for swine models of coronary artery disease, findings are generally applicable to any vascular bed. We discuss the major strengths and weaknesses of swine models. The development of vascular imaging is an example of optimal vascular engineering in swine. Although challenges regarding infrastructure and training of engineers in the use of swine models exist, opportunities are ripe for gene editing, studies of molecular mechanisms, and use of swine in coronary artery imaging and testing of devices that can move quickly to human clinical studies.
猪疾病模型对于模拟人类代谢和血管病理生理学至关重要,从而能够实现对人类医学的高保真翻译。肥胖、代谢疾病和糖尿病在全球范围内的流行促使人们关注这些疾病。我们强调了代谢综合征和动脉粥样硬化患者的奥萨巴威小型猪与人类之间的显著相似性。虽然猪冠状动脉疾病模型的证据最为有力,但这些发现通常适用于任何血管床。我们讨论了猪模型的主要优缺点。血管成像的发展是猪血管工程的一个范例。尽管在猪模型中使用工程师的基础设施和培训方面存在挑战,但基因编辑、分子机制研究以及在冠状动脉成像和设备测试中使用猪的机会已经成熟,可以迅速推进到人类临床研究。