Tseng Horng-Ta, Lin Yi-Wen, Huang Chun-Yao, Shih Chun-Ming, Tsai Yi-Ting, Liu Chen-Wei, Tsai Chien-Sung, Lin Feng-Yen
Taipei Heart Institute, Taipei Medical University, Taipei 11031, Taiwan.
Division of Cardiology and Cardiovascular Research Center, Taipei Medical University Hospital, Taipei 11031, Taiwan.
Biomedicines. 2023 May 10;11(5):1414. doi: 10.3390/biomedicines11051414.
Cardiac transplant recipients face many complications due to transplant rejection. Scientists must conduct animal experiments to study disease onset mechanisms and develop countermeasures. Therefore, many animal models have been developed for research topics including immunopathology of graft rejection, immunosuppressive therapies, anastomotic techniques, and graft preservation techniques. Small experimental animals include rodents, rabbits, and guinea pigs. They have a high metabolic rate, high reproductive rate, small size for easy handling, and low cost. Additionally, they have genetically modified strains for pathological mechanisms research; however, there is a lacuna, as these research results rarely translate directly to clinical applications. Large animals, including canines, pigs, and non-human primates, have anatomical structures and physiological states that are similar to those of humans; therefore, they are often used to validate the results obtained from small animal studies and directly speculate on the feasibility of applying these results in clinical practice. Before 2023, PubMed Central at the United States National Institute of Health's National Library of Medicine was used for literature searches on the animal models for heart transplantation focusing on the pathological conditions. Unpublished reports and abstracts from conferences were excluded from this review article. We discussed the applications of small- and large-animal models in heart transplantation-related studies. This review article aimed to provide researchers with a complete understanding of animal models for heart transplantation by focusing on the pathological conditions created by each model.
心脏移植受者由于移植排斥反应面临许多并发症。科学家必须进行动物实验来研究疾病发病机制并制定应对措施。因此,针对包括移植排斥反应的免疫病理学、免疫抑制疗法、吻合技术和移植物保存技术等研究课题,已经开发了许多动物模型。小型实验动物包括啮齿动物、兔子和豚鼠。它们代谢率高、繁殖率高、体型小便于操作且成本低。此外,它们还有用于病理机制研究的基因改造品系;然而,存在一个空白,因为这些研究结果很少能直接转化为临床应用。大型动物,包括犬类、猪和非人灵长类动物,其解剖结构和生理状态与人类相似;因此,它们常被用于验证从小型动物研究中获得的结果,并直接推测这些结果在临床实践中应用的可行性。在2023年之前,使用美国国立卫生研究院国立医学图书馆的PubMed Central进行了关于心脏移植动物模型的文献检索,重点关注病理状况。未发表的报告和会议摘要被排除在这篇综述文章之外。我们讨论了小型和大型动物模型在心脏移植相关研究中的应用。这篇综述文章旨在通过关注每个模型所造成的病理状况,让研究人员全面了解心脏移植动物模型。