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Animal Models of Repaired Tetralogy of Fallot: Current Applications and Future Perspectives

机译:修复Tetralogy的动物模型:当前的应用和未来的观点

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Tetralogy of Fallot is the most common cyanotic congenital heart disease. Despite ongoing improvements in the initial surgical repair, there are lingering concerns regarding the long-term outcomes that may be complicated by right ventricular dysfunction, right ventricular dyssynchrony, and sudden cardiac death. The mechanisms leading to these late complications remain incompletely understood. Experimental animal models have been developed as preclinical steps to gain better insight into the pathophysiology of diseases and to develop new therapeutic strategies. This article summarizes the various types of experimental animal models of repaired tetralogy of Fallot published to date in the literature, with the aim of achieving a greater understanding of the deleterious mechanisms that may lead to these known late and sometimes lethal complications. In addition to analysing the type of animals that can be used according to a given study's objectives, needs, and constraints, the present review also evaluates the type of dysfunction that can be reproduced in our model according to the research objectives, as well as the different types of studies in which these models can be used. In view of all that, we propose a decision algorithm to create an animal model of repaired tetralogy of Fallot. This synthesis should furthermore help in the development of future studies and in the design of new experimental models, thus allowing greater insight into this disease, while not forgetting the ultimate goal of broadening future therapeutic measures to reduce the morbidity and mortality of this prevalent congenital heart disease.
机译:Tetralogy的椎间型是最常见的氰化先天性心脏病。尽管在初始手术修复方面进行了持续改进,但有关右心室功能障碍,右心室脱泻术和突然心脏死亡可能复杂的长期结果存在令人担忧。导致这些晚期并发症的机制仍然不完全理解。实验动物模型被开发为临床前步骤,以便更好地了解疾病的病理生理学和发展新的治疗策略。本文总结了各种类型的实验动物模型在文献中发布了迄今为止发布的Tetralogy的各种类型的实验动物模型,目的是实现对可能导致这些已知的有害机制的更大了解,这些机制可能导致这些已知的晚期和有时致命并发症。除了分析可根据给定的研究的目标,需求和约束的可用的动物类型之外,本综述还评估了可以根据研究目标在模型中再现的功能障碍类型,以及可以使用不同类型的研究,其中可以使用这些模型。鉴于所有这些,我们提出了一种决策算法,以创建修复的Tetralogy的动物模型。这种合成还应有助于开发未来的研究和新的实验模型的设计,从而允许对这种疾病的更大洞察力,同时不会忘记扩大未来治疗措施的最终目标,以降低这种普遍的先天性心脏的发病率和死亡率疾病。

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