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Updated: Aug 31, 2025

Tachycardia-Induced Cardiomyopathy As a Chronic Heart Failure Model in Swine
Published on: February 17, 2018
Preclinical models of congestive heart failure, advantages, and limitations for application in clinical practice
Marta Saura1,2, Jose Luis Zamorano2,3, Carlos Zaragoza2,4
1Departamento de Biología de Sistemas, Facultad de Medicina (IRYCIS), Universidad de Alcalá, Madrid, Spain.
Insights
Developing accurate animal models for congestive heart failure (CHF) is crucial due to rising cases. This review examines various models, highlighting their limitations for clinical application.
Area of Science:
- Cardiology
- Comparative Medicine
- Translational Research
Background:
- Congestive heart failure (CHF) is a growing public health concern, particularly in aging populations.
- The complexity of CHF pathogenesis and methodological biases complicate the development of effective animal models.
- Current animal models, while showing promise, do not fully replicate human CHF.
Purpose of the Study:
- To review existing animal models of congestive heart failure.
- To discuss the advantages and limitations of different CHF animal models.
- To assess the clinical applicability of current models.
Main Methods:
- Review of existing literature on animal models for congestive heart failure.
- Analysis of surgical procedures and species used in CHF model development.
- Evaluation of model effectiveness, limitations, and reproducibility.
Main Results:
- Various animal models for CHF have been developed across different species.
- Large animal models show promise but present significant challenges in cost, handling, and reproducibility.
- No single model currently fully recapitulates human CHF complexity for clinical application.
Conclusions:
- Accurate animal models are essential for understanding and treating congestive heart failure.
- Significant challenges remain in developing and validating CHF models for clinical translation.
- Further research is needed to overcome limitations in current animal models for CHF.
Abstract:
Congestive heart failure (CHF) has increased over the years, in part because of recent progress in the management of chronic diseases, thus contributing to the maintenance of an increasingly aging population. CHF represents an unresolved health problem and therefore the establishment of animal models that recapitulates the complexity of CHF will become a critical element to be addressed, representing a serious challenge given the complexity of the pathogenesis of CHF itself, which is further compounded by methodological biases that depend on the animal species in use. Animal models of CHF have been developed in many different species, with different surgical procedures, all with promising results but, for the moment, unable to fully recapitulate the human disease. Large animal models often provide a more promising reality, with all the difficulties that their use entails, and which limit their performance to fewer laboratories, the costly of animal housing, animal handling, specialized facilities, skilled methodological training, and reproducibility as another important limiting factor when considering a valid animal model versus potentially better performing alternatives. In this review we will discuss the different animal models of CHF, their advantages and, above all, the limitations of each procedure with respect to effectiveness of results in terms of clinical application.
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