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Animal Models of Cardiovascular Diseases

BioMed Research International · 2011 · Vol. 2011(1) · pp. 497841–497841
Carlos ZaragozaCarmen Gómez‐GuerreroJosé Luis Martín‐VenturaLuis Miguel Blanco‐ColioBegoña LavínBeñat MallaviaCarlos TarínSebastián MasAlberto OrtízJesús Egido

Abstract

Cardiovascular diseases are the first leading cause of death and morbidity in developed countries. The use of animal models have contributed to increase our knowledge, providing new approaches focused to improve the diagnostic and the treatment of these pathologies. Several models have been developed to address cardiovascular complications, including atherothrombotic and cardiac diseases, and the same pathology have been successfully recreated in different species, including small and big animal models of disease. However, genetic and environmental factors play a significant role in cardiovascular pathophysiology, making difficult to match a particular disease, with a single experimental model. Therefore, no exclusive method perfectly recreates the human complication, and depending on the model, additional considerations of cost, infrastructure, and the requirement for specialized personnel, should also have in mind. Considering all these facts, and depending on the budgets available, models should be selected that best reproduce the disease being investigated. Here we will describe models of atherothrombotic diseases, including expanding and occlusive animal models, as well as models of heart failure. Given the wide range of models available, today it is possible to devise the best strategy, which may help us to find more efficient and reliable solutions against human cardiovascular diseases.

Cardiomyopathy and Myosin StudiesCalpain Protease Function and RegulationBlood Coagulation and Thrombosis MechanismsDiseaseAnimal modelIntensive care medicineRisk analysis (engineering)Human diseaseMedicineComputer sciencePathologyInternal medicine

MeSH terms

AnimalsAortic AneurysmApolipoproteins EDisease Models, AnimalDogsHeart FailureHumansRabbitsReceptors, LDLSwineThrombosisAtherosclerosisMiceRats

Funding

  • Ministerio de Ciencia y Tecnología
Citations
397
FWCI
15.23
field-weighted impact
References
131
Percentile
99%
vs. same field & year
Citations per year
References
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Myocardial ischemia and reperfusion: a murine model
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