Key result
This review describes the progress of animal models of coronary heart disease following either spontaneous or diet-accelerated coronary lesions.
This review highlights the limitations of current animal models for coronary heart disease and discusses progress in developing models with spontaneous or diet-accelerated coronary lesions.
Animal models of coronary heart disease remain limited; this review leaves open the need for improved spontaneous or diet-accelerated lesion models.
Cardiovascular disease, predominantly coronary heart disease and stroke, leads to high morbidity and mortality not only in developed worlds but also in underdeveloped regions. The dominant pathologic foundation for cardiovascular disease is atherosclerosis and as to coronary heart disease, coronary atherosclerosis and resulting lumen stenosis, even total occlusions. In translational research, several animals, such as mice, rabbits and pigs, have been used as disease models of human atherosclerosis and related cardiovascular disorders. However, coronary lesions are either naturally rare or hard to be fast induced in these models, hence, coronary heart disease induction mostly relies on surgical or pharmaceutical interventions with no or limited primary coronary lesions, thus unrepresentative of human coronary heart disease progression and pathology. In this review, we will describe the progress of animal models of coronary heart disease following either spontaneous or diet-accelerated coronary lesions.
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Wei et al. (2016) conducted a review in Coronary heart disease. Animal models of coronary heart disease was evaluated. This review describes the progress of animal models of coronary heart disease following either spontaneous or diet-accelerated coronary lesions.
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