HDL biology
Review weighs CETP-expressing hamsters against mice and rats for translational relevance in atherosclerosis modeling (Int J Mol Sci 2025)
Original title: Rodent Models for Atherosclerosis
This review examines rodent model selection for atherosclerosis research, noting that mice and rats have an HDL-dominant lipoprotein profile while Syrian golden hamsters express CETP and show a higher LDL fraction, offering a model metabolically closer to humans, though divergent CETP activity across species complicates translational relevance. Comparing C57BL/6J mice, Sprague-Dawley and Wistar rats, and golden hamsters on Apoe-/- or Ldlr-/- backgrounds, the review notes that male C57BL/6 mice, with pronounced hypercholesterolemia and extended survival on high-fat diet, suit late-stage plaque stability studies, while rats develop atherosclerosis slowly with limited progression, and hamsters, despite human-like lipid metabolism, show substantial individual variability with lesions typically arresting at early fatty streaks. The authors conclude rats and hamsters are better suited to studies of early disease mechanisms and human-mimetic lipid metabolism.
Original abstract
Atherosclerosis, a leading cause of cardiovascular disease, is driven by a complex interplay of dyslipidemia, inflammation, and arterial plaque formation and progression. Animal models are indispensable to elucidate the pathogenesis and develop novel therapies. Rodent models are widely utilized due to their cost-effectiveness, reproducibility, and rapid disease progression. However, notable species differences exist in lipoprotein composition and lipid metabolism pathways. Mice and rats exhibit an HDL-dominant profile, whereas Syrian golden hamsters express cholesteryl ester transfer protein (CETP) and display a higher LDL fraction, but lower than that of humans, offering a model closer to human metabolically. Divergent CETP activity across species further complicates the translational relevance of the findings from these models for atherosclerosis and related metabolic disorders. This review systematically examines the key factors in rodent model selection and optimization, with consideration on the roles of sex and age. We focus on three commonly used and well-characterized rodent strains prone to atherosclerosis: C57BL/6J mice, Sprague-Dawley (SD) rats, Wistar rats, and golden hamsters. On Apoe-/- or Ldlr-/- backgrounds, male C57BL/6 mice, owing to their pronounced hypercholesterolemia and extended survival with high-fat diet, are preferentially used in late-stage plaque stability studies. In contrast, male SD or Wistar rats develop atherosclerosis slowly with limited lesion progression, while hamsters, despite their human-like lipid metabolism, exhibit substantial individual variability and lesions that typically arrest at early fatty streaks with poor reproducibility. Therefore, rats and hamsters are better suited for studies focusing on early disease mechanisms and human-mimetic lipid metabolism.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.