Considerations When Choosing High-Fat, High-Fructose, and High-Cholesterol Diets to Induce Experimental Nonalcoholic Fatty Liver Disease in Laboratory Animal Models
Соображения при выборе высокожировых, высокофруктозных и высокохолестериновых диет для индукции экспериментальной неалкогольной жировой болезни печени в лабораторных животных
2021-11-08
SCID: 54.1/pqtwdkyq
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C57BL/6 micehigh-cholesterol diethigh-fat diethigh-fructose dietnonalcoholic fatty liver disease
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Abstract (AI)
fats), high-fructose (HFr), and high-cholesterol (HC) diets display many clinically relevant characteristics of NASH, along with other metabolic disorders. C57BL/6 mice are the most commonly used animal model because they can develop significant metabolic disorders including severe NASH with fibrosis after months of feeding, but other models also are susceptible. The significant number of diets that contain these different factors (i.e., HF, HFr, and HC), either alone or in combination, makes the choice of diet difficult. This methodology review describes the efficacy of these nutrient manipulations on the NAFLD phenotype in mice, rats, guinea pigs, hamsters, and nonhuman primates.
Key Findings
1
C57BL/6 mice are the most commonly used model and can develop significant metabolic disorders, including severe NASH with fibrosis, after months of HF/HFr/HC feeding.
2
High-fat (HF), high-fructose (HFr), and high-cholesterol (HC) diets reproduce many clinically relevant characteristics of NASH and associated metabolic disorders in laboratory animals.
3
Multiple animal species (mice, rats, guinea pigs, hamsters, nonhuman primates) show susceptibility to diet-induced NAFLD, though efficacy varies by species.
4
The large variety of diets combining HF, HFr, and HC (alone or combined) complicates selection of an appropriate experimental diet for modeling NAFLD/NASH.
5
This review summarizes and compares the efficacy of HF, HFr, and HC nutrient manipulations on NAFLD phenotypes across common laboratory species.
Research Object
High-fat, high-fructose, and high-cholesterol diets used to induce experimental nonalcoholic fatty liver disease (NAFLD) in laboratory animal models
Research Subject
Efficacy and phenotypic effects of these nutrient manipulations (HF, HFr, HC alone or combined) in producing NAFLD/NASH and associated metabolic disorders across laboratory animal models (mice, rats, guinea pigs, hamsters, nonhuman primates)
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2021-11-08
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