Diet-induced obesity in animal models: points to consider and influence on metabolic markers
Ожирение, вызванное диетой, в животных моделях: ключевые положения и влияние на метаболические маркеры
2021-03-18
SCID: 54.1/aes7yugz
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C57BL/6 miceSprague-Dawley ratsWistar ratsdiet-induced obesitymetabolic markers
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Abstract (AI)
Overweight and obesity are a worldwide public health problem. Obesity prevalence has increased considerably, which indicates the need for more studies to better understand these diseases and related complications. Diet induced-obesity (DIO) animal models can reproduce human overweight and obesity, and there are many protocols used to lead to excess fat deposition. So, the purpose of this review was to identify the key points for the induction of obesity through diet, as well as identifying which are the necessary endpoints to be achieved when inducing fat gain. For this, we reviewed the literature in the last 6 years, looking for original articles that aimed to induce obesity through the diet. All articles evaluated should have a control group, in order to verify the results found, and had worked with Sprague-Dawley and Wistar rats, or with C57BL-/-6 mice strain. Articles that induced obesity by other methods, such as genetic manipulation, surgery, or drugs were excluded, since our main objective was to identify key points for the induction of obesity through diet. Articles in humans, in cell culture, in non-rodent animals, as well as review articles, articles that did not have obesity induction and book chapters were also excluded. Body weight and fat gain, as well as determinants related to inflammation, hormonal concentration, blood glycemia, lipid profile, and liver health, must be evaluated together to better determination of the development of obesity. In addition, to select the best model in each circumstance, it should be considered that each breed and sex respond differently to diet-induced obesity. The composition of the diet and calorie overconsumption are also relevant to the development of obesity. Finally, it is important that a non-obese control group is included in the experimental design.
Key Findings
1
A non-obese control group is essential in experimental design to verify obesity induction results.
2
Diet composition and caloric overconsumption are critical factors driving the development of obesity in DIO models.
3
Diet-induced obesity (DIO) rodent models (Sprague-Dawley, Wistar rats; C57BL/6 mice) can reproduce human overweight and obesity for experimental study.
4
Different strains and sexes respond differently to diet-induced obesity, so breed and sex must be considered when selecting models.
5
Key endpoints for validating diet-induced obesity include body weight and fat gain, inflammation markers, hormonal concentrations, blood glycemia, lipid profile, and liver health.
Research Object
Diet-induced obesity (DIO) animal models (Sprague-Dawley and Wistar rats, and C57BL/6 mice) used to reproduce overweight and obesity
Research Subject
Key considerations for inducing obesity via diet and the metabolic endpoints to monitor (body weight and fat gain, inflammation markers, hormonal concentrations, blood glycemia, lipid profile, and liver health), including effects of diet composition, calorie overconsumption, strain and sex differences, and inclusion of non-obese controls
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2021-03-18
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