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Updated: Jun 13, 2026

Body Composition and Metabolic Caging Analysis in High Fat Fed Mice
Published on: May 24, 2018
Repetitive orogastric gavage affects the phenotype of diet-induced obese mice
Vincent E de Meijer1, Hau D Le, Jonathan A Meisel
1Department of Surgery, Vascular Biology Program, Children's Hospital Boston and Harvard Medical School, MA, USA. v.demeijer@erasmusmc.nl
Abstract:
Interest in pharmacological intervention to combat metabolic syndrome and its complications is increasing as the prevalence of obesity is reaching epidemic proportions. The potential efficacy of drugs is often tested in animal models; however, the method of drug delivery is frequently overlooked and may act as a confounder due to stress. We hypothesized that long-term orogastric gavage would negatively influence the development of hepatic steatosis and the metabolic syndrome in a murine model of diet-induced obesity. C57BL/6J male mice were fed a high fat diet and were gavaged with a vehicle once or twice daily for 9 weeks. A group without orogastric gavaging served as control. A similar experiment was performed using leptin deficient ob/ob mice that were fed a standard diet for 4 weeks. Food intake was monitored, insulin resistance determined, and steatosis was assessed by histology and quantified via magnetic resonance spectroscopy. After 9 weeks, control C57BL/6J mice exhibited significantly more weight gain, insulin resistance and hepatic steatosis, compared to mice that were gavaged daily, or twice daily. This effect was likely due to decreased food consumption associated with gavage-induced stress. In contrast, the phenotype of leptin deficient ob/ob mice was not affected by orogastric gavage. Therefore, we concluded that orogastric gavage may lead to increased stress, thereby affecting food intake and the development of diet-induced obesity in a murine model. The effects of what may seem to be trivial laboratory routines, such as orogastric gavage, should be taken into account when designing animal studies for drug development.
Insights
Orogastric gavage in mice can induce stress, reduce food intake, and alter metabolic syndrome development. Researchers should consider this stress effect in animal study designs.
Area of Science:
- Metabolic Syndrome Research
- Animal Models in Pharmacology
Background:
- Obesity and metabolic syndrome prevalence is rising globally.
- Pharmacological interventions are key, often tested in animal models.
- Drug delivery methods, like orogastric gavage, can introduce confounding stress.
Purpose of the Study:
- To investigate the impact of long-term orogastric gavage on diet-induced obesity and metabolic syndrome in mice.
- To determine if gavage-induced stress confounds results in metabolic research.
Main Methods:
- C57BL/6J mice on high-fat diet underwent daily or twice-daily orogastric gavage for 9 weeks.
- Leptin-deficient ob/ob mice on standard diet were also gavaged.
- Assessed weight gain, insulin resistance, food intake, and hepatic steatosis.
Main Results:
- Control C57BL/6J mice showed more weight gain, insulin resistance, and hepatic steatosis than gavaged mice.
- Gavage likely reduced food intake due to stress, impacting obesity development.
- Orogastric gavage did not affect the phenotype of leptin-deficient ob/ob mice.
Conclusions:
- Orogastric gavage can induce stress, affecting food intake and diet-induced obesity in murine models.
- Laboratory routines like gavage must be considered in animal study design for accurate drug development.
- Stress from gavage is a significant confounder in diet-induced metabolic syndrome research.

