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Measuring energy expenditure in Göttingen Minipigs using indirect calorimetry: validation and methodological
Simon K Bredum1,2, Julie Jacobsen3, Susanna Cirera4
1Integrated Physiology Research, Novo Nordisk A/S, Måløv, Denmark. simonbredum@gmail.com.
Background:
Obesity affects nearly a billion people globally and is associated with various health consequences. Current anti-obesity medications primarily target appetite, but drug candidates that modulate energy expenditure (EE) and substrate utilization based on respiratory exchange ratio (RER) are also essential to continuously improve the treatment modalities for people living with obesity. Selecting appropriate animal models and methods is crucial to improving translational value in preclinical research. While pig obesity models provide a relevant alternative to rodent models due to their similarities to humans, little is known about the assessment and translatability of EE in pigs. The aim of this study was to evaluate the translatability of minipigs for assessing the effect of EE-modulating drugs using indirect calorimetry and three positive control compounds that have known effects on EE and/or RER in humans. The study consisted of five sub-studies: Sub-study 1 assessed EE and RER based on sex (male/female) and diet (chow/high-fat diet) with and without correction for body composition; Sub-studies 2-4 evaluated changes in EE and RER after treatment with three positive control compounds: 2,4-dinitrophenol, DNP; a glucagon receptor agonist, GCG-RA; and a melanocortin receptor 4 agonist, MC4-RA; and sub-study 5 established three predictive equations for resting metabolic rate.
Results:
Sub-study 1 resulted in detectable differences in EE and RER based on diet/body sizes (P-value < 0.0001), while EE adjusted for body composition resulted in differences based on sex (P-value < 0.0001). Sub-studies 2-4 revealed that the three pharmacological interventions known to affect EE in humans, DNP, GCG-RA, and MC4-RA, showed similar effects in the Göttingen Minipigs by significantly increasing EE by 26.1% (P-value: 0.0014), 21.3% (P-value: 0.0491), and 25.4% (P-value: 0.0013), respectively, emphasizing the translational value of the model. In sub-study 5, three predictive equations were established for RMR based on body composition, demographic and anthropometric measurements, and the most accurate equation based on all variables. All three equations demonstrated acceptable accuracy (adjusted R2: 0.73-0.85).
Conclusions:
The present study qualifies the use of Göttingen Minipigs for investigating EE in preclinical research and provides a framework for conducting such research.
Insights
Göttingen minipigs show promise for preclinical obesity drug research. They accurately reflect human responses to energy expenditure-modulating compounds, validating their use in developing new obesity treatments.
Area of Science:
- Metabolic research
- Preclinical drug development
- Animal models for obesity
Background:
- Obesity affects nearly a billion people globally, necessitating novel therapeutic strategies beyond appetite suppression.
- Modulating energy expenditure (EE) and substrate utilization is crucial for improving obesity treatments.
- Selecting appropriate animal models is vital for translational research in obesity.
Purpose of the Study:
- To evaluate the translatability of Göttingen minipigs for assessing EE-modulating drugs.
- To validate minipigs as a model for preclinical research using indirect calorimetry.
- To establish predictive equations for resting metabolic rate (RMR) in minipigs.
Main Methods:
- Assessed energy expenditure (EE) and respiratory exchange ratio (RER) in minipigs under different dietary conditions and corrected for body composition.
- Administered three known EE-modulating compounds (2,4-dinitrophenol, glucagon receptor agonist, melanocortin receptor 4 agonist) to evaluate drug effects.
- Developed predictive equations for RMR using body composition and anthropometric measurements.
Main Results:
- Significant differences in EE and RER were observed based on diet and body size, and sex when adjusted for body composition.
- The three tested compounds demonstrated significant increases in EE in minipigs, mirroring their effects in humans (21.3%-26.1% increase).
- Three predictive equations for RMR showed acceptable accuracy (adjusted R²: 0.73-0.85).
Conclusions:
- Göttingen minipigs are qualified for preclinical research investigating energy expenditure.
- The study provides a validated framework for using minipigs to assess EE-modulating drugs.
- This model enhances the translational value of preclinical research for obesity treatments.
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