Evaluation of a Mathematical Model of Rat Body Weight Regulation in Application to Caloric Restriction and Drug Treatment Studies.

The purpose of this work is to develop a mathematical model of energy balance and body weight regulation that can predict species-specific response to common pre-clinical interventions. To this end, we evaluate the ability of a previously published mathematical model of mouse metabolism to describe...

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Main Authors: Jangir Selimkhanov, W Clayton Thompson, Terrell A Patterson, John R Hadcock, Dennis O Scott, Tristan S Maurer, Cynthia J Musante
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4882007?pdf=render
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spelling doaj-b8265b1953804725b8d28146b34ee9e12020-11-24T21:55:53ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01115e015567410.1371/journal.pone.0155674Evaluation of a Mathematical Model of Rat Body Weight Regulation in Application to Caloric Restriction and Drug Treatment Studies.Jangir SelimkhanovW Clayton ThompsonW Clayton ThompsonTerrell A PattersonJohn R HadcockDennis O ScottTristan S MaurerCynthia J MusanteThe purpose of this work is to develop a mathematical model of energy balance and body weight regulation that can predict species-specific response to common pre-clinical interventions. To this end, we evaluate the ability of a previously published mathematical model of mouse metabolism to describe changes in body weight and body composition in rats in response to two short-term interventions. First, we adapt the model to describe body weight and composition changes in Sprague-Dawley rats by fitting to data previously collected from a 26-day caloric restriction study. The calibrated model is subsequently used to describe changes in rat body weight and composition in a 23-day cannabinoid receptor 1 antagonist (CB1Ra) study. While the model describes body weight data well, it fails to replicate body composition changes with CB1Ra treatment. Evaluation of a key model assumption about deposition of fat and fat-free masses shows a limitation of the model in short-term studies due to the constraint placed on the relative change in body composition components. We demonstrate that the model can be modified to overcome this limitation, and propose additional measurements to further test the proposed model predictions. These findings illustrate how mathematical models can be used to support drug discovery and development by identifying key knowledge gaps and aiding in the design of additional experiments to further our understanding of disease-relevant and species-specific physiology.http://europepmc.org/articles/PMC4882007?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jangir Selimkhanov
W Clayton Thompson
W Clayton Thompson
Terrell A Patterson
John R Hadcock
Dennis O Scott
Tristan S Maurer
Cynthia J Musante
spellingShingle Jangir Selimkhanov
W Clayton Thompson
W Clayton Thompson
Terrell A Patterson
John R Hadcock
Dennis O Scott
Tristan S Maurer
Cynthia J Musante
Evaluation of a Mathematical Model of Rat Body Weight Regulation in Application to Caloric Restriction and Drug Treatment Studies.
PLoS ONE
author_facet Jangir Selimkhanov
W Clayton Thompson
W Clayton Thompson
Terrell A Patterson
John R Hadcock
Dennis O Scott
Tristan S Maurer
Cynthia J Musante
author_sort Jangir Selimkhanov
title Evaluation of a Mathematical Model of Rat Body Weight Regulation in Application to Caloric Restriction and Drug Treatment Studies.
title_short Evaluation of a Mathematical Model of Rat Body Weight Regulation in Application to Caloric Restriction and Drug Treatment Studies.
title_full Evaluation of a Mathematical Model of Rat Body Weight Regulation in Application to Caloric Restriction and Drug Treatment Studies.
title_fullStr Evaluation of a Mathematical Model of Rat Body Weight Regulation in Application to Caloric Restriction and Drug Treatment Studies.
title_full_unstemmed Evaluation of a Mathematical Model of Rat Body Weight Regulation in Application to Caloric Restriction and Drug Treatment Studies.
title_sort evaluation of a mathematical model of rat body weight regulation in application to caloric restriction and drug treatment studies.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2016-01-01
description The purpose of this work is to develop a mathematical model of energy balance and body weight regulation that can predict species-specific response to common pre-clinical interventions. To this end, we evaluate the ability of a previously published mathematical model of mouse metabolism to describe changes in body weight and body composition in rats in response to two short-term interventions. First, we adapt the model to describe body weight and composition changes in Sprague-Dawley rats by fitting to data previously collected from a 26-day caloric restriction study. The calibrated model is subsequently used to describe changes in rat body weight and composition in a 23-day cannabinoid receptor 1 antagonist (CB1Ra) study. While the model describes body weight data well, it fails to replicate body composition changes with CB1Ra treatment. Evaluation of a key model assumption about deposition of fat and fat-free masses shows a limitation of the model in short-term studies due to the constraint placed on the relative change in body composition components. We demonstrate that the model can be modified to overcome this limitation, and propose additional measurements to further test the proposed model predictions. These findings illustrate how mathematical models can be used to support drug discovery and development by identifying key knowledge gaps and aiding in the design of additional experiments to further our understanding of disease-relevant and species-specific physiology.
url http://europepmc.org/articles/PMC4882007?pdf=render
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