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Published on: February 10, 2013
The effect of obesity and subsequent weight reduction on cardiac structure and function in dogs
C Partington1,2, H Hodgkiss-Geere3, G R T Woods4
1Institute of Infection, Veterinary, Ecological and Sciences, Department of Small Animal Clinical Sciences, Teaching Hospital, University of Liverpool, Chester High Road, Neston, CH64 7TE, Wirral, UK. cgrp2@cam.ac.uk.
Insights
Canine obesity causes diastolic dysfunction and left ventricular hypertrophy. Weight reduction in dogs significantly reduced fat mass and improved cardiac structure, specifically left ventricular wall dimensions.
Area of Science:
- Veterinary Cardiology
- Canine Health
- Obesity Research
Background:
- Obesity in humans leads to cardiovascular issues like hypertension and cardiac dysfunction.
- Weight reduction in humans can reverse cardiovascular damage.
- Studies on obesity and weight reduction effects on canine cardiovascular health show variable results.
Purpose of the Study:
- To assess cardiac function, heart rate variability, cardiac biomarkers, and body composition in obese dogs before and after weight reduction.
- To investigate the cardiovascular effects of obesity in dogs.
- To determine if weight reduction can improve cardiovascular parameters in obese dogs.
Main Methods:
- Prospective study involving 24 client-owned obese dogs.
- Body composition analysis using dual-energy X-ray absorptiometry (DEXA).
- Cardiovascular assessment including echocardiography, Doppler blood pressure, electrocardiography, and cardiac biomarkers.
- Comparison of pre- and post-weight reduction parameters using Wilcoxon-signed rank test.
Main Results:
- Twelve dogs completed the study, achieving a median weight loss of 23% and a 50% reduction in body fat mass.
- Obese dogs commonly exhibited diastolic dysfunction, increased left ventricular wall thickness, and mildly elevated systolic blood pressure.
- Weight reduction led to a significant decrease in systolic interventricular septum and systolic left ventricular free wall dimensions.
Conclusions:
- Canine obesity is associated with diastolic dysfunction and left ventricular hypertrophy.
- Significant weight and fat mass reduction can improve left ventricular hypertrophy in dogs.
- Further research is needed to understand the clinical implications of these cardiovascular changes in obese dogs.
Background:
In people, the cardiovascular effects of obesity include systemic hypertension, cardiac remodelling and both systolic and diastolic dysfunction, whilst weight reduction can reverse myocardial remodelling and reduce risk of subsequent cardiovascular disease. To date, variable results are reported in studies of the effect of obesity and controlled weight reduction on cardiovascular morphology and function in dogs. This prospective study aimed to assess cardiac function, heart rate variability, cardiac biomarkers and body composition before and after weight reduction in pet dogs with obesity. Twenty-four client-owned dogs referred for weight management due to obesity were recruited. To assess the cardiac effects of obesity, body composition analysis (by dual energy X-ray absorptiometry, DEXA) and cardiovascular assessment (echocardiography, Doppler blood pressure, electrocardiography, cardiac biomarkers) were performed prior to weight management. Twelve dogs completed the study and reached target weight, receiving a further cardiovascular assessment and DEXA. A Wilcoxon-signed rank test was used to compare each variable pre- and post- weight reduction.
Results:
Median (interquartile range) duration of weight loss was 224 days (124-245 days), percentage weight loss was 23% (18-31%) of starting weight. Median change in body fat mass was -50% (-44% to -55%; P = 0.004), whilst median change in lean mass was -7% (+ 1% to -18%, P = 0.083). Before weight reduction, diastolic dysfunction (evidence of impaired relaxation in all dogs), increased left ventricular wall thickness and mildly elevated systolic blood pressure (14/24 ≥ 160 mmHg, median 165 mmHg (140-183)) were common features in dogs with obesity. However, systolic left ventricular wall dimensions were the only variables that changed after weight reduction, with a decrease in both the systolic interventricular septum (P = 0.029) and systolic left ventricular free wall (P = 0.017). There was no evidence of decreased heart rate variability in dogs with obesity (P = 0.367), and no change in cardiac biomarker concentrations with weight reduction (N-terminal proBNP, P = 0.262; cardiac troponin I P = 0.657).
Conclusions:
Canine obesity results in diastolic dysfunction and left ventricular hypertrophy, the latter of which improves with significant weight and fat mass reduction. Further studies are required to clarify the clinical consequences of these findings.
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