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Published on: February 10, 2013
The effect of obesity and subsequent weight reduction on cardiac morphology and function in cats
Catheryn Partington1,2, Hannah Hodgkiss-Geere3, Georgia R T Woods4
1Institute of Infection, Veterinary, Ecological and Sciences, Department of Small Animal Clinical Sciences, Teaching Hospital, University of Liverpool, Neston, UK. cgrp2@cam.ac.uk.
Insights
Obese cats often exhibit diastolic dysfunction and increased heart wall thickness, which can improve with successful weight loss. Further research is needed to understand the full clinical impact of these changes.
Area of Science:
- Veterinary Cardiology
- Obesity Medicine
- Comparative Physiology
Background:
- Obesity is a known cardiovascular risk factor in humans, linked to hypertension, cardiac remodeling, and dysfunction.
- In cats, the cardiovascular effects of obesity and weight reduction are not well understood.
- This study investigates cardiovascular changes in obese cats before and after weight loss.
Purpose of the Study:
- To assess cardiac morphology and function in obese cats.
- To evaluate the impact of controlled weight reduction on cardiovascular parameters.
- To analyze changes in body composition, heart rate variability, and cardiac biomarkers.
Main Methods:
- Prospective study involving 20 obese cats.
- Body composition analysis using dual-energy x-ray absorptiometry (DEXA).
- Cardiovascular assessment including echocardiography, blood pressure, ECG, and plasma biomarkers before and after weight management.
Main Results:
- 15 of 19 obese cats showed diastolic dysfunction; 11 had increased left ventricular wall thickness.
- Weight loss averaged 26%, with a 45% reduction in body fat.
- Successful weight reduction decreased left ventricular free wall and interventricular septum thickness, with some improvement in diastolic function.
Conclusions:
- Obesity in cats is associated with increased left ventricular wall thickness and diastolic dysfunction.
- These echocardiographic findings may be reversible with successful weight and fat mass loss.
- Further research is necessary to determine the clinical significance of these cardiovascular changes in obese cats.
Background:
In people, obesity is a risk factor for cardiovascular disease, associated with systemic hypertension, cardiac remodelling and systolic and diastolic dysfunction. Weight reduction can reverse myocardial remodelling and reduce risk of subsequent cardiovascular disease. In cats, far less is known regarding the effects of obesity and subsequent weight reduction on cardiovascular morphology and function. This prospective study aimed to assess cardiac morphology and function, heart rate variability, cardiac biomarkers and body composition before and after controlled weight reduction in cats with obesity. Body composition analysis (by dual energy x-ray absorptiometry, DEXA) and cardiovascular assessment (echocardiography, systemic arterial systolic blood pressure, electrocardiography, plasma cardiac biomarkers) were performed prior to weight management in twenty cats with obesity. These investigations were repeated in eleven cats that reached target weight.
Results:
At baseline, systemic hypertension was not documented, but the majority of cats with obesity (15 out of 19) showed echocardiographic evidence of diastolic dysfunction. Eleven of 20 cats had increased maximal end-diastolic septal or left ventricular free wall thickness (≥ 6.0 mm) at baseline. Median (interquartile range) percentage of weight lost in the cats reaching target weight was 26% (17-29%), with a median reduction in body fat mass of 45% (26-64%). Both the end-diastolic left ventricular free wall (median magnitude of change -0.85 mm, IQR -0.05 mm to -1.55 mm, P = 0.019; median percentage reduction 14.0%) and end-diastolic interventricular septum (median magnitude of change -0.5 mm, IQR -0.2 mm to -1.225 mm, P = 0.047; median percentage reduction 7.9%) thickness decreased after weight reduction. Following weight reduction, pulsed wave tissue Doppler imaging of the left ventricular free wall was consistent with improved diastolic function in 4 out of 8 cats, however there was no significant difference in overall diastolic function class. Further, there was no change in heart rate variability or cardiac biomarkers with weight reduction.
Conclusion:
An increase in left ventricular wall thickness and diastolic dysfunction were common echocardiographic features in cats with obesity within our study and may be reversible with successful weight and fat mass loss. Further studies are required to clarify the clinical consequences of these findings.
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