BACKGROUND: Cardiomyopathy of obesity occurs in humans, but the gross and cellular myocardial response to obesity in dogs is not well defined. OBJECTIVES: To characterize in vivo myocardial morphology and function in normotensive obese dogs, and quantitate collagen, triglyceride and myocyte cross-sectional area (CSA) in postmortem tissues from obese dogs. ANIMALS: Echocardiographic-Doppler measurements of normotensive obese dogs (n = 19) without historical or physical examination evidence of disease, and lean healthy dogs (n = 19) matched for age and ideal weight. Postmortem data were obtained from a separate population of 4 obese and 12 lean dogs without evidence of cardiac disease. METHODS: A prospective, observational study of myocardial morphology and function was conducted by echocardiographic-Doppler measurement. Left ventricular (LV) tissue was collected for quantitation of triglyceride, collagen, and myocyte CSA. RESULTS: Compared with lean control dogs, obese dogs had increased systolic blood pressure (obese 153 ± 19 mm Hg; lean 133 ± 20 mm Hg; P = .003), and increased LV free wall thickness at end-diastole (obese 9.9 ± 1.8 mm, lean 8.7 ± 1.5 mm; P = .03) and end-systole (obese 15.2 ± 2.3 mm, lean 12.9 ± 2.3 mm; P = .004). Isovolumic relaxation time was prolonged in 7/19 (37%) of obese dogs, compared with normal ranges. Myocardial triglyceride and collagen content and myocyte CSA were similar between groups. CONCLUSIONS AND CLINICAL IMPORTANCE: As in humans, LV hypertrophy and diastolic dysfunction can be an early myocardial change in some obese dogs.
BACKGROUND:Cardiomyopathy of obesity occurs in humans, but the gross and cellular myocardial response to obesity in dogs is not well defined. OBJECTIVES: To characterize in vivo myocardial morphology and function in normotensive obesedogs, and quantitate collagen, triglyceride and myocyte cross-sectional area (CSA) in postmortem tissues from obesedogs. ANIMALS: Echocardiographic-Doppler measurements of normotensive obesedogs (n = 19) without historical or physical examination evidence of disease, and lean healthy dogs (n = 19) matched for age and ideal weight. Postmortem data were obtained from a separate population of 4 obese and 12 lean dogs without evidence of cardiac disease. METHODS: A prospective, observational study of myocardial morphology and function was conducted by echocardiographic-Doppler measurement. Left ventricular (LV) tissue was collected for quantitation of triglyceride, collagen, and myocyte CSA. RESULTS: Compared with lean control dogs, obesedogs had increased systolic blood pressure (obese 153 ± 19 mm Hg; lean 133 ± 20 mm Hg; P = .003), and increased LV free wall thickness at end-diastole (obese 9.9 ± 1.8 mm, lean 8.7 ± 1.5 mm; P = .03) and end-systole (obese 15.2 ± 2.3 mm, lean 12.9 ± 2.3 mm; P = .004). Isovolumic relaxation time was prolonged in 7/19 (37%) of obesedogs, compared with normal ranges. Myocardial triglyceride and collagen content and myocyte CSA were similar between groups. CONCLUSIONS AND CLINICAL IMPORTANCE: As in humans, LV hypertrophy and diastolic dysfunction can be an early myocardial change in some obesedogs.
Authors: Alicia Pamela Pérez-Sánchez; Javier Del-Angel-Caraza; Israel Alejandro Quijano-Hernández; Marco Antonio Barbosa-Mireles Journal: Vet Res Commun Date: 2015-02-10 Impact factor: 2.459
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Authors: Mauro José Lahm Cardoso; Rafael Fagnani; Carolina Zaghi Cavalcante; Marcelo de Souza Zanutto; Ademir Zacarias Júnior; Luciane Holsback da Silveira Fertonani; Jéssica Ragazzi Calesso; Maíra Melussi; Helena Pinheiro Costa; Eduardo Yudi Hashizume Journal: Vet Med Int Date: 2016-12-12
Authors: C Partington; H Hodgkiss-Geere; G R T Woods; J Dukes-McEwan; J Flanagan; V Biourge; A J German Journal: BMC Vet Res Date: 2022-09-20 Impact factor: 2.792
Authors: Pedro H Marchi; Thiago H A Vendramini; Mariana P Perini; Rafael V A Zafalon; Andressa R Amaral; Vanessa A Ochamotto; Juliano C Da Silveira; Maria L Z Dagli; Marcio A Brunetto Journal: Front Vet Sci Date: 2022-10-03