Background <p>Epicardial adipose tissue (EAT) has garnered interest due to its important role in obesity-related heart failure with preserved ejection fraction. However, while bariatric surgery is known to both improve cardiac function and reduce EAT, the presence of any relation between these two remains unclear. This study aims to investigate the association between EAT changes and improvement of cardiac dysfunction following bariatric surgery.</p> Methods <p>This prospective cohort study enrolled subjects aged 35-65years with a body mass index ≥ 35&#xa0;kg/m² who underwent bariatric surgery, excluding those with known cardiac disease. Conventional transthoracic echocardiography and strain analyses were conducted before and one-year post-surgery. Improvement in cardiac function was defined as a composite outcome requiring improvement in three domains: systolic function (ejection fraction or global longitudinal strain), diastolic function (E/e’ratio or septal e’velocity), and cardiac remodeling (left atrial volume index or left ventricular mass index).</p> Results <p>In the 142 patients who completed one year follow-up, a significant reduction in EAT of 31% was observed (pre-surgery:4.9 ± 1.5&#xa0;mm, post-surgery:3.4 ± 1.1&#xa0;mm; <i>p</i> &lt; 0.001). Linear regression revealed that a one-millimeter reduction in EAT thickness was independently associated with improvements in global longitudinal strain (%)(β-coefficient:0.48; 95%CI:0.06–0.90; <i>p</i> = 0.027) and septal e’(cm/s)(β-coefficient:0.28; 95%CI:0.02–0.54; <i>p</i> = 0.035). Furthermore, a one-millimeter reduction in EAT thickness increased the odds of cardiac improvement by 58% (OR:1.58: 95%CI:1.15–2.24: <i>p</i> = 0.007).</p> Conclusion <p>EAT reduction post-bariatric surgery was associated with LV function improvement one-year after bariatric surgery in individuals with obesity without established cardiac disease. Our results underscore the potential role of EAT as a marker of functional heart disease in obesity.</p> Graphical Abstract <p>* Improvement in cardiac function was defined as a binary composite outcome, requiring improvement in echocardiographic parameters across <i>all three specified domains</i>: (1) systolic function, defined as any increase in either EF or GLS (2) diastolic function, defined as any increase in septal e’ velocity or decrease in E/e’ ratio; and (3) cardiac remodeling, defined as any decrease in LAVI or LVMI.&#xa0;Model 1: adjusted for body mass index, age, and gender.&#xa0;Model 2: variables of model 1 with the addition of changes in hypertension, diabetes mellitus, and obstructive sleep apnea syndrome status.&#xa0;FU, follow up; BMI, body mass index; OSAS, obstructive sleep apnea syndrome; DM, diabetes mellitus type 2; HT, hypertension; EAT, epicardial adipose tissue; GLS, global longitudinal strain; LVMI, left ventricular mass index; LAVI, left atrial volume index; LASr, left atrial reservoir strain; OR, Odds Ratio; EF, Ejection Fraction; E/e’, early diastolic transmitral flow velocity/early diastolic mitral annular velocity ratio.&#xa0;Created with BioRender.com.</p> <p></p>

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Bariatric Surgery Reduces Epicardial Adipose Tissue and is Associated with Improved Cardiac Function

  • Jie Fen Chin,
  • Yaar S. Aga,
  • Sabrina Abou Kamar,
  • Sanne M Snelder,
  • Willemien L Verloop,
  • Isabella Kardys,
  • Jasper J Brugts,
  • Rudolf A. de Boer,
  • Bas M. van Dalen

摘要

Background

Epicardial adipose tissue (EAT) has garnered interest due to its important role in obesity-related heart failure with preserved ejection fraction. However, while bariatric surgery is known to both improve cardiac function and reduce EAT, the presence of any relation between these two remains unclear. This study aims to investigate the association between EAT changes and improvement of cardiac dysfunction following bariatric surgery.

Methods

This prospective cohort study enrolled subjects aged 35-65years with a body mass index ≥ 35 kg/m² who underwent bariatric surgery, excluding those with known cardiac disease. Conventional transthoracic echocardiography and strain analyses were conducted before and one-year post-surgery. Improvement in cardiac function was defined as a composite outcome requiring improvement in three domains: systolic function (ejection fraction or global longitudinal strain), diastolic function (E/e’ratio or septal e’velocity), and cardiac remodeling (left atrial volume index or left ventricular mass index).

Results

In the 142 patients who completed one year follow-up, a significant reduction in EAT of 31% was observed (pre-surgery:4.9 ± 1.5 mm, post-surgery:3.4 ± 1.1 mm; p < 0.001). Linear regression revealed that a one-millimeter reduction in EAT thickness was independently associated with improvements in global longitudinal strain (%)(β-coefficient:0.48; 95%CI:0.06–0.90; p = 0.027) and septal e’(cm/s)(β-coefficient:0.28; 95%CI:0.02–0.54; p = 0.035). Furthermore, a one-millimeter reduction in EAT thickness increased the odds of cardiac improvement by 58% (OR:1.58: 95%CI:1.15–2.24: p = 0.007).

Conclusion

EAT reduction post-bariatric surgery was associated with LV function improvement one-year after bariatric surgery in individuals with obesity without established cardiac disease. Our results underscore the potential role of EAT as a marker of functional heart disease in obesity.

Graphical Abstract

* Improvement in cardiac function was defined as a binary composite outcome, requiring improvement in echocardiographic parameters across all three specified domains: (1) systolic function, defined as any increase in either EF or GLS (2) diastolic function, defined as any increase in septal e’ velocity or decrease in E/e’ ratio; and (3) cardiac remodeling, defined as any decrease in LAVI or LVMI. Model 1: adjusted for body mass index, age, and gender. Model 2: variables of model 1 with the addition of changes in hypertension, diabetes mellitus, and obstructive sleep apnea syndrome status. FU, follow up; BMI, body mass index; OSAS, obstructive sleep apnea syndrome; DM, diabetes mellitus type 2; HT, hypertension; EAT, epicardial adipose tissue; GLS, global longitudinal strain; LVMI, left ventricular mass index; LAVI, left atrial volume index; LASr, left atrial reservoir strain; OR, Odds Ratio; EF, Ejection Fraction; E/e’, early diastolic transmitral flow velocity/early diastolic mitral annular velocity ratio. Created with BioRender.com.