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1.
Artigo em Inglês | MEDLINE | ID: mdl-37791396

RESUMO

BACKGROUND: Obesity and metabolic syndrome (MetS) are prevalent among chronic kidney disease (CKD) patients. However, it is unclear whether obesity without MetS is associated with a higher risk of adverse clinical outcomes in CKD patients. METHODS: We searched the National Health Insurance Service database of Korea for patients who underwent national health screenings in 2009-2011 and identified 59 725 CKD patients. Obesity was defined as a body mass index ≥25 kg/m2. MetS was defined as the presence of ≥3 metabolic risks. RESULTS: The cumulative event rate of cardiovascular events, progression to end-stage kidney disease (ESKD), and all-cause mortality was the lowest among obese patients without MetS (all P < 0.001). In multivariable analysis, obese (versus non-obese) patients without MetS were not at increased risks of cardiovascular events (adjusted hazard ratio [HR] 1.02; 95% confidence interval 0.94-1.11) or progression to ESKD (0.92; 0.77-1.09). Their risk of all-cause mortality was significantly decreased (0.82; 0.75-0.90). These findings were consistently observed in overweight, obese, and morbidly obese patients without MetS. Moreover, despite a linear increase in HR for each additional metabolic abnormality in both obese and non-obese patients, the slope of HR increase for cardiovascular events was significantly slower in obese patients (P for interaction = 0.038). CONCLUSIONS: Obesity without MetS did not increase the risk of cardiovascular complications or progression to ESKD. The healthy effect of obesity on all-cause mortality risk and its weakening effect on the association between metabolic hazards and cardiovascular risk should be considered in CKD patients.

2.
Front Cardiovasc Med ; 8: 765153, 2021.
Artigo em Inglês | MEDLINE | ID: mdl-34938783

RESUMO

Background: Body mass index (BMI) is a critical determinant of mortality after acute myocardial infarction (AMI), and higher BMI is associated with survival benefit in patients with renal impairment. However, there are no studies investigating the interactive effects of BMI and renal function on mortality risk after AMI occurrence. Methods: We enrolled 12,647 AMI patients from Korea Acute Myocardial Infarction Registry between November 2011 and December 2015. Patients were categorized based on estimated Glomerular Filtration Rate (eGFR) and BMI. The primary endpoint was all-cause mortality after AMI treatment. Results: Within each renal function category, the absolute mortality rate was decreased in patients with higher BMI. However, the adjusted hazard ratio (HR) of all-cause mortality for higher BMI was decreased as renal function worsened [adjusted HR (95% confidence interval) at BMI ≥ 25 kg/m2: 0.63 (0.41-0.99), 0.76 (0.59-0.97), and 0.84 (0.65-1.08) for patients with eGFR ≥ 90, 90-45, and <45 mL/min/1.73 m2, respectively]. There was a significant interaction between BMI and renal function (P for interaction = 0.010). The protective effect of higher BMI was preserved against non-cardiac death and it was also decreased with lowering eGFR in competing risks models [adjusted HR at BMI ≥25 kg/m2: 0.38 (0.18-0.83), 0.76 (0.59-0.97), and 0.84 (0.65-1.08) for patients with eGFR ≥ 90, 90-45, and <45 mL/min/1.73 m2, respectively; P for interaction = 0.03]. However, renal function did not significantly affect the association between BMI and risk of cardiac death (P for interaction = 0.20). Conclusions: The effect of BMI on the mortality risk after AMI was dependent on renal function. The association between greater BMI and survival benefit was weakened as renal function was decreased. In addition, the negative effect of renal function on the BMI - mortality association was pronounced in the non-cardiac death.

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