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1.
Clinics ; 68(6): 760-765, jun. 2013. tab, graf
Article in English | LILACS, SES-SP | ID: lil-676927

ABSTRACT

OBJECTIVES: Chronic kidney disease is a major public health problem worldwide. In Brazil, approximately 100,000 patients (January 2012) receive renal replacement therapy. Nevertheless, data on dialysis incidence in the Brazilian population are scarce. This study aims to analyze the incidence of patients starting dialysis therapy in São Paulo City, the largest Brazilian metropolis. METHOD: This cohort study analyzed data from 9,994 patients starting hemodialysis or peritoneal dialysis funded by the Brazilian Public Health System during a 5-year period (2007-2011). Patient data for this study (recorded as electronic files) were obtained from the São Paulo City's Dialysis Regulatory Bureau, which regulates the allocation of patients requiring dialytic therapy. RESULTS: The dialysis incidence rates were 178, 174, 170, 185 and 188 per million population for the years 2007, 2008, 2009, 2010 and 2011, respectively. The incidence rates increased with age. Hypertension and diabetes were the main etiologies diagnosed. Hemodialysis was the chosen dialysis modality in the majority of patients (92.6%), whereas the percentage of patients referred for peritoneal dialysis decreased from 10.1% to 5.5%. CONCLUSION: The incidence of patients starting renal replacement therapy from 2007-2011 in São Paulo was stable but higher than the projected incidence for the entire country. The authors emphasize the need for further studies of the incidence of dialysis in the Brazilian population and for the creation of a Brazilian registry of dialysis patients, which would be a valuable tool for developing healthcare policies and renal replacement therapy strategies. .


Subject(s)
Aged , Female , Humans , Male , Middle Aged , Renal Dialysis , Renal Insufficiency, Chronic/epidemiology , Age Distribution , Age Factors , Brazil/epidemiology , Cities/epidemiology , Cohort Studies , Incidence , Renal Dialysis/statistics & numerical data , Renal Insufficiency, Chronic/therapy , Sex Distribution , Time Factors
2.
J. bras. nefrol ; 34(3): 259-265, jul.-set. 2012. ilus, tab
Article in Portuguese | LILACS | ID: lil-653553

ABSTRACT

INTRODUÇÃO: As complicações cardiovasculares permanecem como a principal causa de mortalidade nos pacientes portadores de doença renal crônica (DRC). A adiponectina é uma proteína produzida pelo tecido adiposo que apresenta importante propriedade cardioprotetora. O nosso objetivo foi investigar os determinantes dos níveis de adiponectina nos pacientes com DRC. MÉTODOS: Este estudo prospectivo observacional incluiu 98 pacientes [taxa de filtração glomerular (TFG) 36,1+-14,4 ml/min; 56,5+-10,4 anos; 63% homens; 31% diabéticos e índice de massa corporal (IMC) 27,1+-5,2 kg/m²]. A avaliação da adiponectina (teste imunoenzimático), dos parâmetros laboratoriais, do estado nutricional (avaliação global subjetiva), da gordura corporal total (absortometria de raios-x de dupla energia) e da gordura abdominal visceral e subcutânea (tomografia computadorizada) foi realizada no início e após 12 meses. RESULTADOS: A adiponectina correlacionou-se com a TFG (r = -0,45; p < 0,001), a proteinúria (r = 0,21; p = 0,04), o IMC (r = -0,33; p < 0,01) e a gordura visceral (r = -0,49; p < 0,001). Na análise de regressão múltipla, os determinantes das concentrações de adiponectina foram o sexo (feminino β = 3,8; p < 0,01), a idade (β = 0,14; p = 0,03), a TFG (β = -0,15; p < 0,01) e a gordura visceral (β = -0,04; p < 0,001) (R² = 0,41). Após 12 meses, a progressão da DRC foi evidenciada pela diminuição da TFG (-1,6+-6,3 ml/min; p = 0,01) e aumento da proteinúria (0,3+-0,8 g/d; p < 0,01). Houve um aumento da gordura visceral de 97+-73 cm² para 111+-82 cm² (p < 0,001) e concomitante redução dos níveis de adiponectina, de 27,6+-7,5 mg/l para 22,2+-11,6 mg/l (p < 0,001). O peso corporal, o IMC, a gordura corporal total e a gordura abdominal subcutânea não se alteraram neste período. Ajustando pelos fatores associados à adiponectina, observamos que somente o acúmulo de gordura visceral ao longo do tempo determinou a redução nos níveis de adiponectina (β = -0,04; p = 0,025; R² = 0,21). CONCLUSÃO: A idade, o sexo, a função renal e a gordura visceral estiveram independentemente associados com os níveis de adiponectina nos pacientes com DRC na fase não dialítica. No entanto, a mudança da gordura visceral foi o único preditor das variações nos níveis de adiponectina ao longo de 12 meses.


BACKGROUND: Cardiovascular complications remain the main cause of mortality in patients with chronic kidney disease (CKD). Adiponectin is an adipose tissue-derived protein that carries important cardioprotective properties. We aimed at investigating the determinants of adiponectin levels in CKD patients. METHODS: This prospective observational study included 98 CKD patients [glomerular filtration rate (GFR) 36.1+-14.4 ml/min, 56.5+-10.4 y, 63% male, 31% diabetics, and body mass index (BMI) 27.1+-5.2 kg/m²]. Evaluation of adiponectin (imunoenzimatic assay), laboratory parameters, nutritional status (subjective global assessment), total body fat (dual x-ray energy absorptiometry), and visceral and subcutaneous abdominal fat (computed tomography) was performed at baseline and after 12 months. RESULTS: Adiponectin correlated with GFR (r = -0.45; p < 0.001), proteinuria (r = 0.21; p = 0.04), BMI (r = -0.33; p < 0.01), and visceral fat (r = -0.49; p < 0.001). In the linear regression analysis, the determinants of adiponectin levels were sex (female β = 3.8; p < 0.01), age (β = 0.14; p = 0.03), GFR (β = -0.15; p < 0.01) and visceral fat (β = -0.04; p < 0.001) (R² = 0.41). After 12 months, a progression of the disease was evidenced by the reduction of GFR (-1.6+-6.3 ml/min; p = 0.01) and increase of proteinuria (0.3+-0.8 g/d; p < 0.01). An accumulation of visceral fat was observed, from 97+-73 cm² to 111+-82 cm² (p < 0.001), with a concomitant reduction of adiponectin concentration, from 27.6+-7.5 mg/l to 22.2+-11.6 mg/l (p < 0.001). Body weight, BMI, total body fat, and subcutaneous abdominal fat remained unchanged. After adjustments for the baseline determinants of adiponectin, the increase in visceral fat was independently associated with overtime decrease in adiponectin levels (β = -0.04; p = 0.025; R² = 0.21). CONCLUSION: Age, sex, renal function and visceral fat were independently associated with adiponectin levels in nondialyzed CKD patients. However, variation in visceral fat was the only predictor of variation in adiponectin levels over 12 months.


Subject(s)
Adult , Aged , Female , Humans , Male , Middle Aged , Adiponectin/blood , Renal Insufficiency, Chronic/blood , Cross-Sectional Studies , Prospective Studies
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