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1.
Rev Esp Cardiol (Engl Ed) ; 74(7): 616-623, 2021 Jul.
Article in English, Spanish | MEDLINE | ID: mdl-32624444

ABSTRACT

INTRODUCTION AND OBJECTIVES: Urinary sodium (UNa+) has emerged as a useful biomarker of poor clinical outcomes in acute heart failure (AHF). Here, we sought to evaluate: a) the usefulness of a single early determination of UNa+ for predicting adverse outcomes in patients with AHF and renal dysfunction, and b) whether the change in UNa+ at 24hours (ΔUNa24h) adds any additional prognostic information over baseline values. METHODS: This is a post-hoc analysis of a multicenter, open-label, randomized clinical trial (IMPROVE-HF) (ClinicalTrials.gov NCT02643147) that randomized 160 patients with AHF and renal dysfunction on admission to a) the standard diuretic strategy, or b) a carbohydrate antigen 125-guided diuretic strategy. The primary end point was all-cause mortality and total all-cause readmissions. RESULTS: The mean age was 78±8 years, and the mean glomerular filtration rate was 34.0±8.5mL/min/1.73 m2. The median UNa+ was 90 (65-111) mmol/L. At a median follow-up of 1.73 years [interquartile range, 0.48-2.35], 83 deaths (51.9%) were registered, as well as 263 all-cause readmissions in 110 patients. UNa+ was independently associated with mortality (HR, 0.75; 95%CI, 0.65-0.87; P <.001) and all-cause readmissions (HR, 0.92; 95%CI, 0.88-0.96; P <.001). The prognostic usefulness of the ΔUNa24h varied according to UNa+ at admission (P for interaction <.05). The ΔUNa24h was inversely associated with both end points only in the group with UNa+ ≤ 50 mmol/L. Conversely, no effect was found in the group with UNa+> 50 mmol/L. CONCLUSIONS: In patients with AHF and renal dysfunction, a single early determination of UNa+ ≤ 50 mmol/L identifies patients with a higher risk of all-cause mortality and readmission. The ΔUNa24h adds prognostic information over baseline values only when UNa+ at admission is ≤ 50 mmol/L.


Subject(s)
Heart Failure , Kidney Diseases , Acute Disease , Aged , Aged, 80 and over , Diuretics , Heart Failure/diagnosis , Heart Failure/therapy , Humans , Sodium
2.
Am J Med ; 133(3): 370-380.e4, 2020 03.
Article in English | MEDLINE | ID: mdl-31422111

ABSTRACT

BACKGROUND: The optimal diuretic treatment strategy for patients with acute heart failure and renal dysfunction remains unclear. Plasma carbohydrate antigen 125 (CA125) is a surrogate of fluid overload and a potentially valuable tool for guiding decongestion therapy. The aim of this study was to determine if a CA125-guided diuretic strategy is superior to usual care in terms of short-term renal function in patients with acute heart failure and renal dysfunction at presentation. METHODS: This multicenter, open-label study randomized 160 patients with acute heart failure and renal dysfunction into 2 groups (1:1). Loop diuretics doses were established according to CA125 levels in the CA125-guided group (n = 79) and in clinical evaluation in the usual-care group (n = 81). Changes in estimated glomerular filtration rate (eGFR) at 72 and 24 hours were the co-primary endpoints, respectively. RESULTS: The mean age was 78 ± 8 years, the median amino-terminal pro-brain natriuretic peptide was 7765 pg/mL, and the mean eGFR was 33.7 ± 11.3 mL/min/1.73m2. Over 72 hours, the CA125-guided group received higher furosemide equivalent dose compared to usual care (P = 0.011), which translated into higher urine volume (P = 0.042). Moreover, patients in the active arm with CA125 >35 U/mL received the highest furosemide equivalent dose (P <0.001) and had higher diuresis (P = 0.013). At 72 hours, eGFR (mL/min/1.73m2) significantly improved in the CA125-guided group (37.5 vs 34.8, P = 0.036), with no significant changes at 24 hours (35.8 vs 39.5, P = 0.391). CONCLUSION: A CA125-guided diuretic strategy significantly improved eGFR and other renal function parameters at 72 hours in patients with acute heart failure and renal dysfunction.


Subject(s)
CA-125 Antigen/blood , Furosemide/administration & dosage , Heart Failure/drug therapy , Membrane Proteins/blood , Renal Insufficiency/drug therapy , Sodium Potassium Chloride Symporter Inhibitors/administration & dosage , Aged , Aged, 80 and over , Female , Heart Failure/complications , Heart Failure/urine , Humans , Kidney Function Tests , Male , Precision Medicine , Renal Insufficiency/complications , Renal Insufficiency/urine , Urine
3.
Rev. esp. cardiol. (Ed. impr.) ; 70(12): 1067-1073, dic. 2017. tab, ilus
Article in Spanish | IBECS | ID: ibc-169305

ABSTRACT

Introducción y objetivos: El tratamiento óptimo de pacientes con insuficiencia cardiaca aguda (ICA) y síndrome cardiorrenal tipo 1 (SCR-1) no está bien definido. La hipoperfusión arterial y la congestión venosa tienen un papel fundamental en la fisiopatología del SCR-1. El antígeno carbohidrato 125 (CA125) ha emergido como marcador indirecto de sobrecarga de volumen en la ICA. El objetivo de este estudio es evaluar la utilidad del CA125 para el ajuste del tratamiento diurético de pacientes con SCR-1. Métodos: Ensayo clínico multicéntrico, abierto y paralelo, que incluye a pacientes con ICA y creatinina ≥ 1,4 mg/dl al ingreso, aleatorizados a: a) estrategia convencional: titulación basada en la evaluación clínica y bioquímica habitual, o b) estrategia basada en CA125: dosis altas de diuréticos si CA125 > 35 U/ml y bajas en caso contrario. El objetivo principal es el cambio en la función renal a las 24 y las 72 h tras el comienzo del tratamiento. Como objetivos secundarios: a) cambios clínicos y bioquímicos a las 24 y las 72 h, y b) cambios en la función renal y eventos clínicos mayores a 30 días. Resultados: Los resultados de este estudio aportarán datos relevantes sobre la utilidad del CA125 para guiar el tratamiento diurético en el SCR-1. Además, permitirá ampliar el conocimiento de la fisiopatología de esta compleja entidad clínica. Conclusiones: La hipótesis del presente estudio es que las concentraciones de CA125 aumentadas pueden identificar a una población de pacientes con SCR-1 para quienes una estrategia diurética más intensa puede ser beneficiosa. Por el contrario, las concentraciones bajas de esta glucoproteína seleccionarían a los pacientes para los que serían perjudiciales las dosis altas de diuréticos (AU)


Introduction and objectives: The optimal treatment of patients with acute heart failure (AHF) and cardiorenal syndrome type 1 (CRS-1) is far from being well-defined. Arterial hypoperfusion in concert with venous congestion plays a crucial role in the pathophysiology of CRS-I. Plasma carbohydrate antigen 125 (CA125) has emerged as a surrogate of fluid overload in AHF. The aim of this study was to evaluate the clinical usefulness of CA125 for tailoring the intensity of diuretic therapy in patients with CRS-1. Methods: Multicenter, open-label, parallel clinical trial, in which patients with AHF and serum creatinine ≥ 1.4 mg/dL on admission will be randomized to: a) standard diuretic strategy: titration-based on conventional clinical and biochemical evaluation, or b) diuretic strategy based on CA125: high dose if CA125 > 35 U/mL, and low doses otherwise. The main endpoint will be renal function changes at 24 and 72 hours after therapy initiation. Secondary endpoints will include: a) clinical and biochemical changes at 24 and 72 hours, and b) renal function changes and major clinical events at 30 days. Results: The results of this study will add important knowledge on the usefulness of CA125 for guiding diuretic treatment in CRS-1. In addition, it will pave the way toward a better knowledge of the pathophysiology of this challenging situation. Conclusions: We hypothesize that higher levels of CA125 will identify a patient population with CRS-1 who could benefit from the use of a more intense diuretic strategy. Conversely, low levels of this glycoprotein could select those patients who would be harmed by high diuretic doses (AU)


Subject(s)
Humans , Heart Failure/therapy , Kidney Diseases/complications , Biomarkers , Diuretics/therapeutic use , Heart Failure/complications , 28599
4.
Rev Esp Cardiol (Engl Ed) ; 70(12): 1067-1073, 2017 Dec.
Article in English, Spanish | MEDLINE | ID: mdl-28341415

ABSTRACT

INTRODUCTION AND OBJECTIVES: The optimal treatment of patients with acute heart failure (AHF) and cardiorenal syndrome type 1 (CRS-1) is far from being well-defined. Arterial hypoperfusion in concert with venous congestion plays a crucial role in the pathophysiology of CRS-I. Plasma carbohydrate antigen 125 (CA125) has emerged as a surrogate of fluid overload in AHF. The aim of this study was to evaluate the clinical usefulness of CA125 for tailoring the intensity of diuretic therapy in patients with CRS-1. METHODS: Multicenter, open-label, parallel clinical trial, in which patients with AHF and serum creatinine ≥ 1.4mg/dL on admission will be randomized to: a) standard diuretic strategy: titration-based on conventional clinical and biochemical evaluation, or b) diuretic strategy based on CA125: high dose if CA125 > 35 U/mL, and low doses otherwise. The main endpoint will be renal function changes at 24 and 72hours after therapy initiation. Secondary endpoints will include: a) clinical and biochemical changes at 24 and 72hours, and b) renal function changes and major clinical events at 30 days. RESULTS: The results of this study will add important knowledge on the usefulness of CA125 for guiding diuretic treatment in CRS-1. In addition, it will pave the way toward a better knowledge of the pathophysiology of this challenging situation. CONCLUSIONS: We hypothesize that higher levels of CA125 will identify a patient population with CRS-1 who could benefit from the use of a more intense diuretic strategy. Conversely, low levels of this glycoprotein could select those patients who would be harmed by high diuretic doses.


Subject(s)
Acetazolamide/therapeutic use , CA-125 Antigen/blood , Cardio-Renal Syndrome/drug therapy , Chlorthalidone/therapeutic use , Diuretics/therapeutic use , Furosemide/therapeutic use , Heart Failure/drug therapy , Membrane Proteins/blood , Water-Electrolyte Imbalance/drug therapy , Acute Disease , Cardio-Renal Syndrome/blood , Cardio-Renal Syndrome/complications , Creatinine/blood , Heart Failure/blood , Heart Failure/complications , Humans , Patient Care Planning , Water-Electrolyte Imbalance/blood , Water-Electrolyte Imbalance/etiology
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