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Intrarenal venous flow in cardiorenal syndrome: a shining light into the darkness
Rafael de la Espriella-Juan1,2,3, Eduardo Núñez1,2,3, Gema Miñana1,2,3
1Cardiology Department, Hospital Clínico Universitario de Valencia, INCLIVA, Valencia, Spain.
Insights
Intrarenal Doppler ultrasonography non-invasively assessed intrarenal venous flow (IRVF) in acute heart failure (AHF) and worsening renal function (WRF). Changes in IRVF patterns correlated with clinical improvement and renal function after decongestion.
Area of Science:
- Nephrology
- Cardiology
- Radiology
Background:
- Acute heart failure (AHF) frequently presents with worsening renal function (WRF).
- Evaluating renal congestion in AHF is crucial for guiding treatment.
- Intrarenal venous flow (IRVF) assessment may offer insights into renal hemodynamics.
Observation:
- A case report details an 81-year-old woman with valvular heart disease, AHF, and WRF.
- Intrarenal Doppler ultrasonography was used to assess IRVF at baseline and after diuretic treatment.
- Baseline IRVF showed a monophasic pattern, indicative of elevated renal interstitial pressure.
Findings:
- Following aggressive decongestion, IRVF dynamically shifted from a monophasic to a biphasic pattern.
- This change in IRVF correlated with clinical improvement and recovery of renal function (serum creatinine decreased).
Implications:
- Intrarenal Doppler ultrasonography may identify patients with a 'congestion kidney failure' phenotype.
- This non-invasive technique shows potential for guiding decongestive therapy in AHF patients with WRF.
- Further research is warranted to validate these findings and the clinical utility of IRVF assessment.
Abstract:
The aim of this case report is to assess the potential role of intrarenal Doppler ultrasonography as a non-invasive method to evaluate intrarenal venous flow (IRVF) in acute heart failure (AHF) and concomitant renal dysfunction. We report a case of an 81-year-old woman with valvular heart disease (previous mitral valve replacement) that presented with acutely decompensated heart failure and concomitant worsening renal function (WRF). In addition to complete physical examination, laboratory analysis, and echocardiography, IRVF was assessed at baseline and 48 h after the administration of diuretic treatment. At admission, physical examination and echocardiography revealed signs of intravascular congestion (jugular venous distension and severely dilated inferior vena cava). In addition, a significant increase in serum creatinine from 1.23 to 1.81 mg/dL was noted without signs of hypoperfusion at clinical evaluation. At baseline, intrarenal Doppler ultrasonography showed a monophasic IRVF pattern indicating a severely elevated interstitial renal pressure. After aggressive decongestion, a dynamic behaviour was found in IRVF changing from monophasic to biphasic pattern in parallel with an improvement in clinical parameters and renal function (serum creatinine changed from 1.81 to 1.44 mg/dL). In this case of a patient with AHF and WRF, IRVF changed after aggressive decongestion in agreement with clinical evolution. According to these findings, this technique could provide valuable information for identifying patients with a 'congestion kidney failure' phenotype. Further studies are needed confirming this observation and evaluating the potential role of this technique for guiding decongestive therapy in patients with AHF and WRF.
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