2024
Serial direct sodium removal in patients with heart failure and diuretic resistance
Rao V, Ivey‐Miranda J, Cox Z, Moreno‐Villagomez J, Ramos‐Mastache D, Neville D, Balkcom N, Asher J, Bellumkonda L, Bigvava T, Shaburishvili T, Bartunek J, Wilson F, Finkelstein F, Maulion C, Turner J, Testani J. Serial direct sodium removal in patients with heart failure and diuretic resistance. European Journal Of Heart Failure 2024, 26: 1215-1230. PMID: 38556717, DOI: 10.1002/ejhf.3196.Peer-Reviewed Original ResearchConceptsDiuretic resistanceCardiorenal syndromeHeart failureLoop diureticsDiuretic withdrawalHigh-dose loop diureticsN-terminal pro-B-type natriuretic peptidePro-B-type natriuretic peptideGrowth differentiation factor 15Carbohydrate antigen 125Differentiation factor 15Sodium removalRandomized controlled studyCardiorenal parametersDiuretic doseSoluble ST2Natriuretic peptideMedian timeDiuretic responseKidney injuryPeritoneal membraneElectrolyte handlingKidney functionDiureticsInterleukin-6
2021
Natriuretic Equation to Predict Loop Diuretic Response in Patients With Heart Failure
Rao VS, Ivey-Miranda JB, Cox ZL, Riello R, Griffin M, Fleming J, Soucier R, Sangkachand P, O'Brien M, LoRusso F, D'Ambrosi J, Churchwell K, Mahoney D, Bellumkonda L, Asher JL, Maulion C, Turner JM, Wilson FP, Collins SP, Testani JM. Natriuretic Equation to Predict Loop Diuretic Response in Patients With Heart Failure. Journal Of The American College Of Cardiology 2021, 77: 695-708. PMID: 33573739, PMCID: PMC8114781, DOI: 10.1016/j.jacc.2020.12.022.Peer-Reviewed Original ResearchConceptsLoop diuretic administrationDiuretic therapyNatriuretic responseDiuretic administrationSodium outputAcute decompensated heart failureDecompensated heart failureHeart failure admissionsDaily urine outputSpot urine samplesNet fluid outputNet fluid lossPathway cohortHeart failureLoop diureticsUrine outputDiuretic responseResidual congestionFluid outputTherapyCohortWeight lossAdditional studiesUrine samplesExcellent discrimination
2020
Effect of Loop Diuretics on the Fractional Excretion of Urea in Decompensated Heart Failure
Cox ZL, Sury K, Rao VS, Ivey-Miranda JB, Griffin M, Mahoney D, Gomez N, Fleming JH, Inker LA, Coca SG, Turner J, Wilson FP, Testani JM. Effect of Loop Diuretics on the Fractional Excretion of Urea in Decompensated Heart Failure. Journal Of Cardiac Failure 2020, 26: 402-409. PMID: 32007554, PMCID: PMC7798124, DOI: 10.1016/j.cardfail.2020.01.019.Peer-Reviewed Original ResearchConceptsAcute kidney injuryFractional excretionHeart failureLoop diureticsDecompensated heart failureFurosemide equivalentsKidney injuryProspective cohortDiuretic administrationDiuretic responsePeak diuresisDiuretic effectFEUreaDiureticsPatientsDiagnostic superiorityHospital systemExcretionMagnitude of changeDegree of changeBaselineDistribution of changesFENaDiuresisFailureFirst-in-Human Experience With Peritoneal Direct Sodium Removal Using a Zero-Sodium Solution
Rao VS, Turner JM, Griffin M, Mahoney D, Asher J, Jeon S, Yoo PS, Boutagy N, Feher A, Sinusas A, Wilson FP, Finkelstein F, Testani JM. First-in-Human Experience With Peritoneal Direct Sodium Removal Using a Zero-Sodium Solution. Circulation 2020, 141: 1043-1053. PMID: 31910658, PMCID: PMC7331276, DOI: 10.1161/circulationaha.119.043062.Peer-Reviewed Original ResearchConceptsStandard PD solutionExperimental heart failureHeart failurePD solutionsAdverse eventsPeritoneal dialysisSignificant discomfortSodium removalEnd-stage renal diseaseEnd pointElevated right atrial pressureMaintenance of euvolemiaPrimary end pointSecondary end pointsRight atrial pressureHuman proofLoss of responseSolute removalPorcine experimentsAtrial pressureRenal diseaseLoop diureticsSerum electrolytesHuman studiesPeritoneal membrane
2019
Serum and Urine Albumin and Response to Loop Diuretics in Heart Failure
Charokopos A, Griffin M, Rao VS, Inker L, Sury K, Asher J, Turner J, Mahoney D, Cox ZL, Wilson FP, Testani JM. Serum and Urine Albumin and Response to Loop Diuretics in Heart Failure. Clinical Journal Of The American Society Of Nephrology 2019, 14: cjn.11600918. PMID: 31010938, PMCID: PMC6500945, DOI: 10.2215/cjn.11600918.Peer-Reviewed Original ResearchConceptsDiuretic efficiencyHeart failureAlbumin levelsDiuretic excretionDiuretic doseInpatient cohortUrine albuminOutpatient cohortLoop diureticsIL-6Higher urine albuminLoop diuretic doseUrinary albumin levelsLow serum albuminPlasma IL-6Heart failure cohortHuman heart failureDiuretic resistanceSuccessful decongestionDiuretic treatmentSystemic inflammationKidney functionSite of actionSerum albuminSodium output
2018
Outcomes Associated With a Strategy of Adjuvant Metolazone or High‐Dose Loop Diuretics in Acute Decompensated Heart Failure: A Propensity Analysis
Brisco‐Bacik M, Maaten J, Houser SR, Vedage NA, Rao V, Ahmad T, Wilson FP, Testani JM. Outcomes Associated With a Strategy of Adjuvant Metolazone or High‐Dose Loop Diuretics in Acute Decompensated Heart Failure: A Propensity Analysis. Journal Of The American Heart Association 2018, 7: e009149. PMID: 30371181, PMCID: PMC6222930, DOI: 10.1161/jaha.118.009149.Peer-Reviewed Original ResearchMeSH KeywordsAcute DiseaseAgedCause of DeathDose-Response Relationship, DrugFemaleFollow-Up StudiesGuideline AdherenceHeart FailureHumansInjections, IntravenousMaleMetolazonePropensity ScoreRetrospective StudiesSodium Chloride Symporter InhibitorsSodium Potassium Chloride Symporter InhibitorsStroke VolumeSurvival RateTreatment OutcomeUnited StatesConceptsHigh-dose loop diureticsAcute decompensated heart failureDecompensated heart failureLoop diureticsRenal functionPropensity adjustmentHeart failureCommon electronic medical recordIntravenous loop diureticsLoop diuretic dosePropensity-adjusted analysisThiazide-type diureticsControl trial dataElectronic medical recordsDiuretic doseDiuretic strategyCause mortalityAdverse eventsBaseline characteristicsSecondary outcomesThiazide diureticsResults PatientsDischarge diagnosisMedical recordsDiuretics
2017
Compensatory Distal Reabsorption Drives Diuretic Resistance in Human Heart Failure
Rao VS, Planavsky N, Hanberg JS, Ahmad T, Brisco-Bacik MA, Wilson FP, Jacoby D, Chen M, Tang WHW, Cherney DZI, Ellison DH, Testani JM. Compensatory Distal Reabsorption Drives Diuretic Resistance in Human Heart Failure. Journal Of The American Society Of Nephrology 2017, 28: 3414-3424. PMID: 28739647, PMCID: PMC5661276, DOI: 10.1681/asn.2016111178.Peer-Reviewed Original ResearchConceptsDiuretic resistanceHeart failureLoop diureticsSodium reabsorptionHigh-dose loop diureticsDistal tubular sodium reabsorptionSodium exitLoop diuretic administrationTubular sodium reabsorptionHuman heart failureFurosemide equivalentsDistal reabsorptionConsecutive patientsFractional excretionSodium handlingDiuretic administrationProximal tubularControl cohortCare centerTreatment strategiesAnimal modelsDiureticsNet sodiumFENaTubular locationAn exploratory analysis of the competing effects of aggressive decongestion and high-dose loop diuretic therapy in the DOSE trial
Hanberg JS, Tang WH, Wilson FP, Coca SG, Ahmad T, Brisco MA, Testani JM. An exploratory analysis of the competing effects of aggressive decongestion and high-dose loop diuretic therapy in the DOSE trial. International Journal Of Cardiology 2017, 241: 277-282. PMID: 28392080, PMCID: PMC5471358, DOI: 10.1016/j.ijcard.2017.03.114.Peer-Reviewed Original ResearchConceptsHigh-dose loop diureticsDiuretic doseAggressive decongestionDose trialFluid outputLoop diureticsHigh-dose loop diuretic therapyDose-related adverse effectsAdverse effectsLoop diuretic doseLoop diuretic therapyHeart failure patientsNet fluid balanceNet fluid outputRate of deathEmergency department (ED) visitationPotential beneficial effectsHypothesis-generating observationsEffective decongestionDiuretic therapyFailure patientsAdverse outcomesDecongestive effectImproved outcomesFluid balanceRenal tubular resistance is the primary driver for loop diuretic resistance in acute heart failure
Maaten J, Rao VS, Hanberg JS, Wilson F, Bellumkonda L, Assefa M, Broughton J, D'Ambrosi J, Tang W, Damman K, Voors AA, Ellison DH, Testani JM. Renal tubular resistance is the primary driver for loop diuretic resistance in acute heart failure. European Journal Of Heart Failure 2017, 19: 1014-1022. PMID: 28105769, PMCID: PMC6231236, DOI: 10.1002/ejhf.757.Peer-Reviewed Original ResearchConceptsAcute heart failureLoop diuretic resistanceRenal tubular responseDiuretic resistanceDiuretic responseRenal tubulesAHF patientsHeart failureLoop diureticsTubular responseRenal tubular resistanceBumetanide doseEffective decongestionIntravenous bumetanidePoor outcomeUrine collectionTubular resistanceSum of defectsPatient variabilityUrea clearancePatientsCommon barriersDoseClearanceDiuretics
2016
Hypochloremia and Diuretic Resistance in Heart Failure
Hanberg JS, Rao V, Maaten J, Laur O, Brisco MA, Wilson F, Grodin JL, Assefa M, Broughton J, Planavsky NJ, Ahmad T, Bellumkonda L, Tang WH, Parikh CR, Testani JM. Hypochloremia and Diuretic Resistance in Heart Failure. Circulation Heart Failure 2016, 9: e003180. PMID: 27507113, PMCID: PMC4988527, DOI: 10.1161/circheartfailure.116.003180.Peer-Reviewed Original ResearchMeSH KeywordsAgedAged, 80 and overBiomarkersChloridesConnecticutCross-Sectional StudiesDown-RegulationDrug ResistanceFemaleFurosemideHeart FailureHumansKidneyMaleMiddle AgedOdds RatioPilot ProjectsProspective StudiesReninRisk FactorsSodiumSodium Potassium Chloride Symporter InhibitorsTime FactorsTreatment OutcomeConceptsDiuretic resistanceHeart failureCare centerSerum chloridePro-B-type natriuretic peptideChloride supplementationRenal free water excretionB-type natriuretic peptidePoor diuretic responsePlasma renin activityPlasma renin concentrationHeart failure cohortFree water excretionRecent epidemiological studiesBasic science evidenceBlood urea nitrogenSerum chloride levelsFurosemide equivalentsNeurohormonal activationRenin activityRenin concentrationCreatinine ratioLoop diureticsDiuretic responseSerum sodium