2023
Efficacy of Dapagliflozin According to Heart Rate: A Patient-Level Pooled Analysis of DAPA-HF and DELIVER
Kondo T, Butt J, Curtain J, Jhund P, Docherty K, Claggett B, Vaduganathan M, Bachus E, Hernandez A, Lam C, Inzucchi S, Martinez F, de Boer R, Kosiborod M, Desai A, Køber L, Ponikowski P, Sabatine M, Solomon S, McMurray J. Efficacy of Dapagliflozin According to Heart Rate: A Patient-Level Pooled Analysis of DAPA-HF and DELIVER. Circulation Heart Failure 2023, 16: e010898. PMID: 37886880, DOI: 10.1161/circheartfailure.123.010898.Peer-Reviewed Original ResearchConceptsLeft ventricular ejection fractionReduced ejection fractionVentricular ejection fractionPatient-level pooled analysisBenefit of dapagliflozinEjection fractionHeart failureAtrial fibrillationBaseline heart rateSinus rhythmHeart ratePrimary outcomeDAPA-HFCardiovascular deathPooled analysisHR rangeEfficacy of dapagliflozinEffect of dapagliflozinHeart failure phenotypeHigher heart rateCardiovascular eventsHazard ratioHigh riskFailure phenotypePatients
2022
Classic and Novel Mechanisms of Diuretic Resistance in Cardiorenal Syndrome
Cox ZL, Rao VS, Testani JM. Classic and Novel Mechanisms of Diuretic Resistance in Cardiorenal Syndrome. Kidney360 2022, 3: 954-967. PMID: 36128483, PMCID: PMC9438407, DOI: 10.34067/kid.0006372021.Commentaries, Editorials and LettersConceptsCardiorenal syndromeDiuretic resistanceSodium avidityAcute decompensated heart failureDecompensated heart failureRenal sodium avidityHeart failure phenotypeResistance mechanismsDiuretic therapyHeart failureFailure populationNovel mechanismMultiple etiologiesGlomerular filtrationTherapeutic strategiesFailure phenotypeSyndromeTranslate findingsAviditySpecific transportersTherapyEtiologyPopulationRecent literature
2020
Altered Hemodynamics and End-Organ Damage in Heart Failure
Verbrugge FH, Guazzi M, Testani JM, Borlaug BA. Altered Hemodynamics and End-Organ Damage in Heart Failure. Circulation 2020, 142: 998-1012. PMID: 32897746, PMCID: PMC7482031, DOI: 10.1161/circulationaha.119.045409.Peer-Reviewed Original ResearchConceptsHeart failureHemodynamic derangementsHemodynamic perturbationsElevated cardiac filling pressuresReduced cardiac outputCardiac filling pressuresEnd-organ damagePulmonary vascular diseaseHeart failure phenotypeMultiple organ systemsCapillary stress failureDevelopment of abnormalitiesCardiogenic shockHemodynamic abnormalitiesRenal functionEjection fractionClinical outcomesPulmonary congestionVenous capacityCardiac outputPericardial constraintVascular diseaseChronic diseasesFilling pressureVentilatory control
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