2020
Subaortic Membranes in Patients With Hereditary Hemorrhagic Telangiectasia and Liver Vascular Malformations
Kim AS, Henderson KJ, Pawar S, Kim MJ, Punjani S, Pollak JS, Fahey JT, Garcia‐Tsao G, Sugeng L, Young LH. Subaortic Membranes in Patients With Hereditary Hemorrhagic Telangiectasia and Liver Vascular Malformations. Journal Of The American Heart Association 2020, 9: e016197. PMID: 33054561, PMCID: PMC7763373, DOI: 10.1161/jaha.120.016197.Peer-Reviewed Original ResearchMeSH KeywordsActivin Receptors, Type IICardiac Output, HighDiscrete Subaortic StenosisEchocardiographyFemaleHeart Defects, CongenitalHeart FailureHumansLiverMaleMiddle AgedMutationPrognosisRetrospective StudiesSurvival AnalysisTelangiectasia, Hereditary HemorrhagicUnited StatesVascular MalformationsConceptsHigh-output cardiac failureHereditary hemorrhagic telangiectasiaLeft ventricular outflow tractVentricular outflow tractHemorrhagic telangiectasiaMild obstructionSubaortic membraneVascular malformationsOutflow tractActivin receptor-like kinase 1 mutationsHereditary hemorrhagic telangiectasia patientsLiver vascular malformationsMild aortic insufficiencyPulmonary artery pressureRight heart catheterizationCohort of patientsRetrospective observational analysisHigh cardiac outputKinase 1 mutationsArtery pressureHeart catheterizationPulmonary hypertensionAortic insufficiencyBackground PatientsTricuspid regurgitation
2019
Cardiomyocyte d-dopachrome tautomerase protects against heart failure
Ma Y, Su KN, Pfau D, Rao VS, Wu X, Hu X, Leng L, Du X, Piecychna M, Bedi K, Campbell SG, Eichmann A, Testani JM, Margulies KB, Bucala R, Young LH. Cardiomyocyte d-dopachrome tautomerase protects against heart failure. JCI Insight 2019, 4: e128900. PMID: 31484822, PMCID: PMC6777911, DOI: 10.1172/jci.insight.128900.Peer-Reviewed Original ResearchMeSH KeywordsAnimalsCalciumCardiomegalyCytokinesDisease Models, AnimalEchocardiographyGene DeletionGene ExpressionGenetic Predisposition to DiseaseHeart FailureHumansIntramolecular OxidoreductasesMaleMAP Kinase Kinase KinasesMiceMice, Inbred C57BLMice, KnockoutMyocytes, CardiacRecombinant ProteinsSignal TransductionTranscriptomeVascular Endothelial Growth Factor AConceptsTransverse aortic constrictionHeart failureRecombinant DDTConnective tissue growth factor expressionTissue growth factor expressionMore interstitial fibrosisAdvanced heart failureCardiac pressure overloadExperimental heart failureCardiac contractile dysfunctionLittermate control miceSmad-2 activationGrowth factor expressionSarcoplasmic reticulum calcium ATPaseMacrophage migration inhibitory factor (MIF) familyReticulum calcium ATPasePulmonary edemaCardiac dilatationContractile dysfunctionControl miceInterstitial fibrosisPressure overloadAntifibrotic actionAortic constrictionLow VEGF
2004
Diastolic Function and Type 1 Diabetes
Young LH. Diastolic Function and Type 1 Diabetes. Diabetes Care 2004, 27: 2081-2083. PMID: 15277445, DOI: 10.2337/diacare.27.8.2081.Commentaries, Editorials and Letters
1990
Metabolic and functional effects of perfluorocarbon distal perfusion during coronary angioplasty
Young L, Jaffe C, Revkin J, McNulty P, Cleman M. Metabolic and functional effects of perfluorocarbon distal perfusion during coronary angioplasty. The American Journal Of Cardiology 1990, 65: 986-990. PMID: 2327360, DOI: 10.1016/0002-9149(90)91001-m.Peer-Reviewed Original ResearchConceptsGreat cardiac veinDistal perfusionLactate releaseEjection fractionVentricular functionCardiac veinBalloon inflationLeft ventricular ejection fractionDistal coronary perfusionMyocardial lactate metabolismVentricular ejection fractionMyocardial lactate releaseRegional contractile functionNet lactate extractionNet lactate releaseCoronary angioplastyLeft anteriorCoronary perfusionLactate extractionContractile functionPerfusionAngioplastyLactate concentrationLactate metabolismOxygenated perfluorocarbon