2024
Inhibition of NF-κB Activation Improves Non-Nitric Oxide-Mediated Cutaneous Microvascular Function in Reproductive-Aged Healthy Women
Content V, Williams A, Stachenfeld N, Alexander L. Inhibition of NF-κB Activation Improves Non-Nitric Oxide-Mediated Cutaneous Microvascular Function in Reproductive-Aged Healthy Women. Physiology 2024, 39: 562. DOI: 10.1152/physiol.2024.39.s1.562.Peer-Reviewed Original ResearchInhibition of NF-kB activationCutaneous microvascular functionNF-kB activationMicrovascular functionHealthy womenCutaneous vascular conductanceSalsalate treatmentInflammatory mechanismsImpact of systemic inflammationIncreasing concentrations of acetylcholineIntradermal microdialysis fibersDose-response protocolCohort of patientsMeasuring cutaneous blood flowPlacebo-controlled designHealthy control subjectsSystemic vascular functionNO synthase inhibitorHuman cutaneous circulationLaser-Doppler flowmetryDose-response curveRed blood cell fluxBlood cell fluxCardiovascular disease riskVentral forearm skin
2010
Strategic Plan for Lung Vascular Research
Erzurum S, Rounds SI, Stevens T, Aldred M, Aliotta J, Archer SL, Asosingh K, Balaban R, Bauer N, Bhattacharya J, Bogaard H, Choudhary G, Dorn GW, Dweik R, Fagan K, Fallon M, Finkel T, Geraci M, Gladwin MT, Hassoun PM, Humbert M, Kaminski N, Kawut SM, Loscalzo J, McDonald D, McMurtry IF, Newman J, Nicolls M, Rabinovitch M, Shizuru J, Oka M, Polgar P, Rodman D, Schumacker P, Stenmark K, Tuder R, Voelkel N, Sullivan E, Weinshilboum R, Yoder MC, Zhao Y, Gail D, Moore TM. Strategic Plan for Lung Vascular Research. American Journal Of Respiratory And Critical Care Medicine 2010, 182: 1554-1562. PMID: 20833821, PMCID: PMC3029941, DOI: 10.1164/rccm.201006-0869ws.Peer-Reviewed Original ResearchConceptsPulmonary hypertensive diseasesSystemic vascular functionRight heart functionPulmonary vascular diseaseTranslational researchDisease-modifying therapiesCare of patientsHypertensive diseaseBlood InstituteLung diseaseVascular functionLung circulationLung vasculatureNational HeartVascular diseaseClinical studiesHeart functionTranslational findingsMultidisciplinary expertsDiseaseBiologic relationshipVascular biologyExtramural research programsVascular researchRegulatory signaling
2004
Relationship Between Carbamoyl-Phosphate Synthetase Genotype and Systemic Vascular Function
Summar ML, Gainer JV, Pretorius M, Malave H, Harris S, Hall LD, Weisberg A, Vaughan DE, Christman BW, Brown NJ. Relationship Between Carbamoyl-Phosphate Synthetase Genotype and Systemic Vascular Function. Hypertension 2004, 43: 186-191. PMID: 14718356, DOI: 10.1161/01.hyp.0000112424.06921.52.Peer-Reviewed Original ResearchConceptsForearm blood flowNitric oxide metabolite concentrationsNitric oxide metabolitesBlood flowOxide metabolitesNitric oxide-mediated vasodilationVascular smooth muscle reactivityAllele homozygotesTissue-type plasminogen activator antigenSystemic vascular functionSmooth muscle reactivityPlasminogen activator antigenC allele homozygotesNitric oxide productionMetabolite concentrationsVasodilator responseBrachial arteryMuscle reactivityVascular functionHealthy subjectsBlood samplesSodium nitroprussideC alleleOxide productionCarbamoyl phosphate synthetase 1
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