2007
Specificity and Regulation of Renal Sulfate Transporters
Markovich D, Aronson PS. Specificity and Regulation of Renal Sulfate Transporters. Annual Review Of Physiology 2007, 69: 361-375. PMID: 17002596, DOI: 10.1146/annurev.physiol.69.040705.141319.Peer-Reviewed Reviews, Practice Guidelines, Standards, and Consensus StatementsConceptsProximal tubulesSulfate reabsorptionProximal tubular cellsRenal expressionApical membraneKnockout mouse studiesTubular cellsNet reabsorptionNaCl reabsorptionMouse studiesMajor roleReabsorptionSulfate homeostasisCFEXKidneyFamily membersPhysiological roleCurrent dataNormal cellular functionBasolateral membraneTubulesSLC26 family members
1985
Paradoxical effects of pyrazinoate and nicotinate on urate transport in dog renal microvillus membranes.
Guggino SE, Aronson PS. Paradoxical effects of pyrazinoate and nicotinate on urate transport in dog renal microvillus membranes. Journal Of Clinical Investigation 1985, 76: 543-547. PMID: 4031062, PMCID: PMC423858, DOI: 10.1172/jci112004.Peer-Reviewed Original ResearchConceptsLow dosesParadoxical effectUrate transportProximal tubular cellsUrate accumulationRenal urate excretionCanine renal cortexUrate retentionInside-alkaline pH gradientUricosuric drugsUrate reabsorptionRenal cortexUrate excretionTubular cellsHigh dosesCotransport pathwayDosesSame transport systemPyrazinoateLuminal membraneUrate uptakeAnion exchange pathwayDrugsMicrovillus membrane vesicles
1982
Modifier role of internal H+ in activating the Na+–H+ exchanger in renal microvillus membrane vesicles
Aronson P, Nee J, Suhm M. Modifier role of internal H+ in activating the Na+–H+ exchanger in renal microvillus membrane vesicles. Nature 1982, 299: 161-163. PMID: 7110335, DOI: 10.1038/299161a0.Peer-Reviewed Original Research