1993
Expression of parathyroid hormone-related protein in the rat glomerulus and tubule during recovery from renal ischemia.
Soifer N, Van Why S, Ganz M, Kashgarian M, Siegel N, Stewart A. Expression of parathyroid hormone-related protein in the rat glomerulus and tubule during recovery from renal ischemia. Journal Of Clinical Investigation 1993, 92: 2850-2857. PMID: 8254039, PMCID: PMC288486, DOI: 10.1172/jci116905.Peer-Reviewed Original ResearchMeSH KeywordsActinsAmino Acid IsomerasesAnimalsBlotting, NorthernCarrier ProteinsGene ExpressionImmunohistochemistryIschemiaKidneyKidney GlomerulusKidney TubulesMaleParathyroid Hormone-Related ProteinPeptidylprolyl IsomeraseProtein BiosynthesisProteinsRatsRats, Sprague-DawleyReceptors, Parathyroid HormoneReference ValuesRenal ArteryReperfusionRNA, MessengerConceptsHormone-related proteinMesangial cellsTubular cellsAcute renal ischemic injuryBilateral renal artery occlusionMale Sprague-Dawley ratsParathyroid hormone-related proteinAutocrine/paracrine fashionPTHrP mRNA levelsRenal artery occlusionRenal ischemic injuryMRNA levelsSprague-Dawley ratsDistal tubular cellsSham-operated animalsCyclophilin mRNA levelsProximal tubular cellsLocalization of PTHrPCultured mesangial cellsLocal growth factorsAdult rat kidneyArtery occlusionGlomerular epithelial cellsRenal injuryIschemic injury
1988
Metabolic and functional consequences of inhibiting adenosine deaminase during renal ischemia in rats.
Stromski M, van Waarde A, Avison M, Thulin G, Gaudio K, Kashgarian M, Shulman R, Siegel N. Metabolic and functional consequences of inhibiting adenosine deaminase during renal ischemia in rats. Journal Of Clinical Investigation 1988, 82: 1694-1699. PMID: 3263396, PMCID: PMC442739, DOI: 10.1172/jci113782.Peer-Reviewed Original ResearchConceptsPostischemic restorationFunctional recoveryBilateral renal artery occlusionAdenosine deaminaseResidual nucleotide poolRenal artery occlusionEnd of ischemiaMin of ischemiaMin of reflowArtery occlusionAdenine nucleotide poolPostischemic recoveryRenal ischemiaNucleotide poolIschemia resultsUntreated animalsDegradation of ATPIschemiaBasal levelsRenal ATPATP levelsInitial recoveryRatsInsultFunctional consequences
1980
ISCHEMIC ACUTE RENAL FAILURE: ENHANCED RECOVERY OF SUPERFICIAL NEPHRON FUNCTION BY ATP-MGCL2
Gaudio K, Sieqel N, Chaudry I, Kashgarian M. ISCHEMIC ACUTE RENAL FAILURE: ENHANCED RECOVERY OF SUPERFICIAL NEPHRON FUNCTION BY ATP-MGCL2. Pediatric Research 1980, 14: 1017-1017. DOI: 10.1203/00006450-198008000-00261.Peer-Reviewed Original ResearchSuperficial single nephron GFRWhole kidney GFRIntratubular obstructionATP-MgCl2Superficial nephronsHemodynamic factorsBilateral renal artery occlusionCortical blood flow distributionTotal renal blood flowControl valuesIschemic renal insultRenal artery occlusionRenal blood flowSingle nephron GFRBlood flow distributionProximal tubular pressureRenal insultArtery occlusionNephron GFREnhancement of recoveryKidney GFRBlood flowEnhanced recoveryNormal valuesGFRISCHEMIC ACUTE RENAL FAILURE: DELAYED INFUSION OF ATP-MGCL2
Siegel N, Taylor M, Gaudio K, Chaudry I, Kashgarian M. ISCHEMIC ACUTE RENAL FAILURE: DELAYED INFUSION OF ATP-MGCL2. Pediatric Research 1980, 14: 1017-1017. DOI: 10.1203/00006450-198008000-00262.Peer-Reviewed Original ResearchMinutes of ischemiaATP-MgCl2Normal salineIschemic insultBilateral renal artery occlusionModerate ischemic insultRenal artery occlusionInfusion of ATPDelayed infusionRenal injuryArtery occlusionIschemic injuryRenal ischemiaInitial injuryInitial insultInulin clearanceInjuryIschemiaInfusionInsultCINAnimalsMinutesHoursPrevious studies