2002
Activation Time Course of Activator Protein-1 and Effect of Proline Dithiocarbamate During Ischemia-Reperfusion in Rat Skeletal Muscle
Lefler SR, Lille ST, Huemer G, Tucker R, Murray T, Schoeller T, Mulligan DC. Activation Time Course of Activator Protein-1 and Effect of Proline Dithiocarbamate During Ischemia-Reperfusion in Rat Skeletal Muscle. Annals Of Plastic Surgery 2002, 49: 654-659. PMID: 12461450, DOI: 10.1097/00000637-200212000-00016.Peer-Reviewed Original ResearchConceptsIschemia-reperfusion injuryAP-1 activationRat skeletal muscleActivator protein-1Nuclear factor-kappa B (NF-κB) inhibitorSkeletal muscleAP-1Hours of reperfusionProtein 1Proline dithiocarbamateIschemia reperfusionIschemic periodIntravenous administrationBiphasic patternB inhibitorReperfusionActivation time courseFurther elucidationTime courseInjuryExpression of genesPerfusionDeleterious effectsMuscleHours
2001
Inhibition of the initial wave of NF‐κB activity in rat muscle reduces ischemia/reperfusion injury
Lille S, Lefler S, Mowlavi A, Suchy H, Boyle E, Farr A, Su C, Frank N, Mulligan D. Inhibition of the initial wave of NF‐κB activity in rat muscle reduces ischemia/reperfusion injury. Muscle & Nerve 2001, 24: 534-541. PMID: 11268026, DOI: 10.1002/mus.1037.Peer-Reviewed Original ResearchConceptsIschemia/reperfusion injuryNF-kappaB activationNF-kappaBReperfusion injurySevere ischemic stressNF-κB activityNuclear factor-kappaBRat skeletal muscleR injuryEarly reperfusionIschemic periodNeutrophil activityMuscle edemaIntravenous administrationIschemic stressReperfusionTherapeutic interventionsFactor-kappaBMuscle survivalIncreased percentageBiphasic patternInjurySkeletal muscleRat muscleActivity levels
2000
Matrix metalloproteinase activity is required for activity-induced angiogenesis in rat skeletal muscle
Haas T, Milkiewicz M, Davis S, Zhou A, Egginton S, Brown M, Madri J, Hudlicka O. Matrix metalloproteinase activity is required for activity-induced angiogenesis in rat skeletal muscle. AJP Heart And Circulatory Physiology 2000, 279: h1540-h1547. PMID: 11009439, DOI: 10.1152/ajpheart.2000.279.4.h1540.Peer-Reviewed Original ResearchMeSH KeywordsAnimalsCapillariesCell DivisionDipeptidesElectric StimulationImmunohistochemistryMatrix Metalloproteinase 2Matrix Metalloproteinase InhibitorsMatrix Metalloproteinases, Membrane-AssociatedMetalloendopeptidasesMicroscopy, ElectronMotor ActivityMuscle, SkeletalNeovascularization, PhysiologicProtease InhibitorsRatsRNA, MessengerConceptsMembrane proteinsBasement membrane proteinsEndothelial cell sprout formationRat skeletal muscleSkeletal muscleMatrix metalloproteinasesMembrane type 1Inflammation-mediated angiogenesisPhysiological angiogenesisBasement membraneCell proliferationMMP proteolysisProtein levelsProteolysisSprout formationMajor classesCritical roleProteinMatrix metalloproteinase activityMetalloproteinase activityProliferationAngiogenesisNew capillariesMembraneMMP inhibition
1999
Metabolic control analysis of insulin-stimulated glucose disposal in rat skeletal muscle
Jucker B, Barucci N, Shulman G. Metabolic control analysis of insulin-stimulated glucose disposal in rat skeletal muscle. American Journal Of Physiology 1999, 277: e505-e512. PMID: 10484363, DOI: 10.1152/ajpendo.1999.277.3.e505.Peer-Reviewed Original ResearchConceptsInsulin-stimulated glucose disposalGlucose transport/phosphorylationGlucose disposalHyperinsulinemic clampAwake ratsInfusion protocolGlycogen synthesisSkeletal muscleGlucose infusion rateMuscle glucose disposalSkeletal muscle glucose disposalProtocol IRat skeletal muscleRate of glycolysisInfusion rateHindlimb musclesMajority of controlsPharmacokinetic/Pharmacodynamic Models for Corticosteroid Receptor Down-Regulation and Glutamine Synthetase Induction in Rat Skeletal Muscle by a Receptor/Gene-Mediated Mechanism 1
Sun Y, McKay L, DuBois D, Jusko W, Almon R. Pharmacokinetic/Pharmacodynamic Models for Corticosteroid Receptor Down-Regulation and Glutamine Synthetase Induction in Rat Skeletal Muscle by a Receptor/Gene-Mediated Mechanism 1. Journal Of Pharmacology And Experimental Therapeutics 1999, 288: 720-728. PMID: 9918581, DOI: 10.1016/s0022-3565(24)38012-7.Peer-Reviewed Original ResearchConceptsRat skeletal muscleMuscle wastingMale adrenalectomized Wistar ratsPK/PD modelSkeletal muscleChronic corticosteroid treatmentAdrenalectomized Wistar ratsGlutamine synthetaseADAPT II programGlucocorticoid receptor densityReceptor down-regulationDown-regulationIndirect response modelCorticosteroid immunosuppressionGlutamine synthetase inductionCorticosteroid treatmentMethylprednisolone pharmacokineticsReceptor densityBolus doseCorticosteroid actionWistar ratsCorticosteroidsFat depositionPharmacokinetic/Pharmacodynamic ModelActivator receptor
1994
The expression of rat brain voltage-sensitive Na+ channel mRNAs in astrocytes
Oh Y, Black J, Waxman S. The expression of rat brain voltage-sensitive Na+ channel mRNAs in astrocytes. Brain Research 1994, 23: 57-65. PMID: 8028484, DOI: 10.1016/0169-328x(94)90211-9.Peer-Reviewed Original ResearchConceptsRat brainChannel mRNAChannel subtypesCultured spinal cordSkeletal muscleRat optic nerveNeuronal cell bodiesRegions of CNSSubtype IRat skeletal muscleOptic nervePolymerase chain reactionSpinal cordRat astrocytesDistinct subtypesAstrocytesCell bodiesSubtypesBrainRT-PCRSubtype IIRat tissuesChain reactionRat liverReverse transcription
1989
Primary structure and functional expression of a mammalian skeletal muscle sodium channel
Trimmer J, Cooperman S, Tomiko S, Zhou J, Crean S, Boyle M, Kalen R, Sheng Z, Barchi R, Sigworth F, Goodman R, Agnew W, Mandel G. Primary structure and functional expression of a mammalian skeletal muscle sodium channel. Neuron 1989, 3: 33-49. PMID: 2559760, DOI: 10.1016/0896-6273(89)90113-x.Peer-Reviewed Original ResearchConceptsAlpha subunitHomologous domains IAmino acid segmentSodium channelsSkeletal muscle sodium channelsNorthern blot analysisSkeletal muscleMuscle sodium channelsVoltage-sensitive sodium channelsPrimary structureFunctional expressionDomain IAcid segmentNative channelsSynthetic RNAXenopus oocytesRat muscle fibersBlot analysisRat skeletal muscleEel electroplaxRat brainSubunitsMuscle fibersMuscleCDNA
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