1989
Hematopoiesis in vitro coexists with natural killer lymphocytes.
Niemeyer C, Sieff C, Smith B, Ault K, Nathan D. Hematopoiesis in vitro coexists with natural killer lymphocytes. Blood 1989, 74: 2376-82. PMID: 2529928, DOI: 10.1182/blood.v74.7.2376.bloodjournal7472376.Peer-Reviewed Original ResearchConceptsBlood NK cellsNatural killerNK cellsInterleukin-2Colony formationMarrow progenitorsInhibition of MyeloidK562 target cellsNatural killer lymphocytesCell populationsCD16 positive lymphocytesMarrow cell populationsPositive lymphocytesHematopoietic progenitor cellsKiller lymphocytesCell ratioProgenitor cell populationsLymphocytesTarget cellsProgenitor cellsCell sorterInhibitionHuman hematopoiesisDisparate findingsCell lineagesA large proportion of T lymphocytes lack CD5 expression after bone marrow transplantation.
Bierer B, Burakoff S, Smith B. A large proportion of T lymphocytes lack CD5 expression after bone marrow transplantation. Blood 1989, 73: 1359-66. PMID: 2467708, DOI: 10.1182/blood.v73.5.1359.bloodjournal7351359.Peer-Reviewed Original ResearchMeSH KeywordsAnimalsAntibodies, MonoclonalAntigens, DifferentiationAntigens, Differentiation, T-LymphocyteBone Marrow TransplantationCalciumCD3 ComplexCD5 AntigensCytoplasmCytotoxicity, ImmunologicGraft vs Host DiseaseHumansImmunologic Deficiency SyndromesInterleukin-2Leukocyte CountMicePhenotypeReceptors, Antigen, T-CellT-Lymphocytes, CytotoxicConceptsBone marrow transplantationCD5 expressionMarrow transplantationT cellsAllogeneic bone marrow transplantationFrequency of CD3Major histocompatibility complex compatibilityT-cell depletionPercent of CD8Expression of CD5Presence of graftBMT patientsTotal CD3Host diseaseInterstitial pneumonitisPreparative regimenPeripheral bloodT lymphocytesB cellsCD3Lectin stimulationPatientsNormal populationTransplantationCD5Vascular endothelial cells enhance T cell responses by markedly augmenting IL-2 concentrations
Guinan E, Smith B, Doukas J, Miller R, Pober J. Vascular endothelial cells enhance T cell responses by markedly augmenting IL-2 concentrations. Cellular Immunology 1989, 118: 166-177. PMID: 2562928, DOI: 10.1016/0008-8749(89)90366-3.Peer-Reviewed Original ResearchConceptsPeripheral blood mononuclear cellsIL-2 concentrationsPolyclonal mitogen phytohemagglutininT cell responsesEndothelial cellsBlood monocytesUnfractionated peripheral blood mononuclear cellsCell responsesPrimary allogeneic responseSuboptimal PHA concentrationsExogenous IL-2Blood mononuclear cellsT cell populationsRecombinant IL-1Cultured human endothelial cellsDermal fibroblastsIL-2 synthesisVascular endothelial cellsQuantity of antigenHuman endothelial cellsAllogeneic responseMitogen phytohemagglutininMononuclear cellsIL-2Presence of EC
1986
Long-lasting deficit of functional T cell precursors in human bone marrow transplant recipients revealed by limiting dilution methods.
Rozans MK, Smith BR, Burakoff SJ, Miller RA. Long-lasting deficit of functional T cell precursors in human bone marrow transplant recipients revealed by limiting dilution methods. The Journal Of Immunology 1986, 136: 4040-8. PMID: 2939139, DOI: 10.4049/jimmunol.136.11.4040.Peer-Reviewed Original ResearchMeSH KeywordsAdolescentAdultBone Marrow TransplantationChildChild, PreschoolClone CellsFlow CytometryHematopoietic Stem CellsHumansImmunologic Deficiency SyndromesInfantInfant, NewbornInterleukin-2Leukocyte CountLymphocyte ActivationLymphocyte Culture Test, MixedTime FactorsT-LymphocytesT-Lymphocytes, CytotoxicT-Lymphocytes, Helper-InducerConceptsBone marrow transplantationBMT patientsHuman bone marrow transplant recipientsAllogeneic bone marrow transplantationBone marrow transplant recipientsNormal levelsResidual immune dysfunctionT cell frequenciesMarrow transplant recipientsDilution methodT cell precursorsNear-normal levelsTransplant recipientsBMT recipientsImmune dysfunctionMarrow transplantationPrecursor frequencyLeu-3Immune functionNormal controlsPatientsLeu-2Cell frequencyDecreased frequencyCell precursors