2018
The contribution of cross-talk between the cell-surface proteins CD36 and CD47–TSP-1 in osteoclast formation and function
Koduru SV, Sun BH, Walker JM, Zhu M, Simpson C, Dhodapkar M, Insogna KL. The contribution of cross-talk between the cell-surface proteins CD36 and CD47–TSP-1 in osteoclast formation and function. Journal Of Biological Chemistry 2018, 293: 15055-15069. PMID: 30082316, PMCID: PMC6166722, DOI: 10.1074/jbc.ra117.000633.Peer-Reviewed Original ResearchConceptsOsteoclast formationTSP-1Competitive NO synthase inhibitorPro-osteoclastogenic effectAntibody-mediated blockadeNitroarginine methyl esterNO synthase inhibitorNitric Oxide SignalingPTH infusionDifferentiation 47Parathyroid hormoneBone resorptionFemale miceHypercalcemic responseOsteoclast maturationSynthase inhibitorResorptive activitySynthetic agonistsCD36Osteoclast progenitorsMiceInhibitory effectCD47OsteoclastsWT osteoblasts
2009
Dominant role of CD47–thrombospondin-1 interactions in myeloma-induced fusion of human dendritic cells: implications for bone disease
Kukreja A, Radfar S, Sun BH, Insogna K, Dhodapkar MV. Dominant role of CD47–thrombospondin-1 interactions in myeloma-induced fusion of human dendritic cells: implications for bone disease. Blood 2009, 114: 3413-3421. PMID: 19661269, PMCID: PMC2765677, DOI: 10.1182/blood-2009-03-211920.Peer-Reviewed Original ResearchConceptsHuman dendritic cellsDendritic cellsBone diseaseOsteoclast formationRecruitment of DCsTumor cellsThrombospondin-1Regulation of CD47Tumor-associated osteoclastsNuclear factor-kappaB ligandMyeloma bone diseaseLytic bone diseasePrimary myeloma cellsHuman osteoclast formationMyeloma cell linesParathyroid hormoneKappaB ligandReceptor activatorOsteoclast precursorsGiant cellsSpontaneous cell-cell fusionMyeloma cellsHuman monocytesMyeloma tumorsDisease
2001
IL-6 negatively regulates IL-11 production in vitro and in vivo.
Nakchbandi I, Mitnick M, Masiukiewicz U, Sun B, Insogna K. IL-6 negatively regulates IL-11 production in vitro and in vivo. Endocrinology 2001, 142: 3850-6. PMID: 11517162, DOI: 10.1210/endo.142.9.8368.Peer-Reviewed Original ResearchConceptsIL-11 productionIL-6IL-11Bone resorptionOsteoclast formationIL-6 levelsIL-11 levelsFive-day infusionPTH excessPrimary hyperparathyroidismSerum levelsResorptive responseParathyroid adenomectomyPretreatment of cellsHuman PTHNonimmune serumPTHEffect of pretreatmentMRNA levelsSteady-state mRNA levelsPatientsCytokinesHuman osteoblast-like cellsResorptionSaos-2 cellsIL-6 Negatively Regulates IL-11 Production in Vitro and in Vivo
Nakchbandi I, Mitnick M, Masiukiewicz U, Sun B, Insogna K. IL-6 Negatively Regulates IL-11 Production in Vitro and in Vivo. Endocrinology 2001, 142: 3850-3856. DOI: 10.1210/en.142.9.3850.Peer-Reviewed Original ResearchCirculating levels of IL-6Levels of IL-6IL-11IL-6Circulating levelsBone resorptionSteady state mRNA levelsOsteoclast formationFive-day infusionHuman PTH-(1-84Pretreatment of cellsIL-11 levelsResponse to PTHIL-11 productionIncreased osteoclast formationIL-6 levelsPTH-(1-84Saos-2 cellsParathyroid adenomectomyDown-regulationProduction in vitroPrimary hyperparathyroidismPTH excessProduction in vivoSerum levels
2000
Parathyroid hormone-related protein induces spontaneous osteoclast formation via a paracrine cascade
Nakchbandi I, Weir E, Insogna K, Philbrick W, Broadus A. Parathyroid hormone-related protein induces spontaneous osteoclast formation via a paracrine cascade. Proceedings Of The National Academy Of Sciences Of The United States Of America 2000, 97: 7296-7300. PMID: 10829073, PMCID: PMC16539, DOI: 10.1073/pnas.110553397.Peer-Reviewed Original ResearchConceptsNumber of osteoclastsEffects of PTHrPOsteoclast formationDF cellsBone resorptionFactor expressionOsteoclastic bone resorptionDental follicle cellsHormone-related proteinOsteoclast differentiation factorStellate reticulum cellsOsteoclastogenesis inhibitory factorCoronal tooth surfacesSpontaneous osteoclast formationParacrine cascadeParathyroid hormoneEruption pathwayReticulum cellsPeripheral skeletonTooth eruptionOsteoclast precursorsPTH/PTHrP.Inhibitory factorFunctional osteoclastsCrypt cells
1998
The Cell-surface Form of Colony-stimulating Factor-1 Is Regulated by Osteotropic Agents and Supports Formation of Multinucleated Osteoclast-like Cells*
Yao G, Sun B, Hammond E, Spencer E, Horowitz M, Insogna K, Weir E. The Cell-surface Form of Colony-stimulating Factor-1 Is Regulated by Osteotropic Agents and Supports Formation of Multinucleated Osteoclast-like Cells*. Journal Of Biological Chemistry 1998, 273: 4119-4128. PMID: 9461606, DOI: 10.1074/jbc.273.7.4119.Peer-Reviewed Original ResearchConceptsColony-stimulating factor-1Osteoclast formationReverse transcriptase-polymerase chain reactionFactor 1Quantitative reverse transcriptase-polymerase chain reactionTumor necrosis factorTranscriptase-polymerase chain reactionOsteoclast-like cellsHematopoietic growth factorsCSF-1 isoformsView of evidenceCell surface formPolymerase chain reactionCo-culture systemNecrosis factorOsteotropic hormonesOsteoclast function
1996
Colony stimulating factor‐1 plays a role in osteoclast formation and function in bone resorption induced by parathyroid hormone and parathyroid hormone‐related protein
Weir E, Lowik C, Paliwal I, Insogna K. Colony stimulating factor‐1 plays a role in osteoclast formation and function in bone resorption induced by parathyroid hormone and parathyroid hormone‐related protein. Journal Of Bone And Mineral Research 1996, 11: 1474-1481. PMID: 8889847, DOI: 10.1002/jbmr.5650111014.Peer-Reviewed Original ResearchConceptsBone resorptionMature osteoclastsParathyroid hormoneOsteoclast precursorsFetal rat long bonesParathyroid hormone-related proteinResistant acid phosphatase-positive osteoclastsMitogenic activityFactor 1Hormone-related proteinOrgan cultureCSF-1Rat long bonesTreatment of boneSignificant increaseOrgan culture assayHistological examinationBone assayOsteoclast recruitmentOsteoclast formationRat osteoclastsColony stimulating factor 1CSF-1 productionPTHResorption