2004
Fibroblast Growth Factor 7: An Inhibitor of Phosphate Transport Derived from Oncogenic Osteomalacia-Causing Tumors
Carpenter TO, Ellis BK, Insogna KL, Philbrick WM, Sterpka J, Shimkets R. Fibroblast Growth Factor 7: An Inhibitor of Phosphate Transport Derived from Oncogenic Osteomalacia-Causing Tumors. The Journal Of Clinical Endocrinology & Metabolism 2004, 90: 1012-1020. PMID: 15562028, DOI: 10.1210/jc.2004-0357.Peer-Reviewed Original ResearchMeSH KeywordsAdultBone NeoplasmsCD4 AntigensCell Line, TumorChildCulture Media, ConditionedFibroblast Growth Factor 7Fibroblast Growth Factor-23Fibroblast Growth FactorsGene Expression RegulationHumansInsulin-Like Growth Factor Binding Protein 4KineticsMaleMiddle AgedOsteomalaciaPhosphate Transport ProteinsConceptsFibroblast growth factor 7Tumor-derived culturesOncogenic osteomalaciaInhibitory activityRenal tubular epithelial cellsTubular epithelial cellsRenal phosphate transportPhosphate transportGrowth factor 7Tumor cell culturesRenal phosphate homeostasisNonconditioned mediumTumorsMonoclonal antibodiesEpithelial cellsDirect inhibitorFactor 7Phosphate homeostasisFGF familySyndromeCandidate mRNAsPotent inhibitorInhibitorsTransport inhibitionInhibitory
1988
SYNTHETIC AND PARTIALLY-PURIFIED ADENYLATE CYCLASE-STIMULATING PROTEINS FROM TUMORS ASSOCIATED WITH HUMORAL HYPERCALCEMIA OF MALIGNANCY INHIBIT PHOSPHATE TRANSPORT IN A PTH-RESPONSIVE RENAL CELL LINE
SARTORI L, WEIR EC, STEWART AF, BROADUS AE, MANGIN M, BARRETT PQ, INSOGNA KL. SYNTHETIC AND PARTIALLY-PURIFIED ADENYLATE CYCLASE-STIMULATING PROTEINS FROM TUMORS ASSOCIATED WITH HUMORAL HYPERCALCEMIA OF MALIGNANCY INHIBIT PHOSPHATE TRANSPORT IN A PTH-RESPONSIVE RENAL CELL LINE. The Journal Of Clinical Endocrinology & Metabolism 1988, 66: 459-461. PMID: 3339117, DOI: 10.1210/jcem-66-2-459.Peer-Reviewed Original ResearchConceptsAdenylate cyclase-stimulating activityHumoral hypercalcemiaPhosphate metabolismCyclase-stimulating activityCell linesSodium-dependent phosphate transportRenal cell linesEpithelial cell lineTumor productsTumor decreaseRenal epithelial cellsRenal epithelial cell lineAmino acid peptidePhosphate transportHypercalcemiaAnimal tumorsTumorsHuman tumorsEpithelial cellsHHMMalignancyNaPiTInhibitory activityMinutes exposureEpithelial monolayers