2020
Systemic Parathyroid Hormone Enhances Fracture Healing in Multiple Murine Models of Type 2 Diabetes Mellitus
Alder K, White A, Chung Y, Lee I, Back J, Kwon H, Cahill S, Hao Z, Li L, Chen F, Lee S, Riedel M, Lee F. Systemic Parathyroid Hormone Enhances Fracture Healing in Multiple Murine Models of Type 2 Diabetes Mellitus. JBMR Plus 2020, 4: e10359. PMID: 32382692, PMCID: PMC7202418, DOI: 10.1002/jbm4.10359.Peer-Reviewed Original ResearchRisk of fractureFracture healingMurine modelType 2 diabetes mellitusPTH expressionEffects of hPTHIntermittent systemic administrationSuitable murine modelPrevalence of T2DMAge-related osteoporosisDiabetes mellitusPresent studySystemic administrationSkeletal fragilityMultisystemic diseaseT2DMOsteoporotic phenotypeBone qualityBone fracturesCalcium homeostasisMesenchymal stem cellsBone phenotypeHormone productionHPTHHealing
2008
Enhancement of Periprosthetic Bone Quality with Topical Hydroxyapatite-Bisphosphonate Composite
Suratwala SJ, Cho SK, van Raalte JJ, Park SH, Seo SW, Chang SS, Gardner TR, Lee FY. Enhancement of Periprosthetic Bone Quality with Topical Hydroxyapatite-Bisphosphonate Composite. Journal Of Bone And Joint Surgery 2008, 90: 2189-2196. PMID: 18829917, PMCID: PMC2657477, DOI: 10.2106/jbjs.g.00409.Peer-Reviewed Original ResearchConceptsPeriprosthetic bone qualityPeriprosthetic bone massSix-month groupBone qualitySix weeksOsseous integrationBone massParticle-induced periprosthetic osteolysisImplant looseningDual X-ray absorptiometryInflammatory bone lossX-ray absorptiometryMean bone areaUltra-high molecular weight polyethyleneBone lossSix-week groupUltra-high molecular weight polyethylene particlesIntramedullary nailFemoral canalMolecular weight polyethyleneControl groupPeriprosthetic osteolysisBone areaPeak pullout forceIntramedullary implants