2023
Biomechanical Impact of Phosphate Wasting on Articular Cartilage Using the Murine Hyp Model of X‐linked hypophosphatemia
Macica C, Tommasini S. Biomechanical Impact of Phosphate Wasting on Articular Cartilage Using the Murine Hyp Model of X‐linked hypophosphatemia. JBMR Plus 2023, 7: e10796. PMID: 37808393, PMCID: PMC10556269, DOI: 10.1002/jbm4.10796.Peer-Reviewed Original ResearchWT miceHyp miceMechanical propertiesArticular cartilageTrabecular bone volumeProgression of osteoarthritisEtiology of osteoarthritisRange of motionSubchondral bone plateOral phosphateDegenerative osteoarthritisTibial articular cartilageDaily livingAC stiffnessBone volumeTherapeutic restorationOsteoarthritisStructural stiffnessCompressive loadingMicePeak loadTherapyCellular changesMineral deficitStress relaxation
2019
High dose vitamin D supplementation does not rescue bone loss following Roux-en-Y gastric bypass in female rats
Niu A, Carpenter TO, Grams JM, Bozorgmehri S, Tommasini SM, Schafer AL, Canales BK. High dose vitamin D supplementation does not rescue bone loss following Roux-en-Y gastric bypass in female rats. Bone 2019, 127: 172-180. PMID: 31226531, PMCID: PMC6708762, DOI: 10.1016/j.bone.2019.06.015.Peer-Reviewed Original ResearchConceptsCalcium/creatinine ratioVitamin D supplementationSecondary hyperparathyroidismBone lossD supplementationGastric bypassGut hormonesRYGB groupParathyroid hormoneFracture riskFemale ratsUrine calcium/creatinine ratioBone volumeUrinary calcium/creatinine ratioHigh-dose vitamin D supplementationAdequate vitamin D supplementationC-terminal telopeptide (CTX) levelsHigher serum parathyroid hormoneIU vitamin D supplementationIU vitamin D/Bone phenotypeDose vitamin D supplementationResultant secondary hyperparathyroidismVitamin D/Serum parathyroid hormone