Effects of Teriparatide and Alendronate on Vertebral Strength as Assessed by Finite Element Modeling of QCT Scans in Women With Osteoporosis
- 1 January 2007
- journal article
- research article
- Published by Oxford University Press (OUP) in Journal of Bone and Mineral Research
- Vol. 22 (1) , 149-157
- https://doi.org/10.1359/jbmr.061011
Abstract
FE modeling was used to estimate the biomechanical effects of teriparatide and alendronate on lumbar vertebrae. Both treatments enhanced predicted vertebral strength by increasing average density. This effect was more pronounced for teriparatide, which further increased predicted vertebral strength by altering the distribution of density within the vertebra, preferentially increasing the strength of the trabecular compartment. Introduction: Teriparatide 20 μg/day (TPTD) and alendronate 10 mg/day (ALN) increase areal, measured by DXA, and volumetric, measured by QCT, lumbar spine BMD through opposite effects on bone remodeling. Using finite element (FE) modeling of QCT scans, we sought to compare the vertebral strength characteristics in TPTD- and ALN-treated patients. Materials and Methods: A subset of patients (N = 28 TPTD; N = 25 ALN) from the Forteo Alendronate Comparator Trial who had QCT scans of the spine at baseline and postbaseline were analyzed. The QCT scans were analyzed for compressive strength of the L3 vertebra using FE modeling. In addition, using controlled parameter studies of the FE models, the effects of changes in density, density distribution, and geometry on strength were calculated, a strength:density ratio was determined, and a response to bending was also quantified. Results: Both treatments had positive effects on predicted vertebral strength characteristics. At least 75% of the patients in each treatment group had increased strength of the vertebra at 6 months compared with baseline. Patients in both treatment groups had increased average volumetric density and increased strength in the trabecular bone, but the median percentage increases for these parameters were 5- to 12-fold greater for TPTD. Larger increases in the strength:density ratio were also observed for TPTD, and these were primarily attributed to preferential increases in trabecular strength. Conclusions: These results provide new insight into the effects of these treatments on estimated biomechanical properties of the vertebra. Both treatments positively affected predicted vertebral strength through their effects on average BMD, but the magnitudes of the effects were quite different. Teriparatide also affected vertebral strength by altering the distribution of density within the vertebra, so that overall, teriparatide had a 5-fold greater percentage increase in the strength:density ratio.Keywords
This publication has 50 references indexed in Scilit:
- A Biomechanical Analysis of the Effects of Resorption Cavities on Cancellous Bone StrengthJournal of Bone and Mineral Research, 2006
- A biomechanical perspective on bone qualityBone, 2006
- Intermittent Ibandronate Preserves Bone Quality and Bone Strength in the Lumbar Spine After 16 Months of Treatment in the Ovariectomized Cynomolgus MonkeyJournal of Bone and Mineral Research, 2004
- Teriparatide [PTH(1–34)] Strengthens the Proximal Femur of Ovariectomized Nonhuman Primates Despite Increasing PorosityJournal of Bone and Mineral Research, 2004
- Osteoporosis Prevention, Diagnosis, and TherapyJAMA, 2001
- Patients with Prior Fractures Have an Increased Risk of Future Fractures: A Summary of the Literature and Statistical SynthesisJournal of Bone and Mineral Research, 2000
- Computed tomography‐based finite element analysis predicts failure loads and fracture patterns for vertebral sectionsJournal of Orthopaedic Research, 1998
- The effect of impact direction on the structural capacity of the proximal femur during fallsJournal of Bone and Mineral Research, 1996
- Direct and computed tomography thickness measurements of the human, lumbar vertebral shell and endplateBone, 1994
- NONINVASIVE ASSESSMENT OF SKELETAL MASSJournal of Computer Assisted Tomography, 1985