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1.
Bone ; 43(2): 343-347, 2008 Aug.
Article in English | MEDLINE | ID: mdl-18544475

ABSTRACT

Pre-clinical studies indicate that pharmacologic agents can augment fracture union. If these pharmacologic approaches could be translated into clinical benefit and offered to patients with osteoporosis or patients with other risks for impaired fracture union (e.g. in subjects with large defects or open fractures with high complication rate), they could provide an important adjunct to the treatment of fractures. However, widely accepted guidelines are important to encourage the conduct of studies to evaluate bioactive substances, drugs, and new agents that may promote fracture union and subsequent return to normal function. A consensus process was initiated to provide recommendations for the clinical evaluation of potential therapies to augment fracture repair in patients with meta- and diaphyseal fractures. Based on the characteristics of fracture healing and fixation, the following study objectives of a clinical study may be appropriate: a) acceleration of fracture union, b) acceleration of return to normal function and c) reduction of fracture healing complications. The intended goal(s) should determine subsequent study methodology. While an acceleration of return to normal function or a reduction of fracture healing complications in and of themselves may be sufficient primary study endpoints for a phase 3 pivotal study, acceleration of fracture union alone is not. Radiographic evaluation may either occur at multiple time points during the healing process with the aim of measuring the time taken to reach a defined status (e.g. cortical bridging of three cortices or disappearance of fracture lines), or could be obtained at a single pre-determined timepoint, were patients are expected to reach a common clinical milestone (i.e. pain free full weight-bearing in weight-bearing fracture cases). Validated Patient Reported Outcomes (PRO's) measures will need to support the return to normal function co-primary endpoints. If reduction of complication rate (e.g. non-union) is the primary objective, the anticipated complications must be defined in the study protocol, along with their possible associations with the specified fracture type and fixation device. The study design should be randomized, parallel, double-blind, and placebo-controlled, and all fracture subjects should receive a standardized method of fracture fixation, defined as Standard of Care.


Subject(s)
Drug Evaluation, Preclinical , Fracture Healing , Osteoporosis/drug therapy , Pharmaceutical Preparations , Clinical Trials as Topic , Humans , Treatment Outcome
2.
Arch Intern Med ; 164(18): 2024-30, 2004 Oct 11.
Article in English | MEDLINE | ID: mdl-15477438

ABSTRACT

BACKGROUND: Teriparatide (recombinant human parathyroid hormone [1-34]) reduces fracture risk in postmenopausal women with osteoporosis. We assessed the safety and incidence of new vertebral fractures after withdrawal of teriparatide. METHODS: This study is a follow-up to the Fracture Prevention Trial (FPT), a randomized, placebo-controlled study of postmenopausal women with osteoporosis treated with teriparatide (20 or 40 microg) once daily for a mean of 18 months. More than 90% of the women remaining at the end of the FPT continued into the follow-up study (n = 1262). Patients and investigators were unblinded to original treatment group assignment. Women were treated according to standard clinical practice, including elective use of osteoporosis drugs. New vertebral fractures were determined by semiquantitative scoring of lateral thoracic lumbar spine radiographs 18 months after the end of the FPT. RESULTS: During the follow-up study, the reduction in fracture risk associated with previous treatment with teriparatide, 20 and 40 microg, was 41% (P = .004) and 45% (P = .001), respectively, vs placebo. The absolute reduction from the FPT baseline to the 18-month follow-up visit was 13% for both doses. Osteoporosis drugs were used by 47% of women during follow-up, with greater use in the former placebo group (P = .04); nevertheless, persistent fracture protection of previous teriparatide therapy was evident. Post hoc analysis also suggests that teriparatide treatment substantially reduced the increased risk of subsequent fracture in women who sustained a fracture during the FPT (P = .05). CONCLUSION: Vertebral fracture risk reduction by teriparatide administration persists for at least 18 months after discontinuation of therapy.


Subject(s)
Osteoporosis, Postmenopausal/drug therapy , Parathyroid Hormone/therapeutic use , Risk Reduction Behavior , Spinal Fractures/prevention & control , Teriparatide/therapeutic use , Aged , Bone Density , Female , Follow-Up Studies , Humans , Incidence , Middle Aged , Osteoporosis, Postmenopausal/complications , Randomized Controlled Trials as Topic , Spinal Fractures/etiology , Time Factors , Treatment Outcome , Withholding Treatment
3.
J Clin Endocrinol Metab ; 87(10): 4528-35, 2002 Oct.
Article in English | MEDLINE | ID: mdl-12364430

ABSTRACT

Teriparatide (rDNA origin) injection [recombinant human PTH (1-34)] stimulates bone formation, increases bone mineral density (BMD), and restores bone architecture and integrity. In contrast, bisphosphonates reduce bone resorption and increase BMD. We compared the effects of teriparatide and alendronate sodium on BMD, nonvertebral fracture incidence, and bone turnover in 146 postmenopausal women with osteoporosis. Women were randomized to either once-daily sc injections of teriparatide 40 micro g plus oral placebo (n = 73) or oral alendronate 10 mg plus placebo injection (n = 73). Median duration of treatment was 14 months. At 3 months, teriparatide increased lumbar spine BMD significantly more than did alendronate (P < 0.001). Lumbar spine-BMD increased by 12.2% in the teriparatide group and 5.6% in the alendronate group (P < 0.001 teriparatide vs. alendronate). Teriparatide increased femoral neck BMD and total body bone mineral significantly more than did alendronate, but BMD at the one third distal radius decreased, compared with alendronate (P < or = 0.05). Nonvertebral fracture incidence was significantly lower in the teriparatide group than in the alendronate group (P < 0.05). Both treatments were well tolerated despite transient mild asymptomatic hypercalcemia with teriparatide treatment. In conclusion, teriparatide, a bone formation agent, increased BMD at most sites and decreased nonvertebral fractures more than alendronate.


Subject(s)
Alendronate/therapeutic use , Osteoporosis, Postmenopausal/drug therapy , Teriparatide/therapeutic use , Adult , Aged , Aged, 80 and over , Alkaline Phosphatase/blood , Biomarkers , Body Height/drug effects , Bone Density/drug effects , Bone Remodeling/drug effects , Bone Resorption/prevention & control , Bone and Bones/enzymology , Bone and Bones/injuries , Calcitriol/blood , Collagen/urine , Collagen Type I , Double-Blind Method , Female , Fractures, Bone/prevention & control , Humans , Middle Aged , Peptides/urine
4.
J Clin Endocrinol Metab ; 87(3): 985-92, 2002 Mar.
Article in English | MEDLINE | ID: mdl-11889149

ABSTRACT

Both raloxifene (RLX) and alendronate (ALN) can treat and prevent new vertebral fractures, increase bone mineral density (BMD), and decrease biochemical markers of bone turnover in postmenopausal women with osteoporosis. This phase 3, randomized, double-blind 1-yr study assessed the effects of combined RLX and ALN in 331 postmenopausal women with osteoporosis (femoral neck BMD T-score, less than -2). Women (aged < or = 75 yr; > or = 2 yr since their last menstrual period) received placebo, RLX 60 mg/d, ALN 10 mg/d, or RLX 60 mg/d and ALN 10 mg/d combined. At baseline, 6 and 12 months, BMD was measured by dual x-ray absorptiometry. The bone turnover markers serum osteocalcin, bone-specific alkaline phosphatase, and urinary N- and C-telopeptide corrected for creatinine were measured. The effects of RLX and ALN were considered to be independent and additive if the interaction effect was not statistically significant (P > 0.10) in a two-way ANOVA model. All changes in BMD and bone markers at 12 months were different between placebo and each of the active treatment groups, and between the RLX and RLX+ALN groups (P < 0.05). On average, lumbar spine BMD increased by 2.1, 4.3, and 5.3% from baseline with RLX, ALN, and RLX+ALN, respectively. The increase in femoral neck BMD in the RLX+ALN group (3.7%) was greater than the 2.7 and 1.7% increases in the ALN (P = 0.02) and RLX (P < 0.001) groups, respectively. The changes from baseline to 12 months in bone markers ranged from 7.1 to -16.0% with placebo, -23.8 to -46.5% with RLX, -42.3 to -74.2% with ALN, and -54.1 to -81.0% in the RLX+ALN group. RLX and ALN increased lumbar spine and femoral neck BMD, and decreased osteocalcin and C-telopeptide corrected for creatinine in an additive and independent manner, because the interaction effects were not significant. Although the ALN group had changes in BMD and bone markers that were approximately twice the magnitude as in the RLX group, it is not known how well these changes correlate to the clinical outcome of fracture. RLX+ALN reduced bone turnover more than either drug alone, resulting in greater BMD increment, but whether this difference reflects better fracture risk reduction was not assessed in this study.


Subject(s)
Alendronate/therapeutic use , Bone Density/drug effects , Bone Remodeling/drug effects , Bone Remodeling/physiology , Osteoporosis, Postmenopausal/drug therapy , Raloxifene Hydrochloride/therapeutic use , Selective Estrogen Receptor Modulators/therapeutic use , Aged , Biomarkers/blood , Collagen/antagonists & inhibitors , Collagen Type I , Double-Blind Method , Drug Synergism , Female , Femur Neck/drug effects , Femur Neck/physiopathology , Humans , Lumbar Vertebrae/drug effects , Lumbar Vertebrae/physiopathology , Middle Aged , Osteocalcin/antagonists & inhibitors , Osteoporosis, Postmenopausal/physiopathology , Peptides/antagonists & inhibitors
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