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1.
Arzneimittelforschung ; 60(5): 267-72, 2010.
Article in English | MEDLINE | ID: mdl-20533764

ABSTRACT

In an open-label, prospective, controlled, 12-month study the effects of strontium ranelate (SR, CAS 135459-87-9) or alendronate (CAS 129318-43-0) on bone mineral density (BMD) were compared in 152 men with primary osteoporosis. Patients were randomized to SR 2 g/day (n = 76) or alendronate 70 mg/week (n = 76) supplemented daily with 1200 mg calcium and 800 IU vitamin D. The main outcome measure was percent change in lumbar spine and total hip BMD from baseline. Mean BMD (+/- SD) increased by 5.8 +/- 3.7% at the lumbar spine and 3.5 +/- 2.8% at the total hip with SR compared to increases of 4.5 +/- 3.4 % and 2.7 +/- 3.2%, respectively, with alendronate. Increases in BMD in the SR group are consistent with 1-year results from two pivotal fracture studies in postmenopausal women with osteoporosis. SR was associated with a 22% greater increase in BMD at the lumbar spine (p = 0.033) and 23% greater increase at the total hip (p = 0.002) than alendronate. New fractures were observed in 7 SR and 10 alendronate patients. Height loss (-0.1 +/- 0.7 cm) was less with SR compared with alendronate (-0.5 +/- 0.8 cm) (p = 0.026). SR was also associated with significantly greater reductions in back pain and analgesic use scores. Adverse events were experienced by 28 (37%) patients in the SR group and 38 (50%) patients in the alendronate group, none of which were serious. In men with osteoporosis, SR produced significantly greater mean increases in BMD over 12 months compared with alendronate, an agent already approved for male osteoporosis. Mean increases in BMD with SR in men were similar to those previously documented for this agent in postmenopausal women, suggesting that similar benefits on anti-fracture efficacy may be expected.


Subject(s)
Bone Density Conservation Agents/therapeutic use , Bone Density/drug effects , Organometallic Compounds/therapeutic use , Osteoporosis/drug therapy , Thiophenes/therapeutic use , Absorptiometry, Photon , Adult , Aged , Alendronate/therapeutic use , Body Height , Bone Density Conservation Agents/adverse effects , Endpoint Determination , Fractures, Bone/epidemiology , Hip/pathology , Humans , Male , Middle Aged , Organometallic Compounds/adverse effects , Osteoporosis/pathology , Prospective Studies , Spine/pathology , Thiophenes/adverse effects
2.
Rheumatol Int ; 29(3): 311-5, 2009 Jan.
Article in English | MEDLINE | ID: mdl-18762944

ABSTRACT

The aim of this study was to assess the effect of treatment with risedronate 5 mg daily relative to control in men with primary or secondary osteoporosis over 2 years. Osteoporosis is a common condition in men that can have serious clinical consequences. In an earlier interim report, we found that 1 year of risedronate therapy resulted in significant increases in bone mineral density (BMD) and a significant reduction in vertebral fractures compared to control in men with osteoporosis. We conducted an open-label, prospective, match-control trial on men with primary or secondary osteoporosis in a single center, outpatient setting. Men with primary or secondary osteoporosis, as defined by a baseline lumbar spine BMD T-score < or = -2.5 and a baseline femoral neck BMD T-score < or = 2.0, were eligible for this study. Patients who had been treated with bisphosphonates or fluoride within the last 12 months were excluded. A total of 316 men were randomized to risedronate (n = 158) or control (n = 158). Patients were stratified by the presence of prevalent vertebral fractures at baseline and case by case allocated to either daily treatment with risedronate 5 mg daily plus calcium (1,000 mg) and vitamin D (800 IU) or to a control group (daily alfacalcidol (1 microg) plus calcium (500 mg) for those with prevalent vertebral fractures; daily vitamin D (800 IU) plus calcium (1,200 mg) for those without previous vertebral fractures). Primary study end points were identified prior to study initiation as the incidence of new vertebral fractures and changes in BMD at the lumbar spine, femoral neck, and total hip. Other end points included incidence of nonvertebral fractures and change in body height and back pain. Compared to control, the incidence of new vertebral fractures was significantly reduced in the risedronate 5 mg daily group at 2 years [14/152 (9.2%) for risedronate vs. 35/148 (23.6%) for control (61% risk reduction; P = 0.0026)]. Treatment with risedronate 5 mg daily also resulted in significant improvements in BMD at 2 years at all three skeletal sites (lumbar spine, 6.5 vs. 2.2%; femoral neck, 3.2 vs. 0.6%; total hip, 4.4 vs. 0.4% (P < 0.001 for all treatment comparisons). Significant reductions in the incidence of nonvertebral fractures (11.8 vs. 22.3%; P = 0.032), average loss in height, and back pain were also observed in risedronate-treated patients relative to control. In this 2-year study, daily 5 mg risedronate significantly reduced the risk of vertebral and nonvertebral fractures, improved BMD, decreased height loss, and reduced back pain in men with osteoporosis. Efficacy was sustained over 2 years; a consistent 60-61% risk reduction in vertebral fractures was observed at 1 and 2 years, respectively. These data demonstrate that daily risedronate is effective long-term therapy for men with primary or secondary osteoporosis.


Subject(s)
Bone Density Conservation Agents/therapeutic use , Etidronic Acid/analogs & derivatives , Osteoporosis/drug therapy , Aged , Back Pain/prevention & control , Calcium/therapeutic use , Drug Therapy, Combination , Etidronic Acid/therapeutic use , Fractures, Bone/prevention & control , Humans , Male , Middle Aged , Prospective Studies , Risedronic Acid , Vitamin D/therapeutic use
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