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Published on: June 9, 2014
Giant osteoclast formation and long-term oral bisphosphonate therapy
Robert S Weinstein1, Paula K Roberson, Stavros C Manolagas
1Division of Endocrinology and Metabolism, the Center for Osteoporosis and Metabolic Bone Diseases, and the Central Arkansas Veterans Healthcare System, University of Arkansas for Medical Sciences, Little Rock 72205-7199, USA. weinsteinroberts@uams.edu
Background:
Bisphosphonates decrease bone resorption and are commonly used to treat or prevent osteoporosis. However, the effect of bisphosphonates on their target cells remains enigmatic, since in patients benefiting from therapy, little change, if any, has been observed in the number of osteoclasts, which are the cells responsible for bone resorption.
Methods:
We examined 51 bone-biopsy specimens obtained after a 3-year, double-blind, randomized, placebo-controlled, dose-ranging trial of oral alendronate to prevent bone resorption among healthy postmenopausal women 40 through 59 years of age. The patients were assigned to one of five groups: those receiving placebo for 3 years; alendronate at a dose of 1, 5, or 10 mg per day for 3 years; or alendronate at a dose of 20 mg per day for 2 years, followed by placebo for 1 year. Formalin-fixed, undecalcified planar sections were assessed by bone histomorphometric methods.
Results:
The number of osteoclasts was increased by a factor of 2.6 in patients receiving 10 mg of alendronate per day for 3 years as compared with the placebo group (P<0.01). Moreover, the number of osteoclasts increased as the cumulative dose of the drug increased (r=0.50, P<0.001). Twenty-seven percent of these osteoclasts were giant cells with pyknotic nuclei that were adjacent to superficial resorption cavities. Furthermore, giant, hypernucleated, detached osteoclasts with 20 to 40 nuclei were found after alendronate treatment had been discontinued for 1 year. Of these large cells, 20 to 37% were apoptotic, according to both their morphologic features and positive findings from in situ end labeling.
Conclusions:
Long-term alendronate treatment is associated with an increase in the number of osteoclasts, which include distinctive giant, hypernucleated, detached osteoclasts that are undergoing protracted apoptosis.
Insights
Long-term alendronate treatment for osteoporosis surprisingly increases osteoclast numbers, including unique giant cells undergoing apoptosis. This finding challenges previous assumptions about how bisphosphonates affect bone resorption at the cellular level.
Area of Science:
- Bone biology
- Pharmacology
- Cell biology
Background:
- Bisphosphonates are standard osteoporosis treatments that reduce bone resorption.
- Their precise cellular effects, particularly on osteoclasts, remain unclear despite clinical benefits.
Purpose of the Study:
- To investigate the long-term effects of oral alendronate on osteoclast number and morphology in postmenopausal women.
- To clarify the cellular mechanisms underlying bisphosphonate action in bone.
Main Methods:
- Analysis of 51 bone biopsy specimens from a 3-year randomized, placebo-controlled trial of oral alendronate.
- Histomorphometric assessment of osteoclast number, size, and apoptosis using formalin-fixed, undecalcified sections.
Main Results:
- Alendronate significantly increased osteoclast numbers, dose-dependently.
- Distinctive giant, hypernucleated osteoclasts were observed, some detached and apoptotic.
- These changes persisted even after treatment cessation.
Conclusions:
- Long-term alendronate use increases osteoclast numbers.
- Unique, large, apoptotic osteoclasts are a hallmark of alendronate treatment.
- These findings provide new insights into bisphosphonate's cellular impact on bone resorption.
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