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Published on: June 8, 2014
Bisphosphonate-osteoclasts: changes in osteoclast morphology and function induced by antiresorptive
Björn Jobke1, Petar Milovanovic2, Michael Amling1
1Department of Osteology and Biomechanics, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.
Abstract:
Osteoclasts are unique cells capable of bone resorption and therefore have become a major target in osteoporosis treatment strategies. Bisphosphonates suppress bone turnover via interference with the internal enzymatic cell system of osteoclasts leading to cytoskeletal disruption. This mechanism found its clinical relevance in reducing bone resorption, stabilizing bone mass and reducing fracture risk in osteoporosis patients. However, knowledge about specific in vivo changes in osteoclast cell morphology and function is still insufficient. We examined osteoclasts in 23 paired bone biopsies from osteoporosis patients (18 males, 5 females; age: 52.6±11.5yrs) under nitrogen-containing bisphosphonate administration with a mean treatment duration of three years. Formalin-fixed, undecalcified sections were assessed by qualitative and quantitative bone histomorphometry, where the osteoclast morphology, nuclei, distribution, location as well as resorption parameters were investigated to obtain information about cell function and viability. After three years of treatment, resorption parameters decreased significantly while the number of osteoclasts remained unchanged. Out of 23 patients, nine developed previously termed "giant-osteoclasts" with increased size, numerous nuclei (>10 nuclei/Oc) and oftentimes detachment from the bone surface. These cells frequently had pycnotic nuclei and other morphological signs suggestive of osteoclast apoptosis. Characteristic large-sized osteoclasts were uniquely found in patients treated with nitrogen-containing bisphosphonates, thus being clearly distinguishable from giant-osteoclasts in other bone disorders such as Paget disease, secondary hyperparathyroidism or osteopetrosis. The resorption indices of large-sized osteoclasts, specifically the eroded perimeter and erosion depth, revealed significantly reduced values but not an entirely inhibited resorption capability. Bisphosphonate-osteoclasts' viability and affinity to bone seem significantly disturbed while the apoptotic process may be prolonged for a yet unknown period of time in favor of maintaining a low bone turnover.
Insights
Nitrogen-containing bisphosphonates reduce bone resorption in osteoporosis patients by altering osteoclast morphology and function, leading to reduced resorption but not complete inhibition.
Area of Science:
- Bone Biology
- Cellular Biology
- Pharmacology
Background:
- Osteoclasts are critical for bone resorption and a key target for osteoporosis treatment.
- Bisphosphonates inhibit osteoclast function, reducing bone turnover and fracture risk.
- Specific in vivo changes in osteoclast morphology and function under bisphosphonate treatment require further investigation.
Purpose of the Study:
- To investigate in vivo changes in osteoclast morphology and function in osteoporosis patients treated with nitrogen-containing bisphosphonates.
- To assess the impact of long-term bisphosphonate therapy on osteoclast characteristics and bone resorption parameters.
Main Methods:
- Analysis of 23 paired bone biopsies from osteoporosis patients undergoing long-term bisphosphonate treatment.
- Qualitative and quantitative bone histomorphometry to evaluate osteoclast morphology, nuclei count, distribution, location, and resorption parameters.
- Comparison of osteoclast characteristics between treated patients and known giant-osteoclasts in other bone disorders.
Main Results:
- Three years of bisphosphonate treatment significantly decreased bone resorption parameters, while osteoclast numbers remained stable.
- Nine patients developed large-sized osteoclasts with increased nuclei, pycnotic nuclei, and detachment from bone, suggestive of apoptosis.
- These bisphosphonate-induced large osteoclasts showed reduced resorption indices but retained some resorption capability, distinct from giant-osteoclasts in other diseases.
Conclusions:
- Nitrogen-containing bisphosphonates alter osteoclast morphology and function, leading to reduced bone resorption and potentially prolonged apoptosis.
- The observed large-sized osteoclasts are characteristic of bisphosphonate treatment and differ from those in other bone pathologies.
- Osteoclast viability and bone affinity are significantly disturbed, contributing to the low bone turnover state in treated patients.
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