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Cathepsin K inhibition preserves compressive load in lumbar vertebrae of osteoporotic monkeys

Anti-resorptive drugs treat bone loss by blocking osteoclast activity through a variety of mechanisms of action. Once significant bone loss has occurred, the ability to restore biomechanical function may differ based on the drug chosen. To assess this question, bisphosphonate (alendronate, ALN) and...

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Autores principales: Colón-Bernal, Isabel D., Duong, Le T., Pennypacker, Brenda, Henderson, James, Kozloff, Kenneth M., Banaszak Holl, Mark M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6214835/
https://www.ncbi.nlm.nih.gov/pubmed/30406161
http://dx.doi.org/10.1016/j.bonr.2018.10.001
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author Colón-Bernal, Isabel D.
Duong, Le T.
Pennypacker, Brenda
Henderson, James
Kozloff, Kenneth M.
Banaszak Holl, Mark M.
author_facet Colón-Bernal, Isabel D.
Duong, Le T.
Pennypacker, Brenda
Henderson, James
Kozloff, Kenneth M.
Banaszak Holl, Mark M.
author_sort Colón-Bernal, Isabel D.
collection PubMed
description Anti-resorptive drugs treat bone loss by blocking osteoclast activity through a variety of mechanisms of action. Once significant bone loss has occurred, the ability to restore biomechanical function may differ based on the drug chosen. To assess this question, bisphosphonate (alendronate, ALN) and cathepsin K inhibitor (MK-0674, CatKi) were employed in treatment mode to compare the relative changes to cancellous bone microstructure and mechanical properties in ovariectomized (OVX) cynomolgus monkeys. Lumbar vertebrae (LV) bone mineral density (BMD) values taken two years post-surgery prior to drug treatment show a 10–15% decrease (p < 0.05) for all OVX animals. OVX animals were then treated with vehicle (VEH), ALN (0.03 mg/kg weekly), or CatKi MK-0674 (0.6 or 2.5 mg/kg daily, CatKi-L and H respectively) for two years and compared to a control Sham surgery group. Ex-vivo microcomputed tomography (μCT) of LV2 and compression testing of LV4–6 were used to measure cancellous bone microstructure and changes in bone mechanics, respectively. After two years of treatment, ALN-treated animals showed no significant difference in μCT or biomechanical parameters when compared to Veh. However, treatment with CatKi-H resulted in a 30% increase in yield and peak loads, and apparent peak and yield stress as compared to Veh (p < 0.05) and gave average mechanical values greater than the Sham sample. Treatment with CatKi-L exhibited a similar trend of increase to CatKi-H (p < 0.08). Intriguingly, these changes were realized despite no significant differences in mean values of trabecular bone morphologic parameters. Together these data suggest matrix-level changes in bone composition that are unique to the CatK inhibition mechanism, resulting in the preservation of bone compressive load with treatment.
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spelling pubmed-62148352018-11-07 Cathepsin K inhibition preserves compressive load in lumbar vertebrae of osteoporotic monkeys Colón-Bernal, Isabel D. Duong, Le T. Pennypacker, Brenda Henderson, James Kozloff, Kenneth M. Banaszak Holl, Mark M. Bone Rep Article Anti-resorptive drugs treat bone loss by blocking osteoclast activity through a variety of mechanisms of action. Once significant bone loss has occurred, the ability to restore biomechanical function may differ based on the drug chosen. To assess this question, bisphosphonate (alendronate, ALN) and cathepsin K inhibitor (MK-0674, CatKi) were employed in treatment mode to compare the relative changes to cancellous bone microstructure and mechanical properties in ovariectomized (OVX) cynomolgus monkeys. Lumbar vertebrae (LV) bone mineral density (BMD) values taken two years post-surgery prior to drug treatment show a 10–15% decrease (p < 0.05) for all OVX animals. OVX animals were then treated with vehicle (VEH), ALN (0.03 mg/kg weekly), or CatKi MK-0674 (0.6 or 2.5 mg/kg daily, CatKi-L and H respectively) for two years and compared to a control Sham surgery group. Ex-vivo microcomputed tomography (μCT) of LV2 and compression testing of LV4–6 were used to measure cancellous bone microstructure and changes in bone mechanics, respectively. After two years of treatment, ALN-treated animals showed no significant difference in μCT or biomechanical parameters when compared to Veh. However, treatment with CatKi-H resulted in a 30% increase in yield and peak loads, and apparent peak and yield stress as compared to Veh (p < 0.05) and gave average mechanical values greater than the Sham sample. Treatment with CatKi-L exhibited a similar trend of increase to CatKi-H (p < 0.08). Intriguingly, these changes were realized despite no significant differences in mean values of trabecular bone morphologic parameters. Together these data suggest matrix-level changes in bone composition that are unique to the CatK inhibition mechanism, resulting in the preservation of bone compressive load with treatment. Elsevier 2018-10-18 /pmc/articles/PMC6214835/ /pubmed/30406161 http://dx.doi.org/10.1016/j.bonr.2018.10.001 Text en © 2018 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Colón-Bernal, Isabel D.
Duong, Le T.
Pennypacker, Brenda
Henderson, James
Kozloff, Kenneth M.
Banaszak Holl, Mark M.
Cathepsin K inhibition preserves compressive load in lumbar vertebrae of osteoporotic monkeys
title Cathepsin K inhibition preserves compressive load in lumbar vertebrae of osteoporotic monkeys
title_full Cathepsin K inhibition preserves compressive load in lumbar vertebrae of osteoporotic monkeys
title_fullStr Cathepsin K inhibition preserves compressive load in lumbar vertebrae of osteoporotic monkeys
title_full_unstemmed Cathepsin K inhibition preserves compressive load in lumbar vertebrae of osteoporotic monkeys
title_short Cathepsin K inhibition preserves compressive load in lumbar vertebrae of osteoporotic monkeys
title_sort cathepsin k inhibition preserves compressive load in lumbar vertebrae of osteoporotic monkeys
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6214835/
https://www.ncbi.nlm.nih.gov/pubmed/30406161
http://dx.doi.org/10.1016/j.bonr.2018.10.001
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