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Effects of abaloparatide and teriparatide on bone resorption and bone formation in female mice()

Intermittent administration of PTH type 1 receptor (PTH1R) agonists increases bone remodeling, with greater stimulation of bone formation relative to bone resorption causing net gains in bone mass. This pharmacodynamic feature underlies the bone-building effects of teriparatide and abaloparatide, th...

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Autores principales: Arlt, Heike, Mullarkey, Tara, Hu, Dorothy, Baron, Roland, Ominsky, Michael S., Mitlak, Bruce, Lanske, Beate, Besschetnova, Tatiana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7330158/
https://www.ncbi.nlm.nih.gov/pubmed/32637467
http://dx.doi.org/10.1016/j.bonr.2020.100291
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author Arlt, Heike
Mullarkey, Tara
Hu, Dorothy
Baron, Roland
Ominsky, Michael S.
Mitlak, Bruce
Lanske, Beate
Besschetnova, Tatiana
author_facet Arlt, Heike
Mullarkey, Tara
Hu, Dorothy
Baron, Roland
Ominsky, Michael S.
Mitlak, Bruce
Lanske, Beate
Besschetnova, Tatiana
author_sort Arlt, Heike
collection PubMed
description Intermittent administration of PTH type 1 receptor (PTH1R) agonists increases bone remodeling, with greater stimulation of bone formation relative to bone resorption causing net gains in bone mass. This pharmacodynamic feature underlies the bone-building effects of teriparatide and abaloparatide, the only PTH1R agonists approved to reduce osteoporotic fracture risk in postmenopausal women. This study in 8-week-old female mice compared bone resorption and formation responses to these agents delivered at the same 10 μg/kg dose, and a 40 μg/kg abaloparatide dose was also included to reflect its 4-fold higher approved clinical dose. Peptides or vehicle were administered by daily supra-calvarial subcutaneous injection for 12 days, and local (calvarial) and systemic (L5 vertebral and tibial) responses were evaluated by histomorphometry. Terminal bone histomorphometry data indicated that calvarial resorption cavities were similar in both abaloparatide groups versus vehicle controls, whereas the teriparatide group had more calvarial resorption cavities compared with the vehicle or abaloparatide 40 μg/kg groups. The bone resorption marker serum CTX was significantly lower in the abaloparatide 40 μg/kg group and similar in the other two active treatment groups compared with vehicle controls. Both peptides increased trabecular bone formation rate (BFR) in L5 and proximal tibia versus vehicle, and L5 BFR was higher with abaloparatide 40 μg/kg versus teriparatide. At the tibial diaphysis, periosteal BFR was higher with abaloparatide 40 μg/kg versus vehicle or teriparatide, and endocortical BFR was higher with teriparatide but not with abaloparatide 10 or 40 μg/kg versus vehicle. Few differences in structural or microarchitectural bone parameters were observed with this brief duration of treatment. In summary, calvarial bone resorption cavity counts were higher in the teriparatide group versus the vehicle and abaloparatide 40 μg/kg groups, and the abaloparatide 40 μg/kg group had lower serum CTX versus vehicle. L5 and tibial trabecular bone formation indices were higher in all three active treatment groups versus vehicle. The abaloparatide 40 μg/kg group had higher L5 trabecular BFR and tibial periosteal BFR versus teriparatide, whereas tibial endocortical BFR was higher with teriparatide but not abaloparatide. Together, these findings in female mice indicate that an improved balance of bone formation versus bone resorption is established shortly after initiating treatment with abaloparatide.
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spelling pubmed-73301582020-07-06 Effects of abaloparatide and teriparatide on bone resorption and bone formation in female mice() Arlt, Heike Mullarkey, Tara Hu, Dorothy Baron, Roland Ominsky, Michael S. Mitlak, Bruce Lanske, Beate Besschetnova, Tatiana Bone Rep Article Intermittent administration of PTH type 1 receptor (PTH1R) agonists increases bone remodeling, with greater stimulation of bone formation relative to bone resorption causing net gains in bone mass. This pharmacodynamic feature underlies the bone-building effects of teriparatide and abaloparatide, the only PTH1R agonists approved to reduce osteoporotic fracture risk in postmenopausal women. This study in 8-week-old female mice compared bone resorption and formation responses to these agents delivered at the same 10 μg/kg dose, and a 40 μg/kg abaloparatide dose was also included to reflect its 4-fold higher approved clinical dose. Peptides or vehicle were administered by daily supra-calvarial subcutaneous injection for 12 days, and local (calvarial) and systemic (L5 vertebral and tibial) responses were evaluated by histomorphometry. Terminal bone histomorphometry data indicated that calvarial resorption cavities were similar in both abaloparatide groups versus vehicle controls, whereas the teriparatide group had more calvarial resorption cavities compared with the vehicle or abaloparatide 40 μg/kg groups. The bone resorption marker serum CTX was significantly lower in the abaloparatide 40 μg/kg group and similar in the other two active treatment groups compared with vehicle controls. Both peptides increased trabecular bone formation rate (BFR) in L5 and proximal tibia versus vehicle, and L5 BFR was higher with abaloparatide 40 μg/kg versus teriparatide. At the tibial diaphysis, periosteal BFR was higher with abaloparatide 40 μg/kg versus vehicle or teriparatide, and endocortical BFR was higher with teriparatide but not with abaloparatide 10 or 40 μg/kg versus vehicle. Few differences in structural or microarchitectural bone parameters were observed with this brief duration of treatment. In summary, calvarial bone resorption cavity counts were higher in the teriparatide group versus the vehicle and abaloparatide 40 μg/kg groups, and the abaloparatide 40 μg/kg group had lower serum CTX versus vehicle. L5 and tibial trabecular bone formation indices were higher in all three active treatment groups versus vehicle. The abaloparatide 40 μg/kg group had higher L5 trabecular BFR and tibial periosteal BFR versus teriparatide, whereas tibial endocortical BFR was higher with teriparatide but not abaloparatide. Together, these findings in female mice indicate that an improved balance of bone formation versus bone resorption is established shortly after initiating treatment with abaloparatide. Elsevier 2020-06-26 /pmc/articles/PMC7330158/ /pubmed/32637467 http://dx.doi.org/10.1016/j.bonr.2020.100291 Text en © 2020 Radius Health Inc http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Arlt, Heike
Mullarkey, Tara
Hu, Dorothy
Baron, Roland
Ominsky, Michael S.
Mitlak, Bruce
Lanske, Beate
Besschetnova, Tatiana
Effects of abaloparatide and teriparatide on bone resorption and bone formation in female mice()
title Effects of abaloparatide and teriparatide on bone resorption and bone formation in female mice()
title_full Effects of abaloparatide and teriparatide on bone resorption and bone formation in female mice()
title_fullStr Effects of abaloparatide and teriparatide on bone resorption and bone formation in female mice()
title_full_unstemmed Effects of abaloparatide and teriparatide on bone resorption and bone formation in female mice()
title_short Effects of abaloparatide and teriparatide on bone resorption and bone formation in female mice()
title_sort effects of abaloparatide and teriparatide on bone resorption and bone formation in female mice()
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7330158/
https://www.ncbi.nlm.nih.gov/pubmed/32637467
http://dx.doi.org/10.1016/j.bonr.2020.100291
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