Denosumab, a fully human RANKL antibody, reduced bone turnover markers and increased trabecular and cortical bone mass, density, and strength in ovariectomized cynomolgus monkeys. 2011

Michael S Ominsky, and Brian Stouch, and Joseph Schroeder, and Ian Pyrah, and Marina Stolina, and Susan Y Smith, and Paul J Kostenuik
Metabolic Disorders, Amgen Inc., 1 Amgen Center Drive, Thousand Oaks, CA 91320, USA. mominsky@amgen.com

Denosumab is a fully human monoclonal antibody that inhibits RANKL, a protein essential for osteoclast formation, function, and survival. Osteoclast inhibition with denosumab decreased bone resorption, increased bone mineral density (BMD), and reduced fracture risk in osteoporotic women. The effects of 16months of continuous osteoclast inhibition on bone strength parameters were examined in adult ovariectomized (OVX) cynomolgus monkeys (cynos). One month after surgery, OVX cynos (n=14-20/group) were treated monthly with subcutaneous vehicle (OVX-Veh) or denosumab (25 or 50mg/kg). Sham-operated controls were treated with vehicle (n=17). OVX-Veh exhibited early and persistent increases in the resorption marker CTx, followed by similar increases in the formation marker BSAP, consistent with increased bone remodeling. Denosumab reduced CTx and BSAP throughout the study to levels significantly lower than in OVX-Veh or Sham-Veh, consistent with reduced remodeling. Increased remodeling in OVX-Veh led to absolute declines in areal BMD of 4.3-7.4% at the lumbar spine, total hip, femur neck, and distal radius (all p<0.05 vs baseline). Denosumab significantly increased aBMD at each site to levels exceeding baseline or OVX-Veh controls, and denosumab significantly increased cortical vBMC of the central radius and tibia by 7% and 14% (respectively) relative to OVX-Veh. Destructive biomechanical testing revealed that both doses of denosumab were associated with significantly greater peak load for femur neck (+19-34%), L3-L4 vertebral bodies (+54-55%), and L5-L6 cancellous cores (+69-82%) compared with OVX-Veh. Direct assessment of bone tissue material properties at cortical sites revealed no significant changes with denosumab. For all sites analyzed biomechanically, bone mass (BMC) and strength (load) exhibited strong linear correlations (r(2)=0.59-0.85 for all groups combined). Denosumab did not alter slopes of load-BMC regressions at any site, and denosumab groups exhibited similar or greater load values at given BMC values compared with OVX-Veh or Sham. In summary, denosumab markedly reduced biochemical markers of bone remodeling and increased cortical and trabecular bone mass in adult OVX cynos. Denosumab improved structural bone strength parameters at all sites analyzed, and strength remained highly correlated with bone mass. There was no evidence for reduced material strength properties of cortical bone with denosumab over this time period, which approximates to 4years of remodeling in the slower-remodeling adult human skeleton. These data indicate that denosumab increased bone strength by increasing bone mass and preserving bone quality.

UI MeSH Term Description Entries
D008252 Macaca fascicularis A species of the genus MACACA which typically lives near the coast in tidal creeks and mangrove swamps primarily on the islands of the Malay peninsula. Burmese Long-Tailed Macaque,Crab-Eating Monkey,Cynomolgus Monkey,M. f. aurea,M. fascicularis,Macaca fascicularis aurea,Monkey, Crab-Eating,Monkey, Cynomolgus,Crab-Eating Macaque,Burmese Long Tailed Macaque,Crab Eating Macaque,Crab Eating Monkey,Crab-Eating Macaques,Crab-Eating Monkeys,Cynomolgus Monkeys,Long-Tailed Macaque, Burmese,Macaque, Burmese Long-Tailed,Macaque, Crab-Eating,Monkey, Crab Eating
D010052 Ovariectomy The surgical removal of one or both ovaries. Castration, Female,Oophorectomy,Bilateral Ovariectomy,Bilateral Ovariectomies,Castrations, Female,Female Castration,Female Castrations,Oophorectomies,Ovariectomies,Ovariectomies, Bilateral,Ovariectomy, Bilateral
D001842 Bone and Bones A specialized CONNECTIVE TISSUE that is the main constituent of the SKELETON. The principal cellular component of bone is comprised of OSTEOBLASTS; OSTEOCYTES; and OSTEOCLASTS, while FIBRILLAR COLLAGENS and hydroxyapatite crystals form the BONE MATRIX. Bone Tissue,Bone and Bone,Bone,Bones,Bones and Bone,Bones and Bone Tissue,Bony Apophyses,Bony Apophysis,Condyle,Apophyses, Bony,Apophysis, Bony,Bone Tissues,Condyles,Tissue, Bone,Tissues, Bone
D005260 Female Females
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000069448 Denosumab A humanized monoclonal antibody and an inhibitor of the RANK LIGAND, which regulates OSTEOCLAST differentiation and bone remodeling. It is used as a BONE DENSITY CONSERVATION AGENT in the treatment of OSTEOPOROSIS. AMG 162,Prolia,Xgeva
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D000911 Antibodies, Monoclonal Antibodies produced by a single clone of cells. Monoclonal Antibodies,Monoclonal Antibody,Antibody, Monoclonal
D015519 Bone Density The amount of mineral per square centimeter of BONE. This is the definition used in clinical practice. Actual bone density would be expressed in grams per milliliter. It is most frequently measured by X-RAY ABSORPTIOMETRY or TOMOGRAPHY, X RAY COMPUTED. Bone density is an important predictor for OSTEOPOROSIS. Bone Mineral Content,Bone Mineral Density,Bone Densities,Bone Mineral Contents,Bone Mineral Densities,Density, Bone,Density, Bone Mineral
D016723 Bone Remodeling The continuous turnover of BONE MATRIX and mineral that involves first an increase in BONE RESORPTION (osteoclastic activity) and later, reactive BONE FORMATION (osteoblastic activity). The process of bone remodeling takes place in the adult skeleton at discrete foci. The process ensures the mechanical integrity of the skeleton throughout life and plays an important role in calcium HOMEOSTASIS. An imbalance in the regulation of bone remodeling's two contrasting events, bone resorption and bone formation, results in many of the metabolic bone diseases, such as OSTEOPOROSIS. Bone Turnover,Bone Turnovers,Remodeling, Bone,Turnover, Bone,Turnovers, Bone

Related Publications

Michael S Ominsky, and Brian Stouch, and Joseph Schroeder, and Ian Pyrah, and Marina Stolina, and Susan Y Smith, and Paul J Kostenuik
August 2011, Bone,
Michael S Ominsky, and Brian Stouch, and Joseph Schroeder, and Ian Pyrah, and Marina Stolina, and Susan Y Smith, and Paul J Kostenuik
November 2013, Bone,
Michael S Ominsky, and Brian Stouch, and Joseph Schroeder, and Ian Pyrah, and Marina Stolina, and Susan Y Smith, and Paul J Kostenuik
April 2015, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research,
Michael S Ominsky, and Brian Stouch, and Joseph Schroeder, and Ian Pyrah, and Marina Stolina, and Susan Y Smith, and Paul J Kostenuik
November 2022, Bone,
Michael S Ominsky, and Brian Stouch, and Joseph Schroeder, and Ian Pyrah, and Marina Stolina, and Susan Y Smith, and Paul J Kostenuik
August 2007, Osteoporosis international : a journal established as result of cooperation between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA,
Michael S Ominsky, and Brian Stouch, and Joseph Schroeder, and Ian Pyrah, and Marina Stolina, and Susan Y Smith, and Paul J Kostenuik
March 1997, Calcified tissue international,
Michael S Ominsky, and Brian Stouch, and Joseph Schroeder, and Ian Pyrah, and Marina Stolina, and Susan Y Smith, and Paul J Kostenuik
June 2009, Yonsei medical journal,
Michael S Ominsky, and Brian Stouch, and Joseph Schroeder, and Ian Pyrah, and Marina Stolina, and Susan Y Smith, and Paul J Kostenuik
April 2017, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research,
Michael S Ominsky, and Brian Stouch, and Joseph Schroeder, and Ian Pyrah, and Marina Stolina, and Susan Y Smith, and Paul J Kostenuik
May 2008, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research,
Michael S Ominsky, and Brian Stouch, and Joseph Schroeder, and Ian Pyrah, and Marina Stolina, and Susan Y Smith, and Paul J Kostenuik
March 2018, Osteoporosis international : a journal established as result of cooperation between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA,
Copied contents to your clipboard!