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PMID: 19016581 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Denosumab, a fully human monoclonal antibody to RANKL, inhibits bone resorption and increases BMD in knock-in mice that express chimeric (murine/human) RANKL.

Kostenuik PJ, Nguyen HQ, McCabe J, Warmington KS, Kurahara C, Sun N, Chen C, Li L, Cattley RC, Van G, Scully S, Elliott R, Grisanti M, Morony S, Tan HL, Asuncion F, Li X, Ominsky MS, Stolina M, Dwyer D, Dougall WC, Hawkins N, Boyle WJ, Simonet WS, Sullivan JK

Abstract

RANKL is a TNF family member that mediates osteoclast formation, activation, and survival by activating RANK. The proresorptive effects of RANKL are prevented by binding to its soluble inhibitor osteoprotegerin (OPG). Recombinant human OPG-Fc recognizes RANKL from multiple species and reduced bone resorption and increased bone volume, density, and strength in a number of rodent models of bone disease. The clinical development of OPG-Fc was discontinued in favor of denosumab, a fully human monoclonal antibody that specifically inhibits primate RANKL. Direct binding assays showed that denosumab bound to human RANKL but not to murine RANKL, human TRAIL, or other human TNF family members. Denosumab did not suppress bone resorption in normal mice or rats but did prevent the resorptive response in mice challenged with a human RANKL fragment encoded primarily by the fifth exon of the RANKL gene. To create mice that were responsive to denosumab, knock-in technology was used to replace exon 5 from murine RANKL with its human ortholog. The resulting "huRANKL" mice exclusively express chimeric (human/murine) RANKL that was measurable with a human RANKL assay and that maintained bone resorption at slightly reduced levels versus wildtype controls. In young huRANKL mice, denosumab and OPG-Fc each reduced trabecular osteoclast surfaces by 95% and increased bone density and volume. In adult huRANKL mice, denosumab reduced bone resorption, increased cortical and cancellous bone mass, and improved trabecular microarchitecture. These huRANKL mice have potential utility for characterizing the activity of denosumab in a variety of murine bone disease models.

MeSH Terms
Amino Acid Sequence Animals Antibodies, Monoclonal/pharmacokinetics,pharmacology,therapeutic use Antibodies, Monoclonal, Humanized Antibody Affinity/drug effects Antibody Specificity/drug effects Bone Density/drug effects Bone Resorption/drug therapy,physiopathology Bone and Bones/drug effects,pathology Denosumab Gene Knock-In Techniques Humans Hypercalcemia/drug therapy Mice Molecular Sequence Data Osteoclasts/drug effects Osteogenesis/drug effects Osteoprotegerin/metabolism Phenotype Protein Binding/drug effects RANK Ligand/chemistry,genetics,immunology,pharmacokinetics,pharmacology,therapeutic use X-Ray Microtomography
Chemicals
Antibodies, Monoclonal Antibodies, Monoclonal, Humanized Osteoprotegerin RANK Ligand Denosumab
Authors & Affiliations
25 authors, click to expand affiliations / ORCID
Kostenuik Paul J
Metabolic Disorders Research, Amgen, Thousand Oaks, California 91320, USA. paulk@amgen.com
Nguyen Hung Q
McCabe James
Warmington Kelly S
Kurahara Carol
Sun Ning
Chen Ching
Li Luke
Cattley Russ C
Van Gwyneth
Scully Shelia
Elliott Robin
Grisanti Mario
Morony Sean
Tan Hong Lin
Asuncion Frank
Li Xiaodong
Ominsky Michael S
Stolina Marina
Dwyer Denise
Dougall William C
Hawkins Nessa
Boyle William J
Simonet William S
Sullivan John K
Article Info
Journal
Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research
Abbr.
J Bone Miner Res
ISSN
1523-4681
Published
2009-02-00
Pages
182-95
Language
English
Region
United States
NLM ID
8610640
Subset
IM
Corrections
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