Effects of Monoclonal Antibodies against Nerve Growth Factor on Healthy Bone and Joint Tissues in Mice, Rats, and Monkeys: Histopathologic, Biomarker, and Microcomputed Tomographic Assessments

Author:

Gropp Kathryn E.1,Carlson Cathy S.2,Evans Mark G.3,Bagi Cedo M.1,Reagan William J.1,Hurst Susan I.4,Shelton David L.5,Zorbas Mark A.3

Affiliation:

1. Drug Safety Research and Development, Pfizer Inc., Groton, Connecticut, USA

2. Department of Veterinary Population Medicine, University of Minnesota, College of Veterinary Medicine, Saint Paul, Minnesota, USA

3. Drug Safety Research and Development, Pfizer Inc., San Diego, California, USA

4. Department of Biomedicine Design, Pfizer Inc., Groton, Connecticut, USA

5. Pfizer Inc., South San Francisco, California, USA

Abstract

Tanezumab, an anti-nerve growth factor (NGF) antibody, is in development for management of chronic pain. During clinical trials of anti-NGF antibodies, some patients reported unexpected adverse events requiring total joint replacements, resulting in a partial clinical hold on all NGF inhibitors. Three nonclinical toxicology studies were conducted to evaluate the effects of tanezumab or the murine precursor muMab911 on selected bone and joint endpoints and biomarkers in cynomolgus monkeys, Sprague-Dawley rats, and C57BL/6 mice. Joint and bone endpoints included histology, immunohistochemistry, microcomputed tomography (mCT) imaging, and serum biomarkers of bone physiology. Responses of bone endpoints to tanezumab were evaluated in monkeys at 4 to 30 mg/kg/week for 26 weeks and in rats at 0.2 to 10 mg/kg twice weekly for 28 days. The effects of muMab911 at 10 mg/kg/week for 12 weeks on selected bone endpoints were determined in mice. Tanezumab and muMab911 had no adverse effects on any bone or joint parameter. There were no test article–related effects on bone or joint histology, immunohistochemistry, or structure. Reversible, higher osteocalcin concentrations occurred only in the rat study. No deleterious effects were observed in joints or bones in monkeys, rats, or mice administered high doses of tanezumab or muMab911.

Funder

Pfizer

Publisher

SAGE Publications

Subject

Cell Biology,Toxicology,Molecular Biology,Pathology and Forensic Medicine

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