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Updated: Aug 15, 2026

Partial Sciatic Nerve Ligation: A Mouse Model of Chronic Neuropathic Pain to Study the Antinociceptive Effect of Novel Therapies
Published on: October 6, 2022
A blocking antibody to nerve growth factor attenuates skeletal pain induced by prostate tumor cells growing in bone
Kyle G Halvorson1, Kazufumi Kubota, Molly A Sevcik
1Department of Diagnostic and Biological Sciences, University of Minnesota, MN 55455, USA.
Abstract:
Prostate cancer is unique in that bone is often the only clinically detectable site of metastasis. Prostate tumors that have metastasized to bone frequently induce bone pain which can be difficult to fully control as it seems to be driven simultaneously by inflammatory, neuropathic, and tumorigenic mechanisms. As nerve growth factor (NGF) has been shown to modulate inflammatory and some neuropathic pain states in animal models, an NGF-sequestering antibody was administered in a prostate model of bone cancer where significant bone formation and bone destruction occur simultaneously in the mouse femur. Administration of a blocking antibody to NGF produced a significant reduction in both early and late stage bone cancer pain-related behaviors that was greater than or equivalent to that achieved with acute administration of 10 or 30 mg/kg of morphine sulfate. In contrast, this therapy did not influence tumor-induced bone remodeling, osteoblast proliferation, osteoclastogenesis, tumor growth, or markers of sensory or sympathetic innervation in the skin or bone. One rather unique aspect of the sensory innervation of bone, that may partially explain the analgesic efficacy of anti-NGF therapy in relieving prostate cancer-induced bone pain, is that nearly all nerve fibers that innervate the bone express trkA and p75, and these are the receptors through which NGF sensitizes and/or activates nociceptors. The present results suggest that anti-NGF therapy may be effective in reducing pain and enhancing the quality of life in patients with prostate tumor-induced bone cancer pain.
Insights
A novel therapy targeting nerve growth factor (NGF) significantly reduced bone cancer pain in mice. This anti-NGF antibody treatment offered pain relief comparable to morphine without affecting tumor growth or bone structure.
Area of Science:
- Oncology
- Pain Management
- Neuroscience
Background:
- Prostate cancer commonly metastasizes to bone, causing severe pain.
- Bone pain in prostate cancer is multifactorial, involving inflammatory, neuropathic, and tumorigenic mechanisms.
- Nerve growth factor (NGF) plays a role in pain modulation.
Purpose of the Study:
- To investigate the efficacy of an NGF-sequestering antibody in a mouse model of prostate cancer bone metastasis.
- To assess the impact of anti-NGF therapy on bone cancer pain behaviors.
- To determine if anti-NGF therapy affects tumor-induced bone remodeling or tumor progression.
Main Methods:
- Administration of an NGF-sequestering antibody in a mouse model of prostate cancer bone metastasis.
- Evaluation of bone cancer pain-related behaviors.
- Assessment of tumor-induced bone remodeling, osteoblast and osteoclast activity, tumor growth, and nerve fiber markers.
Main Results:
- Anti-NGF therapy significantly reduced both early and late-stage bone cancer pain behaviors.
- The analgesic effect was greater than or equivalent to morphine sulfate.
- The therapy did not impact tumor-induced bone remodeling, osteoblast/osteoclast activity, tumor growth, or nerve innervation markers.
Conclusions:
- NGF plays a critical role in mediating prostate cancer-induced bone pain.
- Anti-NGF therapy demonstrates significant analgesic efficacy in this preclinical model.
- This approach holds promise for improving pain management and quality of life in patients with prostate cancer bone metastases.
