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NGF blockade at early times during bone cancer development attenuates bone destruction and increases limb use.


ABSTRACT: Studies in animals and humans show that blockade of nerve growth factor (NGF) attenuates both malignant and nonmalignant skeletal pain. While reduction of pain is important, a largely unanswered question is what other benefits NGF blockade might confer in patients with bone cancer. Using a mouse graft model of bone sarcoma, we demonstrate that early treatment with an NGF antibody reduced tumor-induced bone destruction, delayed time to bone fracture, and increased the use of the tumor-bearing limb. Consistent with animal studies in osteoarthritis and head and neck cancer, early blockade of NGF reduced weight loss in mice with bone sarcoma. In terms of the extent and time course of pain relief, NGF blockade also reduced pain 40% to 70%, depending on the metric assessed. Importantly, this analgesic effect was maintained even in animals with late-stage disease. Our results suggest that NGF blockade immediately upon detection of tumor metastasis to bone may help preserve the integrity and use, delay the time to tumor-induced bone fracture, and maintain body weight.

SUBMITTER: McCaffrey G 

PROVIDER: S-EPMC4253026 | biostudies-literature | 2014 Dec

REPOSITORIES: biostudies-literature

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NGF blockade at early times during bone cancer development attenuates bone destruction and increases limb use.

McCaffrey Gwen G   Thompson Michelle L ML   Majuta Lisa L   Fealk Michelle N MN   Chartier Stephane S   Longo Geraldine G   Mantyh Patrick W PW  

Cancer research 20141006 23


Studies in animals and humans show that blockade of nerve growth factor (NGF) attenuates both malignant and nonmalignant skeletal pain. While reduction of pain is important, a largely unanswered question is what other benefits NGF blockade might confer in patients with bone cancer. Using a mouse graft model of bone sarcoma, we demonstrate that early treatment with an NGF antibody reduced tumor-induced bone destruction, delayed time to bone fracture, and increased the use of the tumor-bearing lim  ...[more]

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